Column IColumn II(A) If v (frequency) is increased keepingI (intensity) and Φ(work function) constant(P) Stoping potential increases(B)If I is increased keeping v and Φ constant(Q) Saturation photocurrent increases(C) If the distance between anode and cathode increases.(R) Maximum KE of the photoelectrons increase(D) If Φ is decreased keeping v and I constant(S) Stopping potential remains the same
(A) (P,R); (B) (Q,S); (C) (S); (D) (P,R)
From eV0=hv−Φ and Kmax=hv−Φ. If v increases keeping Φ constant, then V0 and Kmax both increase. If Φ decreases keeping v constant, then V0 and Kmax increase.
If I increases, more photoelectrons would be liberated, hence saturation photocurrent increases.
If the separation between cathode and anode is increased, then there is no effect on V0, Kmax or current