A 100 Ωresistance and a capacitor of 100 Ω reactance are connected in series across a 220 V source. When the capacitor is 50% charged, the peak value of the displacement current is:

1.  2.2 A

2.  11 A

3.  4.4 A

4.  112 A

Subtopic:  Different Types of AC Circuits |
From NCERT
NEET - 2016

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The electric and the magnetic fields, associated with an electromagnetic wave, propagating along the +z-axis, can be represented by:

1.  E=E0 k^, B=B0 i^

2.  E=E0 j^, B=B0 j^

3.  E=E0 j^, B=B0 k^

4.  E=E0 i^, B=B0 j^

Subtopic:  Properties of EM Waves |
 75%
From NCERT
AIPMT - 2011

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The dimension of 12ε0E2 where ε0 is the permittivity of free space and E is the electric field, is

1. [ML2T-2]

2. [ML-1T-2]

3.  [ML2T-1]

4.  [MLT-1]

Subtopic:  Properties of EM Waves |
 66%
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The intensity of visible radiation at a distance of 1 m from a bulb of 100 W which converts only 5% its power into light is :

(1) 0.4 W/m2             (2) 0.5 W/m2

(3) 0.1 W/m2             (4) 0.01 W/m2

Subtopic:  Maxwell's Equations |
 53%
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The magnetic field in a plane EM wave traveling in the positive x-direction is given by 

B=(100μT)sin[(2×1015s-1)(t-x/c)]j^

The equation for electric field is :

 

(1) E=100sin [(2×1015s-1)(t-x/c)]-k^

(2) E=3×1010sin [(2×1015s-1)(t-x/c)]-k^

(3) E=3×1010sin [(2×1015s-1)(t-x/c)] k^

(4) E=100sin [(2×1015s-1)(t-x/c)] k^

Subtopic:  Maxwell's Equations |
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The electric field part of an electromagnetic wave in a medium is represented by :

Ex=0;
Ey=2.5NCcos2π×106radst -π×10-2radmx
Ez=0.
The wave is-

1. moving along y-direction with frequency 2π×106 Hz and wavelength 200 m.

2. moving along +x-direction with frequency 106 Hz and wavelength 100 m

3. moving along +x-direction with frequency 106 Hz and wavelength 200 m

4. moving along - x-direction with frequency 106 Hz and wavelength 200 nm

Subtopic:  Generation of EM Waves |
 68%
From NCERT
NEET - 2009

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Statement-I: Gamma rays are more energetic than X-rays.

Statement-II: Gamma rays are of nuclear origin but X-rays are produced due to sudden deceleration of high energy electrons while falling on a metal of high atomic number.

(1) If both statement-I and Statement-II are true, and Statement-II is the correct explanation of Statement-I.

(2) If both Statement-I and Statement-II are true but Statement-II is not the correct explanation of Statement-I.

(3) If Statement-I is true but Statement-II is false.

(4) If Statement-I is false but Statement-II is true.

  1. If both the assertion and the reason are true and the reason is a correct explanation of the assertion
  2. If both the assertion and reason are true but the reason is not a correct explanation of the assertion
  3. If the assertion is true but the reason is false
  4. If both the assertion and reason are false
Subtopic:  Properties of EM Waves |
 57%
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Which of the following have zero average value in a plane electromagnetic wave?

(1) electric field

(2) magnetic field

(3) magnetic & electric field both

(4) none of these

Subtopic:  Properties of EM Waves |
 69%
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In electromagnetic wave the phase difference between electric and magnetic field vectors E and B is :

(1) 0         (2) π/2            (3) π             (4) π/4

Subtopic:  Properties of EM Waves |
 57%
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Select the correct option based on statements below:

Assertion (A): A changing electric field produces a magnetic field.
Reason (R): A changing magnetic field produces an electric field.
 
1. Both (A) and (R) are true and (R) is the correct explanation of (A).
2. Both (A) and (R) are true but (R) is not the correct explanation of (A).
3. (A) is true but (R) is false.
4. (A) is false but (R) is true.
  1. If both the assertion and the reason are true and the reason is a correct explanation of the assertion
  2. If both the assertion and reason are true but the reason is not a correct explanation of the assertion
  3. If the assertion is true but the reason is false
  4. If both the assertion and reason are false
Subtopic:  Maxwell's Equations |
 57%
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