IC-3 A 167 gram mass is vibrating about its equilibrium position on the end of a spring as shown in problem SHM-8. While vibrating, the mass is observed to have a maximum speed of 0.500m/s and a maximum acceleration of 6.00m/s. At t-0 the mass is at the equilibrium position with a velocity to the left. a) Find the numerical values for the angular frequency o and the amplitude of the motion xm. Hint: think about how Vm and xm are related. b) Find the value of the spring constant of the spring. c) The position of the block is described by x-Xmcos(ot+0.). Find all possible values of 0, and then explain how to determine the value of 0, that corresponds to the given conditions.

Modern Physics
3rd Edition
ISBN:9781111794378
Author:Raymond A. Serway, Clement J. Moses, Curt A. Moyer
Publisher:Raymond A. Serway, Clement J. Moses, Curt A. Moyer
Chapter3: The Quantum Theroy Of Light
Section3.2: Blackbody Radiation
Problem 3E: An object of mass m on a spring of stiffness k oscillates with an amplitude A about its equilibrium...
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IC-3 A 167 gram mass is vibrating about its equilibrium position on the end of a spring as shown in problem
SHM-8. While vibrating, the mass is observed to have a maximum speed of 0.500m/s and a maximum
acceleration of 6.00m/s. At t0 the mass is at the equilibrium position with a velocity to the left.
a) Find the numerical values for the angular frequency o and the amplitude of the motion xm. Hint:
think about how Vm and xm are related.
b) Find the value of the spring constant of the spring.
c) The position of the block is described by x Xmcos(@t+0,). Find all possible values of 0, and then
explain how to determine the value of 0, that corresponds to the given conditions.
99+
hp
Transcribed Image Text:IC-3 A 167 gram mass is vibrating about its equilibrium position on the end of a spring as shown in problem SHM-8. While vibrating, the mass is observed to have a maximum speed of 0.500m/s and a maximum acceleration of 6.00m/s. At t0 the mass is at the equilibrium position with a velocity to the left. a) Find the numerical values for the angular frequency o and the amplitude of the motion xm. Hint: think about how Vm and xm are related. b) Find the value of the spring constant of the spring. c) The position of the block is described by x Xmcos(@t+0,). Find all possible values of 0, and then explain how to determine the value of 0, that corresponds to the given conditions. 99+ hp
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