A student is standing on the surface of Ceres, an asteroid. Ceres gravitational acceleration (i.e., Ceres) is 0.270 m/s². She makes a simple timing device by using a 0.750-kg mass (called a bob) attached to a string (i.e., a Simple Pendulum). What length [L, {m}] does the string need to be to create a period of 12.0 seconds? Assume the amplitude is less than 10⁰.

Classical Dynamics of Particles and Systems
5th Edition
ISBN:9780534408961
Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter2: Newtonian Mechanics-single Particle
Section: Chapter Questions
Problem 2.52P: A particle of mass m moving in one dimension has potential energy U(x) = U0[2(x/a)2 (x/a)4], where...
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A student is standing on the surface of Ceres, an asteroid. Ceres
gravitational acceleration (i.e., g Ceres) is 0.270 m/s². She makes a simple
timing device by using a 0.750-kg mass (called a bob) attached to a string
(i.e., a Simple Pendulum). What length [L, {m}] does the string need to be
to create a period of 12.0 seconds? Assume the amplitude is less than 10°.
A)
0.0821
B) 0.985
C) 35.7
D) 3.09
E) 1.02
Transcribed Image Text:A student is standing on the surface of Ceres, an asteroid. Ceres gravitational acceleration (i.e., g Ceres) is 0.270 m/s². She makes a simple timing device by using a 0.750-kg mass (called a bob) attached to a string (i.e., a Simple Pendulum). What length [L, {m}] does the string need to be to create a period of 12.0 seconds? Assume the amplitude is less than 10°. A) 0.0821 B) 0.985 C) 35.7 D) 3.09 E) 1.02
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