Embibe Experts Solutions for Chapter: Alternating Current, Exercise 1: Exercise
Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Alternating Current, Exercise 1: Exercise
Attempt the free practice questions on Chapter 7: Alternating Current, Exercise 1: Exercise with hints and solutions to strengthen your understanding. Physics Crash Course (Based on Revised Syllabus-2023) solutions are prepared by Experienced Embibe Experts.
Questions from Embibe Experts Solutions for Chapter: Alternating Current, Exercise 1: Exercise with Hints & Solutions
When a series circuit is brought into resonance, the current has a large value. Why?

Obtain an expression for resonant frequency of a series circuit.

An source of frequency is connected to a inductor and a bulb. The bulb glows with some brightness. Calculate the capacitance of the capacitor to be connected in series with the circuit, so that the bulb glows with maximum brightness.

A capacitor, resistor and inductor are connected in series with an source. What should be the frequency of this source for which the current drawn in the circuit is maximum If the peak value of emf of the source is find for maximum current total impedance of the circuit.

Show that the average power dissipated in an circuit is, in general, given by
where is the resistance of the circuit (defined as real part of the complex impedance) and is the impedance.

A bulb of resistance , connected to an inductor of inductance , is in series with an ac source marked , . If the phase angle between the voltage and angle is , calculate the value of .

The emf and current of an a.c circuit containing are given by . Show that the average power of the circuit is , where and stand for virtual emf and virtual current respectively.

When a.c voltage supplied to LCR series circuit then damped oscillation is performed due to presence of
