Given: - Resistance, \( R = 100\ \Omega \) - Change in magnetic flux, \( \Delta \phi = 5\ \text{Wb} \) - The circuit has only resistance and inductance (no external source). - To find: Charge flown, \( Q \)
Key concept: According to Faraday's law and Ohm’s law, the total charge \( Q \) that flows due to a change in magnetic flux is given by: \[ Q = \frac{\Delta \phi}{R} \]
Substitute values: \[ Q = \frac{5}{100} = 0.05\ \text{C} \]
Final Answer: 0.05 C
A quantity \( X \) is given by: \[ X = \frac{\epsilon_0 L \Delta V}{\Delta t} \] where:
- \( \epsilon_0 \) is the permittivity of free space,
- \( L \) is the length,
- \( \Delta V \) is the potential difference,
- \( \Delta t \) is the time interval.
The dimension of \( X \) is the same as that of: