Answered step by step
Verified Expert Solution
Link Copied!

Question

1 Approved Answer

Information Flag Use the following diagram to answer the next two questions: question pen laser DVD 2 n = 1 Diffraction Grating Question 1 The

image text in transcribedimage text in transcribedimage text in transcribed
image text in transcribedimage text in transcribedimage text in transcribed
Information Flag Use the following diagram to answer the next two questions: question pen laser DVD 2 n = 1 Diffraction Grating Question 1 The quantity represented by the number 1 in the diagram is: Not yet answered O a. d = the distance between the two slits Marked out of 1.00 O b. A = the wavelength of the light Remove O c. n = the order of the bright fringe flag O d. x = the distance from the central bright fringe to the next bright fringe Question 2 The quantity represented by the number 2 in the diagram is: Not yet answered O a. x = the distance between the central bright fringe to another bright fringe Marked out of 1.00 O b. / = distance from the double slit to the screen Flag O c. d = distance between the two slits question O d. A = the wavelength of lightA CD has a line density of 5000 lines/cm. A monochromatic light source hits the CD to form a third order image that diffracts at 45 degrees. Calculate the wavelength of the light. Time left 1:48:25 out of O a. A = 4.71 x 10-5 m Ob. A = 1.18 x 103 m O c. A = 3.00 x 10-3 m O d. A = 4.71 x 10 7 m on 4 et A monochromatic light source moves through a double slit apparatus and produces a diffraction pattern. The following data is observed: ered n = 1 ed out of X = 0.0645 m = 0.545 m emove d = 2.24 x 10-6 m Calculate theta. a. 830 O b. 70 O c. 0.00020 O d. 0.860 Clear my choice Question 5 The equation that may be used to calculate the wavelength for the data in Question 4, and the reason are: lot yet answered O a. A = using , because theta is greater than 100 Marked out of n 1.00 Ob. A = ux b because theta is less than 10 Flag question O c. A= UX , because theta is greater than 10 Clear my choiceQuestion 6 A laser has a frequency of 5.467 x 10- Hz. It hits a diffraction grating with 5500 lines/m. The distance between the diffraction grating and the screen is 1.45 m, and n = 1. Not yet answered Determine the distance between the bright lines in the diffraction pattern. Marked out of Assume three significant digits for your final answer. 1.00 Flag O a. 1.82 x 10 4 m question O b. 5.49 x 10 6 m O c. 4.38 x 10 2 m O d. 4.39 x 10 5 m

Step by Step Solution

There are 3 Steps involved in it

Step: 1

blur-text-image

Get Instant Access to Expert-Tailored Solutions

See step-by-step solutions with expert insights and AI powered tools for academic success

Step: 2

blur-text-image

Step: 3

blur-text-image

Ace Your Homework with AI

Get the answers you need in no time with our AI-driven, step-by-step assistance

Get Started

Recommended Textbook for

Introduction to Elementary Particle Physics

Authors: Alessandro Bettini

2nd edition

1107050405, 978-1107050402

More Books

Students also viewed these Physics questions