A sphere moves in simple harmonic motion with a frequency of 5.00 Hz and an amplitude of 3.30 cm. (a) Through what total distance (in cm) does the sphere move during one cycle of its motion? cm (b) What is its maximum speed (in cm/s)? cm/s Where does this maximum speed occur? O as the sphere passes through equilibrium at maximum excursion from equilibrium exactly halfway between equilibrium and maximum excursion none of these

Classical Dynamics of Particles and Systems
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ISBN:9780534408961
Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter11: Dynamics Of Rigid Bodies
Section: Chapter Questions
Problem 11.15P
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A sphere moves in simple harmonic motion with a frequency of 5.00 Hz and an amplitude of 3.30 cm.
(a) Through what total distance (in cm) does the sphere move during one cycle of its motion?
cm
(b) What is its maximum speed (in cm/s)?
cm/s
Where does this maximum speed occur?
as the sphere passes through equilibrium
at maximum excursion from equilibrium
exactly halfway between equilibrium and maximum excursion
none of these
(c) What is the maximum magnitude of acceleration (in m/s²) of the sphere?
m/s²
Where in the motion does the maximum acceleration occur?
as the sphere passes through equilibrium
O at maximum excursion from equilibrium
exactly halfway between equilibrium and maximum excursion
O none of these
Transcribed Image Text:A sphere moves in simple harmonic motion with a frequency of 5.00 Hz and an amplitude of 3.30 cm. (a) Through what total distance (in cm) does the sphere move during one cycle of its motion? cm (b) What is its maximum speed (in cm/s)? cm/s Where does this maximum speed occur? as the sphere passes through equilibrium at maximum excursion from equilibrium exactly halfway between equilibrium and maximum excursion none of these (c) What is the maximum magnitude of acceleration (in m/s²) of the sphere? m/s² Where in the motion does the maximum acceleration occur? as the sphere passes through equilibrium O at maximum excursion from equilibrium exactly halfway between equilibrium and maximum excursion O none of these
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