मराठी
कर्नाटक बोर्ड पी.यू.सी.पीयूसी विज्ञान इयत्ता ११

An Inductor of Inductance 2.00 H is Joined in Series with a Resistor of Resistance 200 ω and a Battery of Emf 2.00 V. At T = 10 Ms

Advertisements
Advertisements

प्रश्न

An inductor of inductance 2.00 H is joined in series with a resistor of resistance 200 Ω and a battery of emf 2.00 V. At t = 10 ms, find (a) the current in the circuit, (b) the power delivered by the battery, (c) the power dissipated in heating the resistor and (d) the rate at which energy is being stored in magnetic field.

बेरीज
Advertisements

उत्तर

Given:-

Inductance of the inductor, L = 2 H

Resistance of the resistor connected to the inductor, R = 200 Ω,

Emf of the battery connected, E = 2 V


(a) The current in the LR circuit after t seconds after connecting the battery is given by

i = i0(1 − e−t)

Here,

i0 = Steady state value of current

`i_0 = E/R=2/200A`

At time t = 10 ms, the current is given by

\[i= \frac{2}{200}(1 - e^{- 10 \times {10}^{- 3} \times 200/2} )\]

i = 0.01(1 − e−1)

i = 0.01(1 − 0.3678)

i = 0.01 × 0.632 = 6.3 mA


(b) The power delivered by the battery is given by

P = Vi

P = Ei0(1 − e−t)

\[P = \frac{E^2}{R}(1 -  e^{- t/\tau} )\]

\[P = \frac{2 \times 2}{200}(1 -  e^{10 \times {10}^{- 3} \times 200/2} )\]

P = 0.02(1 − e−1)

P = 0.01264 = 12.6 mW


(c) The power dissipated in the resistor is given by

P1 = i2R
P1 = [i0(1 − e−t)]2 R
P1 = (6.3 mA)2 × 200
P1 = 6.3 × 6.3 × 200 × 10−5
P1 = 79.38 × 10−4
P1 = 7.938 × 10−3 = 8 mW


(d) The rate at which the energy is stored in the magnetic field can be calculated as:-

\[W =\frac{1}{2}L i^2\]

\[W= \frac{L}{2} {i_0}^2 (1 -  e^{- t/\tau}  )^2\]

W = 2 × 10−2(0.225)

W = 0.455 × 10−2

W = 4.6 × 10−3

W =  4.6 mW

shaalaa.com
  या प्रश्नात किंवा उत्तरात काही त्रुटी आहे का?
पाठ 38: Electromagnetic Induction - Exercises [पृष्ठ ३१२]

APPEARS IN

एचसी वर्मा Concepts of Physics Volume 1 and 2 [English]
पाठ 38 Electromagnetic Induction
Exercises | Q 86 | पृष्ठ ३१२

संबंधित प्रश्‍न

In a series LCR circuit, obtain the condition under which the impedance of the circuit is minimum ?


In a series LCR circuit, obtain the condition under which watt-less current flows in the circuit ?


A series LCR circuit is connected to an ac source. Using the phasor diagram, derive the expression for the impedance of the circuit. Plot a graph to show the variation of current with frequency of the source, explaining the nature of its variation.


A series LCR circuit is connected to a source having voltage v = vm sin ωt. Derive the expression for the instantaneous current I and its phase relationship to the applied voltage.

Obtain the condition for resonance to occur. Define ‘power factor’. State the conditions under which it is (i) maximum and (ii) minimum.


 Derive an expression for the average power consumed in a series LCR circuit connected to a.c. source in which the phase difference between the voltage and the current in the circuit is Φ.


The magnetic field at a point inside a 2.0 mH inductor-coil becomes 0.80 of its maximum value in 20 µs when the inductor is joined to a battery. Find the resistance of the circuit.


Draw a labelled graph showing a variation of impedance of a series LCR circuit with frequency of the a.c. supply.


Answer the following question.
What is the phase difference between the voltages across the inductor and the capacitor at resonance in the LCR circuit? 


Derive an expression for the average power dissipated in a series LCR circuit.


A series LCR circuit with R = 20 Ω, L = 1.5 H and C = 35 µF is connected to a variable-frequency 200 V ac supply. When the frequency of the supply equals the natural frequency of the circuit, what is the average power transferred to the circuit in one complete cycle?


Obtain the resonant frequency and Q-factor of a series LCR circuit with L = 3.0 H, C = 27 µF, and R = 7.4 Ω. It is desired to improve the sharpness of the resonance of the circuit by reducing its ‘full width at half maximum’ by a factor of 2. Suggest a suitable way.


To reduce the resonant frequency in an LCR series circuit with a generator


Which of the following components of an LCR circuit, with a.c. supply, dissipates energy?


Which of the following combinations should be selected for better tuning of an LCR circuit used for communication?


In series LCR circuit, the plot of Imax vs ω is shown in figure. Find the bandwidth and mark in the figure.


Consider the LCR circuit shown in figure. Find the net current i and the phase of i. Show that i = v/Z`. Find the impedance Z for this circuit.


A series LCR circuit driven by 300 V at a frequency of 50 Hz contains a resistance R = 3 kΩ, an inductor of inductive reactance XL = 250 πΩ, and an unknown capacitor. The value of capacitance to maximize the average power should be ______.


When an alternating voltage of 220V is applied across device X, a current of 0.25A flows which lags behind the applied voltage in phase by π/2 radian. If the same voltage is applied across another device Y, the same current flows but now it is in phase with the applied voltage.

  1. Name the devices X and Y.
  2. Calculate the current flowing in the circuit when the same voltage is applied across the series combination of X and Y.

In a series LCR circuit, the inductance L is 10 mH, capacitance C is 1 µF and resistance R is 100Ω. The frequency at which resonance occurs is ______.


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×