A 2.00 kg frictionless block is attached to an ideal spring of force constant 300 N/m. At t = 0, the block has velocity -4.00 m/s and displacement 0.200 m. Determine the following: A. The amplitude of the oscillation B. The position-time and velocity-time functions of the spring-mass system

University Physics Volume 1
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Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter15: Oscillations
Section: Chapter Questions
Problem 67AP: A 2.00-kg block lies at rest on a frictionless table. A spring, with a spring constant of 100 N/m is...
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A 2.00 kg frictionless block is attached to an ideal spring of force constant 300 N/m. At t = 0, the block has velocity -4.00 m/s and displacement 0.200 m. Determine the following:

A. The amplitude of the oscillation

B. The position-time and velocity-time functions of the spring-mass system

A 2.00 [kg] frictionless block is attached to an ideal spring of force constant 300. [N/m]. At t = 0 the
block has velocity -4.00 [m/s] and displacement 0.200 [m]. Determine the following:
A. The amplitude of the oscillation
B. The position-time and velocity-time functions of the spring-mass system
Transcribed Image Text:A 2.00 [kg] frictionless block is attached to an ideal spring of force constant 300. [N/m]. At t = 0 the block has velocity -4.00 [m/s] and displacement 0.200 [m]. Determine the following: A. The amplitude of the oscillation B. The position-time and velocity-time functions of the spring-mass system
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