A particle of mass 167 g is attached to a horizontal spring and set into oscillatory...
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A particle of mass 167 g is attached to a horizontal spring and set into oscillatory motion on a frictionless surface by stretching the spring by 67 cm from its equilibrium length at t=0.00 s. The particle is found to oscillate with a period of 0.35 S. a. What is the maximum kinetic energy of this system? b. What is the position of the particle at t=0.18 seconds? c. What is the velocity of the particle t=0.18 seconds? To continue enter the result of part c in m/s. Round your answer to 1 decimal place. A particle of mass 167 g is attached to a horizontal spring and set into oscillatory motion on a frictionless surface by stretching the spring by 67 cm from its equilibrium length at t=0.00 s. The particle is found to oscillate with a period of 0.35 S. a. What is the maximum kinetic energy of this system? b. What is the position of the particle at t=0.18 seconds? c. What is the velocity of the particle t=0.18 seconds? To continue enter the result of part c in m/s. Round your answer to 1 decimal place.
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a Maximum kinetic energy The maximum kinetic energy of the system is equal to the potential energy stored in the spring at its maximum compression Thi... View the full answer
Related Book For
Fundamentals of Physics
ISBN: 978-0471758013
8th Extended edition
Authors: Jearl Walker, Halliday Resnick
Posted Date:
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