A block of mass 0.5 kg is attached to a spring and is moving in simple harmonic motion on a frictionless horizontal surface. The displacement of the mass can be described by where t is time in second. When the block is at x = 0.5 m, what are (a) the speed, (b) the acceleration, (c) the ratio between the potential energy and the kinetic energy of the block? And what are (d) the maximum speed and (e) the total energy of the block

Physics for Scientists and Engineers
10th Edition
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter1: Physics And Measurement
Section: Chapter Questions
Problem 26P: Review. Prove that one solution of the equation 2.00x43.00x3+5.00x=70.0 is x = 2.22.
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A block of mass 0.5 kg is attached to a spring and is moving in simple harmonic motion on
a frictionless horizontal surface. The displacement of the mass can be described by


where t is time in second. When the block is at x = 0.5 m, what are
(a) the speed,
(b) the acceleration,
(c) the ratio between the potential energy and the kinetic energy of the block? And what are
(d) the maximum speed and
(e) the total energy of the block?

x= (2.0 m) cos| 4rt +
3
Transcribed Image Text:x= (2.0 m) cos| 4rt + 3
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