Embibe Experts Solutions for Chapter: Alternating Current, Exercise 4: Exercise - 4

Author:Embibe Experts

Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Alternating Current, Exercise 4: Exercise - 4

Attempt the free practice questions on Chapter 28: Alternating Current, Exercise 4: Exercise - 4 with hints and solutions to strengthen your understanding. Alpha Question Bank for Engineering: Physics solutions are prepared by Experienced Embibe Experts.

Questions from Embibe Experts Solutions for Chapter: Alternating Current, Exercise 4: Exercise - 4 with Hints & Solutions

HARD
JEE Main/Advance
IMPORTANT

A box P and a coil Q are connected in series with an AC source of variable frequency. The EMF of source is constant at 10 V. Box P contains a capacitance of 1 μF in series with a resistance of 32 Ω. Coil Q has a self inductance 4.9 mH and a resistance of 68 Ω. The frequency is adjusted so that the maximum current flows in P and Q. Find the impedance of P and Q at this frequency. Also find the voltage across P and Q, respectively.

MEDIUM
JEE Main/Advance
IMPORTANT

In a series LCR circuit with an ac source of 50 V, R=300Ω, frequency v=50π Hz. The average electric field energy stored in the capacitor and average magnetic energy stored in the coil are 25 mJ and 5 mJ, respectively. The RMS current in the circuit is 0.10 A. Then find:

(a) Capacitance (c) of capacitor 

(b) Inductance (L) of inductor.

(c) The sum of rms potential difference across the three elements.

HARD
JEE Main/Advance
IMPORTANT

An inductor 20 × 103 Henry, a capacitor 100 μF and a resistor 50 Ω are connected in series across a source of EMF V=10 Vsin314t. Find the energy dissipated in the circuit in 20 min. If resistance is removed from the circuit and the value of inductance is doubled, then find the variation of current with time (t in second) in the new circuit.

EASY
JEE Main/Advance
IMPORTANT

The electric current in an AC circuit is given by i=i0sinωt. What is the time taken by the current to change from its maximum value to the rms value?

HARD
JEE Main/Advance
IMPORTANT

A series LCR circuit with L=0.125/π H, C=500/π nF, R=23 Ω is connected to a 230 V variable frequency supply.

(a) What is the source frequency for which current amplitude is maximum? Obtain this maximum value.

(b) What is the source frequency for which average power absorbed by the circuit is maximum? Obtain the value of this maximum power.

(c) For what reactance of the circuit, the power transferred to the circuit is half the power at resonance? What is the current amplitude at this reactance?

(d) If ω is the angular frequency at which the power consumed in the circuit is half the power at resonance, write an expression for ω.

(e) What is the Q-factor (quality factor) of the given circuit ?

MEDIUM
JEE Main/Advance
IMPORTANT

The maximum values of the alternating voltages and current are 400 V and 20 A, respectively, in a circuit connected to 50 Hz supply and these quantities are sinusoidal. The instantaneous values of the voltage and current are 200 2 V and 10 A, respectively. At that instant both are increasing positively. Determine the average power consumed in the circuit. 

HARD
JEE Main/Advance
IMPORTANT

A 750 Hz, 20 V source is connected to a resistance of 100 Ω, a capacitance of 1.0 μF and an inductance of 0.18 H in series. Calculate the following quantities: 

(a) Impedance of the circuit

(b) Draw an impedance diagram with suitable scale

(c) Power factor

(d) The time in which the resistance will get heated by 10ºC, provided that the thermal capacity of resistance = 2 J ºC-1

MEDIUM
JEE Main/Advance
IMPORTANT

In the given circuit 

Question Image

Calculate

(a) Current in each branch.

(b) Power generated in each resistance

(c) Total power generated in the circuit.

(d) Net current drawn from source.

(e) Net impedance of the circuit.