AS level Physics Definitions (CIE)

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10th

71 Terms

1

Scalar

a quantity that has a magnitude only

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2

Vector

a quantity that has both magnitude and direction

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3

Precision

The degree of agreement between several measurements of the same quantity and is determined by the range of the values

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4

Distinguish between accuracy and precision

Accuracy is determined by the closeness of the measurement to the true value while precision is determined by the range in values

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5

Accuracy

The closeness of measurement values to the true values

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6

Systematic error

the type of error that causes readings to deviate in one direction from the true value

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7

Random error

the type of error which causes readings to scatter about the true value

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8

distance

Total length covered irrespective of the direction of motion

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9

displacement

Distance moved in a certain direction from start to end point

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10

speed

Distance travelled per unit time

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11

velocity

the rate of change of displacement

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12

acceleration

the rate of change of velocity

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13

Mass

A property of a body that resists change in motion

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14

Linear momentum

the product of mass and velocity

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15

force

the rate of change of momentum

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16

Newtons First Law

A body continues in a state of rest or constant velocity unless acted upon by a resultant force

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17

Newtons Second Law

The resultant force is equal to the rate of change of momentum and acts in the direction of it.

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18

Newtons Third Law

Every action has an equal and opposite reaction

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19

Impulse

the product of the force and the time during which the force acts

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20

Weight

The effect of gravitational field on a mass

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21

Principle of conservation of momentum

For a system of interacting bodies, the total momentum remains constant provided there is no resultant force acting on the system

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22

elastic collision

Both momentum & kinetic energy of the system are conserved

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23

Inelastic collision

Only momentum is conserved, total kinetic energy is not conserved

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24

moment

The product of the force and the perpendicular distance of its line of action to the pivot

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25

the torque of a couple

The product of one of the forces of a couple and the perpendicular distance between the forces.

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26

The principle of moments

For a body of equilibrium, the sum of all the anti-clockwise moments about a point must be equal to the clockwise moments about that same point

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27

density

the mass per unit volume

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28

pressure

the force per unit area

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29

power

the work done per unit time

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30

Centre of Gravity

The point through which the entire weight of a body may be considered to act

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31

Work Done

the product of force and displacement in the direction of the force

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32

Efficiency

The ratio of useful energy output from the system to the total input energy

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33

Gravitational Potential energy

Energy of a mass due to its position in a gravitational field

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34

Kinetic energy

Energy a mass has due to motion

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35

Elastic potential energy

Energy stored in an object due to a force changing it shape

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36

Stress

The force per cross-sectional area

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37

Strain

The ratio of extension (change in length) to original length

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38

Youngs Modulus

The ratio of stress to strain

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39

Elastic limit

The point beyond which a material does not return to its original length when the load is removed

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40

Hooke's Law

Force is proportional to extension provided the proportionality limit is not exceeded

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41

Displacement of a wave

The distance of a point on wave above or below the equilibrium position

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42

Amplitude

The maximum distance of a particle in wave measured from the equilibrium position

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43

Frequency of a progressive wave

The number of wavefronts passing a point per unit time

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44

Frequency of a source

Number of oscillations per unit time from the source of the wave

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45

Wavelength

The minimum distance between two adjacent crests or troughs

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46

Speed of a wave

The speed at which energy is transferred/ speed of a wavefront

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47

Progressive wave

A wave that transfers energy as a result of vibrations

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48

Transverse wave

The vibration of particles is perpendicular to the direction of propagation of energy

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49

Longitudinal wave

The vibration of particles is parallel to the direction of propagation of energy

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50

Doppler effect

The observed frequency is different to the source frequency when the source moves relative to the observer

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51

Principle of superposition

When two waves meet, the resultant displacement is the algebraic sum of the individual displacements

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52

Diffraction

When a wavefront is incident on a gap, the wave spreads

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53

Antinode

A point of maximum amplitude on a standing wave

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54

Node

A point of zero amplitude on a standing wave

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55

Interference

Same as superposition

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56

Coherence

Constant phase difference between the two waves

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57

Explain the formation of a stationary wave

When two waves, having the same frequency and wavelength, traveling in opposite directions meet, the resultant displacement is the sum of the individual displacements of the waves, and produces node and antinodes

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58

Conditions for interference

2 waves meet
Waves have a constant phase difference

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59

Plane polarisation

when the oscillations are limited to a single place

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60

Electric current

The flow of charge carriers

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61

Coloumb

The charge of an ampere second

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62

Potential difference

the work done per unit charge

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63

electromotive force

The total energy transferred by a source in driving a unit charge round a complete circuit

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64

Electrical Resistance

The ratio of potential difference across a component to the current flowing throw it

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65

Ohm

The resistance of 1 volt per ampere

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66

Ohms law

The current in a metallic conductor is directly proportional to the potential difference across its ends, provided its temperature remains constant

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67

Kirchhoff's first law

the algebraic sum of currents entering a junction is zero.

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68

Kirchhoff's second law

In a closed circuit, the sum of e.m.f's is equal to the sum of p.d's

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69

Volt

Joule per coulomb

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70

Difference between p.d and emf in terms of energy transformations

Potential difference (p.d.) is the energy transformed from electrical to other forms, per unit charge.
Electromotive force (e.m.f.) is the energy transformed from other forms to electrical per unit charge.

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71

Internal resistance

Resistance in the battery causing loss of volts

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