Why is a falling body's instantaneous power at the end of a drop exactly twice its average power over the fall?
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Average and instantaneous power, and the watt
Write , take the limit to , and carry the unit .
Power as a signed scalar
Compute both powers for the cup pushed at , getting for the push and for kinetic friction.
Falling ball, average against instantaneous power
Find , get by both routes, evaluate , and record the factor of two and the straight-line graph.
Differentiate with respect to time, substitute , and write down the resulting differential form of the work-energy relation.