8) A simple pendulum of length L and mass M has frequency f. To increase its frequency to 2f: (a) decrease its length to L/4 (b) decrease its length to L/2 (c) increase its length to 2L (d)increase its length to 4L 9) A simple pendulum of length L is set to oscillate in simple harmonic motion. When its potential energy is one-half its total mechanical energy, U = E /2, then which of the following is true about its velocity: (a) v = ±vmax/2 (b) v = ±vmax/4 (c) v = ±vmaxV2/2

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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speed and maximum height reached by the bob? (Take g = 9.8 m/s²)
(a) hmax = 1.87 cm; vmax = 3.44 m/s
(b) hmax = 2.89 cm; vmax = 0.75 m/s
(c) hmax = 1.87 cm; vmax = 0.75 m/s
(d) hmax = 2.89 cm; vmax = 3.44 m/s
8) A simple pendulum of length L and mass M has frequency f. To increase its frequency to 2f:
(a) decrease its length to L/4
(b) decrease its length to L/2
(c) increase its length to 2L
(d)increase its length to 4L
9) A simple pendulum of length L is set to oscillate in simple harmonic motion. When its potential energy
is one-half its total mechanical energy, U = E/2, then which of the following is true about its velocity:
(a) v = ±vmax/2
(b)v = ±vmax/4
(c) v = ±vmaxV2/2
Transcribed Image Text:touch O “ 20,| 35% O 9:31 PM alfa + PHYS220_Spring-20-21_Practice Sheet-1_Keys.pdf speed and maximum height reached by the bob? (Take g = 9.8 m/s²) (a) hmax = 1.87 cm; vmax = 3.44 m/s (b) hmax = 2.89 cm; vmax = 0.75 m/s (c) hmax = 1.87 cm; vmax = 0.75 m/s (d) hmax = 2.89 cm; vmax = 3.44 m/s 8) A simple pendulum of length L and mass M has frequency f. To increase its frequency to 2f: (a) decrease its length to L/4 (b) decrease its length to L/2 (c) increase its length to 2L (d)increase its length to 4L 9) A simple pendulum of length L is set to oscillate in simple harmonic motion. When its potential energy is one-half its total mechanical energy, U = E/2, then which of the following is true about its velocity: (a) v = ±vmax/2 (b)v = ±vmax/4 (c) v = ±vmaxV2/2
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