physics equations

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Last updated 2:34 PM on 8/14/26
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26 Terms

1
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velocity (v)

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acceleration (a)

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force (F)

mass x acceleration

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newton (N)

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work (W)

force x distance

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kinetic energy (KE)

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potential energy (PE)

mgh (mass x gravity x height)

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joules (J)

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joules (J)

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joules (J)

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power (P)

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watt (W)

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density

mass / volume

<p>mass / volume</p>
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pressure (P)

force / area

<p>force / area</p>
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pressure (P)

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pascal (Pa)

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pascal (Pa)

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electric field strength

E = electric field

F = force

q = charge in coulombs

units: N/C (newtons per coulomb)

<p>E = electric field</p><p>F = force</p><p>q = charge in coulombs</p><p>units: N/C (newtons per coulomb)</p>
19
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potential / voltage (volts)

potential energy = charge x voltage

<p>potential energy = charge x voltage </p>
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volts

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current (ampere)

current = charge / time

<p>current = charge / time </p>
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amps

C/s - coulomb per second

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resistance (ohms)

V = voltage

I = current

R = resistance

<p>V = voltage</p><p>I = current</p><p>R = resistance </p>
24
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capacitance

Q = charge

V = voltage

<p>Q = charge</p><p>V = voltage</p>
25
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magnetic field strength

F = force (N)

q = charge (C)

v = velocity (m/s)

B = magnetic field strength in Tesla (T)

θ: angle between the velocity vector and the magnetic field vector

<p>F = force (N)</p><p>q = charge (C)</p><p>v = velocity (m/s)</p><p>B = magnetic field strength in Tesla (T)</p><p>θ: angle between the velocity vector and the magnetic field vector</p>
26
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magnetic field strength

F = force (N)

I = current (amperes)

L = length of wire (m)

B = magnetic field strength (Teslas, T)

theta = angle between the direction of the current (I) and the magnetic field vector (B)

<p>F = force (N)</p><p>I = current (amperes)</p><p>L = length of wire (m)</p><p>B = magnetic field strength (Teslas, T)</p><p>theta = angle between the direction of the current (I) and the magnetic field vector (B)</p>