bartleby

Concept explainers

bartleby

Videos

Question
Book Icon
Chapter 35, Problem 87PQ

(a)

To determine

The distance between the central maxima and adjacent maxima in the interference pattern in the screen.

(a)

Expert Solution
Check Mark

Answer to Problem 87PQ

The distance between the central maxima and an adjacent maxima in the interference pattern in the screen is 6.03×103m.

Explanation of Solution

Write the relation of the path difference for bright fringe in young’s double slit experiment.

    nλ=dsinθn                                                                                                        (I)

Here, λ is wavelength, the distance between the two consecutive slits is d and n is integer number.

Write the equation of the angle made by the particular fringe from the central maxima.

    tanθn=ynx                                                                                                           (II)

Here, yn is the distance between the particular fringe from the central fringe and x is the distance between slit and screen.

For small angle θ, consider sinθ=tanθ.

Substitute tanθ for sinθ in the equation (I).

    nλ=dtanθntanθn=nλd

Now, substitute nλd for tanθn in the equation (II).

  nλd=ynxyn=nλxd

Substitute, n=1 in the above equation to get the distance between the central maxima and the next consecutive maxima.

    Δy=λxd

Conclusion:

Substitute, 485nm for λ, 2.3m for x and 0.185mm for d in the above equation to find Δy.

    Δy=(485nm)(2.3m)(0.185mm)=(485×109m)(2.3m)(0.185×106m)=6.03×103m

Therefore, the distance between the central maxima and an adjacent maxima in the interference pattern in the screen is 6.03×103m.

(b)

To determine

The distance between the first and the third dark band of the interference pattern.

(b)

Expert Solution
Check Mark

Answer to Problem 87PQ

The distance between the first and the third dark band of the interference pattern is 1.2×102m.

Explanation of Solution

Write the relation of the path difference for dark fringe in young’s double slit experiment.

    (n+12)λ=dsinθn

Here, λ is wavelength, the distance between the two consecutive slits is d. n is integer number and θn is the angle between the dark band and the central fringe.

Substitute, tanθ for sinθ in the above equation for small angle θ.

    (n+12)λ=dtanθntanθn=(n+12)λd

Consider the equation (2).

    tanθn=ynx

Substitute (n+12)λd for tanθn in the above equation.

    (n+12)λd=ynxyn=(n+12)λxd

Calculate the distance between the first and the third fringe.

    y3y1=(3+12)λxd(1+12)λxd=(72)λxd(32)λxd=(73)λx2d=4λx2d

Simplify the above equation.

    y3y1=2λxd

Conclusion:

Substitute 485nm for λ, 2.3m for x and 0.185mm for d in the above equation to find y3y1.

    y3y1=2×(485nm)(109m1nm)(2.3m)(0.185mm)(103m1mm)=2×(485×109m)(2.3m)(0.185×106m)=1.2×102m

Therefore, the distance between the first and the third dark band of the interference pattern is 1.2×102m.

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
A. The light intensity vs. position graph of a double-slit experiment is shown below. The graph was made with helium–neon laser light of wavelength 640 nm shined through two very narrow slits separated by a small distance. The slits were 2.0 meters away from the probe. What is the distance between any two bright fringes, in mm? B. The light intensity vs. position graph of a double-slit experiment is shown below. The graph was made with helium–neon laser light of wavelength 640 nm shined through two very narrow slits separated by a small distance. The slits were 2.0 meters away from the probe. What is the distance between any two dark fringes, in mm? C. The light intensity vs. position graph of a double-slit experiment is shown below. The graph was made with helium–neon laser light of wavelength 640 nm shined through two very narrow slits separated by a small distance. The slits were 2.0 meters away from the probe. What is the spacing between the two slits, in mm?
A double-slit interference pattern is created by two narrow slits spaced 0.190 mm apart. The distance between the first and the fifth minimum on a screen 62 cm behind the slits is 5.9 mm.What is the wavelength of the light used in this experiment? a. What is the wavelength in nm of the light used in this experiment?   b. What is the distance from the center of the pattern to the first order maximum in cm?
Please answer it within 30 minutes.I will upvote! Red light of wavelength 630 nm passes through two slits and then onto a screen that is 1.7 m from the slits. The center of the third order bright band on the screen is separated from the central maximum by 0.90 m. A. Determine the frequency of the light. B. Determine the angle of the third-order bright band. C. Determine the slit separation.

