Tutorials in Introductory Physics
Tutorials in Introductory Physics
1st Edition
ISBN: 9780130970695
Author: Peter S. Shaffer, Lillian C. McDermott
Publisher: Addison Wesley
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Chapter 14.1, Problem 1cT

Suppose that a single change were made to the apparatus (keeping the distance between the mask and the screen fixed), resulting in the new pattern shown.
1. Are the angles to the interference maxima in the new pattern greater than, less than, or equal to those in the original pattern? Explain how you can tell from the photographs.

Chapter 14.1, Problem 1cT, Suppose that a single change were made to the apparatus (keeping the distance between the mask and
2. If the wavelength of light ( λ ) was the only quantity changed, determine (i) whetherλ was increased or decreased, and (iii) whether it was changed by a factor that was greater than, less than, or equal to 2. Explain how you can use your results from parts A and B to justify your answer.
3. If the slit separation (d) was the only quantity changed, determine (i) whether d was increased or decreased, and (ii) whether it was changed by a factor that was greater than, less than, or equal to 2. Explain how you can use your results from parts A and B to justify your answer.

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How do I solve this problem? Please make sure the solution is fully viewable and doesn't cut off.
A simple cubic crystal is illuminated with X- ray of wavelength 0.09 nm at a glance angle. The crystal is rotated and the angles at which Bragg reflection occurs are measured. 1. Which set of crystal plane will give the smallest angle for first - order reflection? Explain in details your answer. 2. If this angle is 8.9°, determine the spacing between these planes. 3. At what angle will first-order reflection be obtained from the (110) crystal planes? Will there be any higher order reflection from this plane?
Explain the topic belows. General Conditions for Interference For sustained interference of light to occur, the following conditions must be met: 1. Coherent sources of light are needed. 2. Amplitudes and intensities must be nearly equal to produce sufficient contrast between maxima and minima. 3. The source must be small enough to produce wide fringes. 4. The interfering sources must be near enough to produce wide fringes. 5. The source and screen must be far enough to produce wide fringes. 6. The source must emit light in the same state of polarization. 7. The source must be monochromatic.
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Spectra Interference: Crash Course Physics #40; Author: CrashCourse;https://www.youtube.com/watch?v=-ob7foUzXaY;License: Standard YouTube License, CC-BY