The energy of a photon is given by \(E = \frac{hc}{\lambda}\). Therefore, \(\lambda \propto \frac{1}{E}\).
From the diagram:
\(\lambda_1\) corresponds to energy difference \(E\)
\(\lambda_2\) corresponds to energy difference \(\frac{E}{2}\)
\(\lambda_3\) corresponds to energy difference \(\frac{E}{2}\)
Thus \(\lambda_2 = 2\lambda_3\) and \(\lambda_2 > \lambda_1\).
Given below are two statements:
Statement (I): A spectral line will be observed for a \(2p_x \rightarrow 2p_y\) transition.
Statement (II): \(2p_x\) and \(2p_y\) are degenerate orbitals.
In the light of the above statements, choose the correct answer from the options given below:
AB is a part of an electrical circuit (see figure). The potential difference \(V_A - V_B\), at the instant when current \(i = 2\) A and is increasing at a rate of 1 amp/second is: