Determine the self-inductance of the solenoid and the energy stored Please do both questions
Posted: Wed May 25, 2022 6:33 am
Determine the self-inductance of the solenoid and the energy
stored
Please do both questions
Consider a capacitor with capacitance Inf, an inductor with inductance limth and a resistor with resistance Un i) The capacitor is charged with 2 μl and connected to the inductor to make a cireuit. Show that the current in the circuit oscillates sinusoidally. Determine the maximam value of the current and oscillation angulow frequency. i) The capacitor is disconnected from the indueter, again charged to 2 μC and connected to the resistor to make a cirquit. Show that the current Once decays exponentially. Determ मलाई क Determine the maximum current that flows in the eirant and its characteristic decay time. The circuit consists only of a resistor and a capacitors in series. A solenoid has length 10cm with 1000 turns of a cross-sectional area of 4 mm wire and i) Determine the self-inductance of the solenoid the solenoid i and the stored carries energy a current of SMA. ii) Use Ampere's law to relate the magnitude et the magnetic field inside a solenoid to the current flowing through it. Show that the energy stored in a solenoid is stored in the magnetic field
stored
Please do both questions
Consider a capacitor with capacitance Inf, an inductor with inductance limth and a resistor with resistance Un i) The capacitor is charged with 2 μl and connected to the inductor to make a cireuit. Show that the current in the circuit oscillates sinusoidally. Determine the maximam value of the current and oscillation angulow frequency. i) The capacitor is disconnected from the indueter, again charged to 2 μC and connected to the resistor to make a cirquit. Show that the current Once decays exponentially. Determ मलाई क Determine the maximum current that flows in the eirant and its characteristic decay time. The circuit consists only of a resistor and a capacitors in series. A solenoid has length 10cm with 1000 turns of a cross-sectional area of 4 mm wire and i) Determine the self-inductance of the solenoid the solenoid i and the stored carries energy a current of SMA. ii) Use Ampere's law to relate the magnitude et the magnetic field inside a solenoid to the current flowing through it. Show that the energy stored in a solenoid is stored in the magnetic field