- A$1$
- B$0.5$
- ✓$0.7$
- D$1.4$
$=\displaystyle \frac {1}{2}Mv^2$
$\displaystyle \frac {1}{2} \times \displaystyle \frac {2}{5}MR^2 \times \displaystyle \frac {V^2}{R^2}$
$=\displaystyle \frac {7}{10} Mv^2=0.7 \space J$
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$(A)$ If $f$ is increased keeping $I$ and work function constant then maximum kinetic energy of photoelectron increases
$(B)$ If distance between cathode and anode is increased stopping potential increases
$(C)$ If $I$ is increased keeping $f$ and work function constant then stopping potential remains same and saturation current increases
$(D)$ Work function is decreased keeping $f$ and $I$ constant then stopping potential increases
$(A)$ $A$ lives closer to the school
$(B)$ $B$ lives closer to the school
$(C)$ $A$ takes lesser time to reach home
$(D)$ $A$ travels faster than $B$
$(E)$ $B$ travels faster than $A$
Choose the correct answer from the options given below :
