EBK PHYSICS FOR SCIENTISTS AND ENGINEER
EBK PHYSICS FOR SCIENTISTS AND ENGINEER
10th Edition
ISBN: 8220106740163
Author: SERWAY
Publisher: CENGAGE L
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Chapter 36, Problem 1P

Two slits are separated by 0.320 mm. A beam of 500-nm light strikes the slits, producing an interference pattern. Determine the number of maxima observed in the angular range −30.0° < θ < 30.0°.

Expert Solution & Answer
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To determine
The number of maxima observed in angular range 30.0°<θ<30.0° .

Answer to Problem 1P

The number of maxima observed in the angular range 30.0°<θ<30.0° is 641 .

Explanation of Solution

Given info: The two slits are separated by a distance of 0.320mm and the wavelength of beam is 500nm .

The diagram is shown as

EBK PHYSICS FOR SCIENTISTS AND ENGINEER, Chapter 36, Problem 1P , additional homework tip  1

Figure 1

Consider there are n fringes (bright and dark) of width x on one side of the central bright.

The formula to calculate the interference is as,

dsinθ=nλ (1)

Here,

n is the order.

λ is the wavelength.

d is the separation between the slits.

Rearrange the above formula to find n ,

dsinθ=nλn=dsinθλ

Substitute 0.320nm for d , 30° for θ , 500nm for λ in the above formula as,

n=dsinθλ=(0.320nm×103m1mm)sin30°(500nm×109m1nm)=(0.320nm×103m1mm)2(500nm×109m1nm)=320 EBK PHYSICS FOR SCIENTISTS AND ENGINEER, Chapter 36, Problem 1P , additional homework tip  2

The approximate value of n is 320.5 .

The maxima are used for bright fringe and minima for dark fringe. Thus, the total number of fringes (bright and dark) in the angular separation from 30° to 30° is 2×320.5 that is 641 .

Conclusion:

Therefore, the number of maxima observed in the angular range 30.0°<θ<30.0° is 641

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Chapter 36 Solutions

EBK PHYSICS FOR SCIENTISTS AND ENGINEER

Ch. 36 - A student holds a laser that emits light of...Ch. 36 - Coherent light rays of wavelength strike a pair...Ch. 36 - In Figure P36.10 (not to scale), let L = 1.20 m...Ch. 36 - You are working in an optical research laboratory....Ch. 36 - You are operating a new radio telescope that has...Ch. 36 - In the double-slit arrangement of Figure P36.13, d...Ch. 36 - Monochromatic light of wavelength is incident on...Ch. 36 - Prob. 15PCh. 36 - Show that the distribution of intensity in a...Ch. 36 - Green light ( = 546 nm) illuminates a pair of...Ch. 36 - Monochromatic coherent light of amplitude E0 and...Ch. 36 - A material having an index of refraction of 1.30...Ch. 36 - A soap bubble (n = 1.33) floating in air has the...Ch. 36 - A film of MgF2 (n = 1.38) having thickness 1.00 ...Ch. 36 - An oil film (n = 1.45) floating on water is...Ch. 36 - When a liquid is introduced into the air space...Ch. 36 - You are working as an expert witness for an...Ch. 36 - Astronomers observe the chromosphere of the Sun...Ch. 36 - A lens made of glass (ng = 1.52) is coated with a...Ch. 36 - Mirror M1 in Figure 36.13 is moved through a...Ch. 36 - Radio transmitter A operating at 60.0 MHz is 10.0...Ch. 36 - In an experiment similar to that of Example 36.1,...Ch. 36 - In the What If? section of Example 36.2, it was...Ch. 36 - Two coherent waves, coming from sources at...Ch. 36 - Raise your hand and hold it flat. Think of the...Ch. 36 - In a Youngs double-slit experiment using light of...Ch. 36 - Review. A flat piece of glass is held stationary...Ch. 36 - Figure P36.35 shows a radio-wave transmitter and a...Ch. 36 - Figure P36.35 shows a radio-wave transmitter and a...Ch. 36 - In a Newtons-rings experiment, a plano-convex...Ch. 36 - Measurements are made of the intensity...Ch. 36 - A plano-concave lens having index of refraction...Ch. 36 - Why is the following situation impossible? A piece...Ch. 36 - Interference fringes are produced using Lloyds...Ch. 36 - A plano-convex lens has index of refraction n. The...Ch. 36 - Prob. 43APCh. 36 - Prob. 44APCh. 36 - Astronomers observe a 60.0-MHz radio source both...Ch. 36 - Prob. 46CPCh. 36 - Our discussion of the techniques for determining...Ch. 36 - The condition for constructive interference by...Ch. 36 - Both sides of a uniform film that has index of...Ch. 36 - Slit 1 of a double-slit is wider than slit 2 so...
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