
| Number of intermediates | Number of Activated complexes | Rate determining step |
| 2 | 3 | II |
| Number of intermediates | Number of Activated complexes | Rate determining step |
| 2 | 3 | III |
| Number of intermediates | Number of Activated complexes | Rate determining step |
| 3 | 2 | II |
| Number of intermediates | Number of Activated complexes | Rate determining step |
| 2 | 3 | I |
Therefore, the correct option is (1): 2 intermediates, 3 activated complexes, and step II as the rate-determining step.
Calculate the potential for half-cell containing 0.01 M K\(_2\)Cr\(_2\)O\(_7\)(aq), 0.01 M Cr\(^{3+}\)(aq), and 1.0 x 10\(^{-4}\) M H\(^+\)(aq).

A conducting bar moves on two conducting rails as shown in the figure. A constant magnetic field \( B \) exists into the page. The bar starts to move from the vertex at time \( t = 0 \) with a constant velocity. If the induced EMF is \( E \propto t^n \), then the value of \( n \) is _____. 