| 1. | \(2:9\) | 2. | \(1:2\) |
| 3. | \(2:3\) | 4. | \(1:1\) |
Two resistors \(R\) and \(2R\) are connected in series in an electric circuit. The thermal energy developed in \(R\) and \(2R\) are in the ratio of:
1. \(1:2\)
2. \(2:1\)
3. \(1:4\)
4. \(4:1\)

| 1. | one fourth | 2. | one third |
| 3. | two times | 4. | one half |
A resistor of resistance \(R\) is connected to an ideal battery. If the value of \(R\) is decreased, the power dissipated in the resistor will:
| 1. | increase | 2. | decrease |
| 3. | remains unchanged | 4. | can't be determined |
| 1. | \(2:1\) | 2. | \(4:9\) |
| 3. | \(9:4\) | 4. | \(1:2\) |
| 1. | \(4:1\) | 2. | \(1:2\) |
| 3. | \(2:1\) | 4. | \(1:4\) |
Two resistors having equal resistances are joined in series and a current is passed through the combination. Neglect any variation in resistance as the temperature changes. In a given time interval,
| (a) | equal amounts of thermal energy must be produced in the resistors. |
| (b) | unequal amounts of thermal energy may be produced. |
| (c) | the temperature must rise equally in the resistors. |
| (d) | the temperature may rise equally in the resistors. |
Choose the correct option:
| 1. | (a), (b) | 2. | (b), (c) |
| 3. | (c), (d) | 4. | (a), (d) |