Wave Optics Vocabulary Flashcards

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Last updated 5:12 PM on 8/31/26
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12 Terms

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Corpuscular model of light

A model proposed by René Descartes in 1637 and further developed by Isaac Newton in OPTICKS, which derived Snell's law and predicted that if a refracted ray bends towards the normal, the speed of light would be greater in the second medium.

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Wave theory of light

A model put forward by Dutch physicist Christiaan Huygens in 1678 proposing that light is a wave, predicting that the speed of light decreases when refracting towards the normal.

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Geometrical optics

The branch of optics in which the finiteness of the wavelength of light is completely neglected, assuming light travels in straight lines as rays.

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Ray

The path of energy propagation in the limit of light wavelength tending to zero.

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Wavefront

A locus of points oscillating in phase, defined as a surface of constant phase.

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Speed of the wave

The speed with which a wavefront moves outwards from the source.

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Spherical wave

A wave emitted uniformly in all directions by a point source, where points of equal phase and amplitude form concentric spherical surfaces.

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Plane wave

A wavefront observed at a large distance from a point source, where a small portion of a spherical wavefront can be approximated as a plane surface.

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Huygens principle

A geometrical construction stating that each point of a wavefront acts as a source of secondary wavelets spreading out at wave speed, whose common envelope determines the wavefront at a later time.

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Secondary wavelets

Spherical disturbances emanating from every point on a primary wavefront that spread out in all directions with the speed of the wave.

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Snell's law of refraction

The relation n1tan(i)=n2tan(r)n_1 \tan(i) = n_2 \tan(r) expressed as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) or n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) in the form n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) which simplifies to n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) or n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) represented by n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) which is written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) or n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) which is n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) represented by n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) which is n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) or n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) which is n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given by n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) represented as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) which is n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given by n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) expressed as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) which is n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) written as n1ν(i)=n2ν(r)n_1 \nu(i) = n_2 \nu(r) given as $$n_1 u(i) = n2

12
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