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Choose the correct option: In Young's double-slit experiment, the two coherent sources have different intensities. - Physics

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प्रश्न

Choose the correct option:

In Young's double-slit experiment, the two coherent sources have different intensities. If the ratio of the maximum intensity to the minimum intensity in the interference pattern produced is 25 : 1, what is the ratio of the intensities of the two sources?

पर्याय

  • 5:1

  • 25:1

  • 3:2

  • 9:4

MCQ

उत्तर

9:4

Explanation:

Given: The ratio of maximum intensity to minimum intensity is `I_(max)/I_(min) = 25/1`

• Apply the formula to calculate the ratio `I_(max)/I_(min)`.

`I_(max)/I_(min) = (a_1 + a_2)^2/(a_1 - a_2)^2`

Where, `a_1^2/a_2^2 = I_1/I_2`

• Substitute `I_(max)/I_(min) = 25/1` for `I_(max)/I_(min) = 25/1` in the above relation. 

`25/1 = (a_1 + a_2)^2/(a_1 - a_2)^2`

`5/1 = (a_1 + a_2)/(a_1 - a_2)`

⇒ `a_1 = 3; a_2 = 2`

• Substitute 3 for a1 and 2 for a2 in the relation `a_1^2/a_2^2 = I_1/I_2`

`I_1/I_2 = 3^2/2^2`

I1 : I2 :: 9 : 4

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पाठ 7: Wave Optics - Exercises [पृष्ठ १८४]

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बालभारती Physics [English] 12 Standard HSC Maharashtra State Board
पाठ 7 Wave Optics
Exercises | Q 1.4 | पृष्ठ १८४

संबंधित प्रश्‍न

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Is it necessary to have two waves of equal intensity to study interference pattern? Will there be an effect on clarity if the waves have unequal intensity?


The speed of light depends ____________ .


The equation of a light wave is written as \[y = A \sin\left( kx - \omega t \right).\] Here, `y` represents _______ .


The inverse square law of intensity \[\left(\text{i.e. the intensity }\infty \frac{1}{r^2}\right)\] is valid for a ____________ .


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(a) Light obeys the laws of reflection.

(b) Speed of light in water is smaller than its speed in vacuum.

(c) Light shows interference.

(d) Light shows photoelectric effect.


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(a) \[\nu_A  >  \nu_B  >  \nu_C\]

(b) \[\nu_A  <  \nu_B  <  \nu_C\]

(c) \[\nu_A  =  \nu_B  =  \nu_C\]

(d) \[\nu_B  = \frac{1}{2}\left( \nu_A + \nu_C \right)\]


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\[\left( 400\text{ nm }< \lambda < 700\text{ nm}\right)\]


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Answer in brief:

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  1. What is the angular separation in radians between the central maximum and an adjacent maximum?
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Answer in brief:

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(a) 500 nm (visible light)
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(c) 0.500 nm (X rays)?


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