The following graph represents the variation of photocurrent with anode potential for a metal surface. Here $I_{1}, I_{2}$ and $I_{3}$ represent intensities and $\gamma_{1}, \gamma_{2}, \gamma_{3}$ represent frequencies for curves $1, 2$ and $3$ respectively,then

  • A
    $\gamma_{1}=\gamma_{2}$ and $I_{1} \neq I_{2}$
  • B
    $\gamma_{1}=\gamma_{3}$ and $I_{1} \neq I_{3}$
  • C
    $\gamma_{1}=\gamma_{2}$ and $I_{1}=I_{2}$
  • D
    $\gamma_{2}=\gamma_{3}$ and $I_{1}=I_{3}$

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In the photoelectric effect,the photocurrent:

Photoelectric effect is produced by a point source on a small metal plate. Which of the following curves represents the saturation photoelectric current as a function of the distance between the source and the metal?

Which of the following phenomena exhibits the particle nature of light?

$A$ photoelectric cell is illuminated by a point source of light placed at a distance of $1 \ m$. If the source is moved to a distance of $2 \ m$,then:

By increasing the intensity of incident light, keeping the frequency $(v > v_0)$ fixed on the surface of a metal:

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