weight - = mass × gravitational field strength, work done - = force × distance, distance travelled - = speed × time, acceleration - = change in velocity / time taken, resultant force - = mass × acceleration, kinetic energy - = 0.5 × mass × speed2, gravitational potential energy - = mass × gravitational field strength × height, power from energy - = energy transferred / time, wave speed - = frequency × wavelength, charge flow (with I) - = current × time, potential difference - = current × resistance, current - = power / potential difference, power from work - = work done / time, power from current and resistance - = current2 x Resistance, energy transferred - = power x time, charge - = energy / potential difference, velocity - =displacement / time, Pressure - =Force/Area, frequency - =No.of waves produced /time, Period - =1/frequency, Activity - = No. of decays/time, Absorbed Dose - =Energy/Mass of absorbing material, Equivalent Dose - =Absorbed Dose × Radiation Weighting Factor, Equivalent Dose Rate - =Equivalent Dose/ Time, Specific Heat Capacity - =Energy/(Mass x change in temperature), Specific Latent Heat - =Energy/ mass of material with change of state, Gas at constant volume - pressure1 /Temp1(K)= Pressure2 / Temp 2 (K), Gas at constant pressure - Volume1 /Temp1(K)=Volume2 / Temp 2 (K), Gas at constant temperature - pressure1 xvolume1= Pressure2 x volume 2 (K), Voltage 2 (voltage divider) - =R1/(R1+R2) × Voltage supply,
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Physics word equations from memory
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Gw08hargreavesj
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Physics
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