Physics for Scientists and Engineers: Foundations and Connections
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN: 9781133939146
Author: Katz, Debora M.
Publisher: Cengage Learning
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Chapter 36, Problem 44PQ
To determine

The dispersion of the first three maxima that fall on the screen.

Expert Solution & Answer
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Answer to Problem 44PQ

The dispersion of the first order is 15.4×104rad/m, second order is 31×104rad/m and the third order is 46.7×104rad/m.

Explanation of Solution

Write the expression for mth maxima of diffraction grating.

    dsinθ=mλsinθ=mλdθ=sin1(mλd)                                                                                                         (I)

Here, d is the spacing grating, λ is the wavelength and m is the order.

Write the expression for diffraction grating in the first order.

    D=mdcosθ                                                                                                            (II)

Here, D is the diffraction grating.

Conclusion:

Calculate grating spacing as follows.

    d=11.54×103rulings=6.49×104cm×1m100cm=6.49×106m

Substitute 1 for m, 310nm for λ and 6.49×106m for d in equation (I) to calculate θ1.

    θ1=sin1(1×(310nm×1m109nm)6.49×106m)=sin1(0.0477)=2.74°

Substitute 1 for m, 6.49×106m for d and 2.74° for θ1 in equation (II) to calculate D1.

    D1=16.49×106m×cos(2.74°)=15.4×104rad/m

Substitute 2 for m, 310nm for λ and 6.49×106m for d in equation (I) to calculate θ2.

    θ2=sin1(2×(310nm×1m109nm)6.49×106m)=sin1(0.0954)=5.47°

Substitute 2 for m, 6.49×106m for d and 5.47° for θ2 in equation (II) to calculate D2.

    D2=26.49×106m×cos(5.47°)=31×104rad/m

Substitute 3 for m, 310nm for λ and 6.49×106m for d in equation (I) to calculate θ3.

    θ3=sin1(3×(310nm×1m109nm)6.49×106m)=sin1(0.1431)=8.23°

Substitute 3 for m, 6.49×106m for d and 8.23° for θ3 in equation (II) to calculate D3.

    D3=36.49×106m×cos(8.23°)=46.7×104rad/m

Therefore, the dispersion of the first order is 15.4×104rad/m, second order is 31×104rad/m and the third order is 46.7×104rad/m.

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Chapter 36 Solutions

Physics for Scientists and Engineers: Foundations and Connections

Ch. 36 - Prob. 6PQCh. 36 - Prob. 7PQCh. 36 - Prob. 8PQCh. 36 - Prob. 9PQCh. 36 - Prob. 10PQCh. 36 - Prob. 11PQCh. 36 - Prob. 12PQCh. 36 - Prob. 13PQCh. 36 - Prob. 14PQCh. 36 - Prob. 15PQCh. 36 - Prob. 16PQCh. 36 - Prob. 17PQCh. 36 - Prob. 18PQCh. 36 - Prob. 19PQCh. 36 - Prob. 20PQCh. 36 - Prob. 21PQCh. 36 - Prob. 22PQCh. 36 - Prob. 23PQCh. 36 - Prob. 24PQCh. 36 - Light of wavelength 566 nm is incident on a...Ch. 36 - Prob. 26PQCh. 36 - Prob. 27PQCh. 36 - Prob. 28PQCh. 36 - Prob. 29PQCh. 36 - Prob. 30PQCh. 36 - A light source emits a mixture of wavelengths from...Ch. 36 - Prob. 32PQCh. 36 - Prob. 33PQCh. 36 - Prob. 34PQCh. 36 - Prob. 35PQCh. 36 - Prob. 36PQCh. 36 - Prob. 37PQCh. 36 - Prob. 38PQCh. 36 - Prob. 39PQCh. 36 - Prob. 40PQCh. 36 - Prob. 41PQCh. 36 - Prob. 42PQCh. 36 - Prob. 43PQCh. 36 - Prob. 44PQCh. 36 - CASE STUDY Michelsons interferometer played an...Ch. 36 - CASE STUDY Michelsons interferometer played an...Ch. 36 - Prob. 47PQCh. 36 - Prob. 48PQCh. 36 - Problems 49 and 50 are paired. C Optical flats are...Ch. 36 - Optical flats are flat pieces of glass used to...Ch. 36 - Prob. 51PQCh. 36 - Prob. 52PQCh. 36 - Figure P36.53 shows two thin glass plates...Ch. 36 - Viewed from above, a thin film of motor oil with...Ch. 36 - Newtons rings, discovered by Isaac Newton, are an...Ch. 36 - Prob. 56PQCh. 36 - What is the radius of the beam of an argon laser...Ch. 36 - Prob. 58PQCh. 36 - A diffraction grating with 428 rulings per...Ch. 36 - How many rulings must a diffraction grating have...Ch. 36 - Prob. 61PQCh. 36 - White light is incident on a diffraction grating...Ch. 36 - X-rays incident on a crystal with planes of atoms...Ch. 36 - Prob. 64PQCh. 36 - Prob. 65PQCh. 36 - Prob. 66PQCh. 36 - The fringe width b is defined as the distance...Ch. 36 - The fringe width is defined as the distance...Ch. 36 - Prob. 69PQ
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