Review Conceptual Example 2 before attempting this problem. Two slits are 0.154 mm apart. A mixture of red light (wavelength = 687 nm) and yellow-green light (wavelength = 564 nm) falls on the slits. A flat observation screen is located 3.34 m away. What is the distance on the screen between the third-order red fringe and the third-order yellow-green fringe? m=3 m=3 m=0 m=3 m=3 Number i Units Fringes on observation screen

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter27: Wave Optics
Section: Chapter Questions
Problem 7OQ: A monochromatic beam of light of wavelength 500 nm illuminates a double slit having a slit...
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Review Conceptual Example 2 before attempting this problem. Two slits are 0.154 mm apart. A mixture of red light (wavelength = 687
nm) and yellow-green light (wavelength = 564 nm) falls on the slits. A flat observation screen is located 3.34 m away. What is the
distance on the screen between the third-order red fringe and the third-order yellow-green fringe?
m=3
m=3
m=0
m=3
m=3
Number i
Units
Fringes on observation screen
Transcribed Image Text:Review Conceptual Example 2 before attempting this problem. Two slits are 0.154 mm apart. A mixture of red light (wavelength = 687 nm) and yellow-green light (wavelength = 564 nm) falls on the slits. A flat observation screen is located 3.34 m away. What is the distance on the screen between the third-order red fringe and the third-order yellow-green fringe? m=3 m=3 m=0 m=3 m=3 Number i Units Fringes on observation screen
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