Chapter 35 Solutions

Webassign Printed Access Card For Katz's Physics For Scientists And Engineers: Foundations And Connections, 1st Edition, Single-term

Ch. 35 - Prob. 5PQCh. 35 - Prob. 6PQCh. 35 - A student shines a red laser pointer with a...Ch. 35 - Monochromatic light is incident on a pair of slits...Ch. 35 - Prob. 9PQCh. 35 - In a Youngs double-slit experiment with microwaves...Ch. 35 - A beam from a helium-neon laser with wavelength...Ch. 35 - Prob. 12PQCh. 35 - Prob. 13PQCh. 35 - Prob. 14PQCh. 35 - Light from a sodium vapor lamp ( = 589 nm) forms...Ch. 35 - Prob. 16PQCh. 35 - Prob. 17PQCh. 35 - Prob. 18PQCh. 35 - Prob. 19PQCh. 35 - Prob. 20PQCh. 35 - Prob. 21PQCh. 35 - Prob. 22PQCh. 35 - Prob. 23PQCh. 35 - Figure P35.24 shows the diffraction patterns...Ch. 35 - Prob. 25PQCh. 35 - Prob. 26PQCh. 35 - A thread must have a uniform thickness of 0.525...Ch. 35 - Prob. 28PQCh. 35 - Prob. 29PQCh. 35 - A radio wave of wavelength 21.5 cm passes through...Ch. 35 - Prob. 31PQCh. 35 - Prob. 32PQCh. 35 - A single slit is illuminated by light consisting...Ch. 35 - Prob. 34PQCh. 35 - Prob. 35PQCh. 35 - Prob. 36PQCh. 35 - Prob. 37PQCh. 35 - Prob. 38PQCh. 35 - Prob. 39PQCh. 35 - Prob. 40PQCh. 35 - Prob. 41PQCh. 35 - Prob. 42PQCh. 35 - Prob. 43PQCh. 35 - Prob. 44PQCh. 35 - Prob. 45PQCh. 35 - Prob. 46PQCh. 35 - Prob. 47PQCh. 35 - Prob. 48PQCh. 35 - Figure P35.49 shows the intensity of the...Ch. 35 - Prob. 50PQCh. 35 - Prob. 51PQCh. 35 - Prob. 52PQCh. 35 - Light of wavelength 750.0 nm passes through a...Ch. 35 - Prob. 54PQCh. 35 - Prob. 55PQCh. 35 - Prob. 56PQCh. 35 - Light of wavelength 515 nm is incident on two...Ch. 35 - Light of wavelength 515 nm is incident on two...Ch. 35 - A Two slits are separated by distance d and each...Ch. 35 - Prob. 60PQCh. 35 - Prob. 61PQCh. 35 - If you spray paint through two slits, what pattern...Ch. 35 - Prob. 63PQCh. 35 - Prob. 64PQCh. 35 - Prob. 65PQCh. 35 - Prob. 66PQCh. 35 - Prob. 67PQCh. 35 - Prob. 68PQCh. 35 - Prob. 69PQCh. 35 - Prob. 70PQCh. 35 - Prob. 71PQCh. 35 - Prob. 72PQCh. 35 - Prob. 73PQCh. 35 - Prob. 74PQCh. 35 - Prob. 75PQCh. 35 - Prob. 76PQCh. 35 - Prob. 77PQCh. 35 - Another way to construct a double-slit experiment...Ch. 35 - Prob. 79PQCh. 35 - Prob. 80PQCh. 35 - Table P35.80 presents data gathered by students...Ch. 35 - Prob. 82PQCh. 35 - Prob. 83PQCh. 35 - Prob. 84PQCh. 35 - Prob. 85PQCh. 35 - Prob. 86PQCh. 35 - Prob. 87PQCh. 35 - Prob. 88PQCh. 35 - A One of the slits in a Youngs double-slit...Ch. 35 - Prob. 90PQ
Knowledge Booster
Background pattern image
Physics
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, physics and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Principles of Physics: A Calculus-Based Text
Physics
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Cengage Learning
Text book image
University Physics Volume 3
Physics
ISBN:9781938168185
Author:William Moebs, Jeff Sanny
Publisher:OpenStax
Text book image
Physics for Scientists and Engineers: Foundations...
Physics
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Cengage Learning
Text book image
College Physics
Physics
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Cengage Learning
Text book image
College Physics
Physics
ISBN:9781285737027
Author:Raymond A. Serway, Chris Vuille
Publisher:Cengage Learning
Text book image
Physics for Scientists and Engineers with Modern ...
Physics
ISBN:9781337553292
Author:Raymond A. Serway, John W. Jewett
Publisher:Cengage Learning
Diffraction of light animation best to understand class 12 physics; Author: PTAS: Physics Tomorrow Ambition School;https://www.youtube.com/watch?v=aYkd_xSvaxE;License: Standard YouTube License, CC-BY