357779
\(A\) and \(B\) are two metals with threshold frequencies \(1.8 \times {10^{14}}\;Hz\) and \(2.2 \times {10^{14}}\;Hz\). Two identical photons of energy \(0.825\,eV\) each are incident on them. Then photoelectrons are emitted by
(Take \(h = 6.6 \times {10^{ - 34}}\;J\;s\) )
357779
\(A\) and \(B\) are two metals with threshold frequencies \(1.8 \times {10^{14}}\;Hz\) and \(2.2 \times {10^{14}}\;Hz\). Two identical photons of energy \(0.825\,eV\) each are incident on them. Then photoelectrons are emitted by
(Take \(h = 6.6 \times {10^{ - 34}}\;J\;s\) )
357779
\(A\) and \(B\) are two metals with threshold frequencies \(1.8 \times {10^{14}}\;Hz\) and \(2.2 \times {10^{14}}\;Hz\). Two identical photons of energy \(0.825\,eV\) each are incident on them. Then photoelectrons are emitted by
(Take \(h = 6.6 \times {10^{ - 34}}\;J\;s\) )
357779
\(A\) and \(B\) are two metals with threshold frequencies \(1.8 \times {10^{14}}\;Hz\) and \(2.2 \times {10^{14}}\;Hz\). Two identical photons of energy \(0.825\,eV\) each are incident on them. Then photoelectrons are emitted by
(Take \(h = 6.6 \times {10^{ - 34}}\;J\;s\) )