Physic Labs

Problem 3

A metal of work function W0W_0 is illuminated by monochromatic light of frequency ff; photoemission occurs only if a photon has enough energy. Let Planck's constant be hh, the electron charge magnitude be ee, and define positive stopping voltage VsV_s as the voltage just sufficient to stop the fastest electron. (a) Find threshold frequency f0f_0. (b) Express maximum kinetic energy Kmax⁡K_{\max} in terms of ff and give the emission condition. (c) Find VsV_s and describe the slope and intercept of a plot of VsV_s versus ff on the emission range.
f0=W0h,Kmax⁡=h(f−f0),Vs=he(f−f0)\boxed{f_0=\frac{W_0}{h},\quad K_{\max}=h(f-f_0),\quad V_s=\frac he(f-f_0)}
problems.proof.analysis

The units are consistent: hfhf is energy and division by ee gives voltage. The measured graph slope can determine Planck's constant.

problems.proof.pitfall. Light intensity affects the number of emitted electrons, not their maximum energy; photon energy is set by frequency.