3.5 Power

Syllabus
2024
Topic
3.5
Level

Learning objectives

Power measures how fast energy changes

Read power as a rate

Power is the rate at which energy is transferred into or out of a system, or converted from one form to another within it. The SI unit is the watt: 1W=1J/s1\,\text{W}=1\,\text{J/s}.

Pavg=ΔEΔt=WΔtP_{\text{avg}}=\frac{\Delta E}{\Delta t}=\frac{W}{\Delta t}

Calculate an interval average

Worked example: A force transfers 600J600\,\text{J} of energy to a system in 3.0s3.0\,\text{s}.

Pavg=600J3.0s=200WP_{\text{avg}}=\dfrac{600\,\text{J}}{3.0\,\text{s}}=200\,\text{W}.

On average, energy entered the system at 200J200\,\text{J} each second during that interval.

Connect force and velocity

At one instant, a constant force delivers power according to

Pinst=Fv=Fvcosθ,P_{\text{inst}}=F_{\parallel}v=Fv\cos\theta,

where θ\theta is the angle between force and velocity. A perpendicular force has F=0F_{\parallel}=0 and delivers zero instantaneous power, even if it changes the direction of motion.

Separate power from energy

Power and energy are not interchangeable. A high-power transfer can move a given amount of energy in less time; it does not necessarily transfer more total energy unless the time interval is also known. Average power describes an interval, while instantaneous power describes one moment.