| 1. | \(20\) | 2. | \(30\) |
| 3. | \(40\) | 4. | \(10\) |
| 1. | \(3 \times 10^{-4} / ^\circ\text C\) | 2. | \(2 \times 10^{-4} / ^\circ\text C\) |
| 3. | \(6 \times 10^{-4} / ^\circ\text C\) | 4. | \(10^{-4} / ^\circ\text C\) |
| 1. | \(45^\circ\) | 2. | \(30^\circ\) |
| 3. | \(55^\circ\) | 4. | \(50^\circ\) |
| 1. | the attraction of free electrons of the \(\mathrm{n\text{-}}\)region. |
| 2. | the higher hole concentration in the \(\mathrm{p\text{-}}\)region than that in the \(\mathrm{n\text{-}}\)region. |
| 3. | the higher concentration of electrons is in the \(\mathrm{p\text{-}}\)region than that in the \(\mathrm{n\text{-}}\)region. |
| 4. | the potential difference across the \(\mathrm{p\text{-}n}\) junction. |
How much will the rate of reaction increase when the concentrations of A and B are both doubled, given that the order with respect to A is 2 and with respect to B is 3?
1. 12
2. 16
3. 32
4. 10
| I | II |