Physics for Scientists and Engineers
Physics for Scientists and Engineers
10th Edition
ISBN: 9781337553278
Author: Raymond A. Serway, John W. Jewett
Publisher: Cengage Learning
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Chapter 34, Problem 1P
To determine

The minimum angular speed of the wheel for this experiment.

Expert Solution & Answer
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Answer to Problem 1P

The minimum angular speed of the wheel is 114rad/s .

Explanation of Solution

Given info: The distance between the light source and the mirror was 11.45km , no of notches in the wheel is 720 notches, experimentally determined value of c was 2.998×108m/s .

The formula to calculate the angular speed of the wheel is,

ω=dθdt (1)

Here,

ω is the angular speed of the wheel.

dθ is the degree movement of the wheel in consecutive notches.

dt is the time for the light to travel to the stationary mirror and back.

The formula to calculate dθ is,

dθ=2πnumber of notches

Here,

dθ is the degree movement of the wheel in consecutive notches.

Substitute 720 for the number of notches.

dθ=2π720 (2)

The formula to calculate dt is,

dt=2dc (3)

Here,

d is the number of notches in the wheel.

c is the experimentally determined value of speed of light.

Substitute 2π720 for dθ and 2dc for dt in equation (1).

ω=(2π720)(2dc) (4)

Substitute 11.45km for d and 2.998×108m/sec for c in equation (4).

=2π/720rad2×(11.45km×103m1km)2.998×108m/sec=114rad/sec .

Conclusion:

Therefore, the minimum angular speed of the wheel is 114rad/sec .

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Chapter 34 Solutions

Physics for Scientists and Engineers

Ch. 34 - Prob. 6PCh. 34 - Prob. 7PCh. 34 - Two flat, rectangular mirrors, both perpendicular...Ch. 34 - Prob. 9PCh. 34 - A ray of light strikes a flat block of glass (n =...Ch. 34 - Prob. 11PCh. 34 - Prob. 12PCh. 34 - A laser beam is incident at an angle of 30.0 from...Ch. 34 - A ray of light strikes the midpoint of one face of...Ch. 34 - When you look through a window, by what time...Ch. 34 - Light passes from air into flint glass at a...Ch. 34 - You have just installed a new bathroom in your...Ch. 34 - A triangular glass prism with apex angle 60.0 has...Ch. 34 - You are working at your university swimming...Ch. 34 - Prob. 20PCh. 34 - Prob. 21PCh. 34 - A submarine is 300 m horizontally from the shore...Ch. 34 - Prob. 23PCh. 34 - A light beam containing red and violet wavelengths...Ch. 34 - Prob. 25PCh. 34 - The speed of a water wave is described by v=gd,...Ch. 34 - For 589-nm light, calculate the critical angle for...Ch. 34 - Prob. 28PCh. 34 - A room contains air in which the speed of sound is...Ch. 34 - Prob. 30PCh. 34 - An optical fiber has an index of refraction n and...Ch. 34 - Consider a horizontal interface between air above...Ch. 34 - How many times will the incident beam in Figure...Ch. 34 - Consider a beam of light from the left entering a...Ch. 34 - Why is the following situation impossible? While...Ch. 34 - Prob. 36APCh. 34 - When light is incident normally on the interface...Ch. 34 - Refer to Problem 37 for its description of the...Ch. 34 - A light ray enters the atmosphere of the Earth and...Ch. 34 - A light ray enters the atmosphere of a planet and...Ch. 34 - Prob. 41APCh. 34 - Prob. 42APCh. 34 - Prob. 43APCh. 34 - Prob. 44APCh. 34 - Prob. 45APCh. 34 - As sunlight enters the Earths atmosphere, it...Ch. 34 - A ray of light passes from air into water. For its...Ch. 34 - Prob. 48APCh. 34 - Prob. 49APCh. 34 - Figure P34.50 shows a top view of a square...Ch. 34 - Prob. 51APCh. 34 - Prob. 52CPCh. 34 - Prob. 53CPCh. 34 - Pierre de Fermat (16011665) showed that whenever...Ch. 34 - Prob. 55CPCh. 34 - Suppose a luminous sphere of radius R1 (such as...Ch. 34 - Prob. 57CP
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