Equations (year 10) AQA

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  • Created by: Swarne
  • Created on: 12-06-17 12:22
Work done (using force and distance)
W = Fx s
1 of 16
Kinetic energy (using mass and speed)
Ek = (1/2) m x v sqaured
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Gravitational potential energy (using mass, gravitational field strength and height)
Ep = mxgxh
3 of 16
Power (using energy transferred and time)
P = E / t
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Power (using work done and time)
P = W /t
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Efficiency (using useful output energy and total input energy)
Efficiency = useful output energy transfer / total input energy transfer
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Efficiency (using useful power output and total power input)
Efficiency = useful power output / total power input
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Charge flow (current and time)
Q = I x t
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Potential difference (using current and resistance)
V = I x R
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Power (using potential difference and current)
P = V x I
10 of 16
Power (using current and resistance)
P = I squared R
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Energy transfer (using power and time)
E = P x t
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Energy transfer (using charge flow and potential difference)
E = Q x V
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Density (using mass and volume)
p = m/V
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weight (using mass and gravitational field strength)
W = m x g
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force of a spring (using spring constant and extension)
F = k x e
16 of 16

Other cards in this set

Card 2

Front

Kinetic energy (using mass and speed)

Back

Ek = (1/2) m x v sqaured

Card 3

Front

Gravitational potential energy (using mass, gravitational field strength and height)

Back

Preview of the front of card 3

Card 4

Front

Power (using energy transferred and time)

Back

Preview of the front of card 4

Card 5

Front

Power (using work done and time)

Back

Preview of the front of card 5
View more cards

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