A block whose mass m is (680*R1+R2) g is fastened to a spring whose spring constant k is (65+R1) N/m. The block is pulled a distance x = (30+R1+R2) cm from its equilibrium position at x =0 on a frictionless surface and released from rest at t =0. a) What are the angular frequency, the frequency, and the period of the resulting motion? b) What is the amplitude of the oscillation? c) What is the maximum speed vm of the oscillating block, and where is the block when it has this speed? d) What is the magnitude am of the maximum acceleration, of the block? e) What is the phase constant o for the motion? f) What is the displacement function x(t) for the spring-block system? R1=6,R2=

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A block whose mass m is (680*R1+R2) g is
fastened to a spring whose spring constant k
is (65+R1) N/m. The block is pulled a
distance x = (30+R1+R2) cm from its
equilibrium position at x =0 on a frictionless
surface and released from rest at t =0.
a) What are the angular frequency, the
frequency, and the period of the resulting
motion?
b) What is the amplitude of the
oscillation?
c) What is the maximum speed vm of
the oscillating block, and where is the
block when it has this speed?
d) What is the magnitude am of the
maximum acceleration, of the block?
e) What is the phase constant o for the
motion?
f) What is the displacement function x(t)
for the spring-block system? R1=6,R2=6
Transcribed Image Text:A block whose mass m is (680*R1+R2) g is fastened to a spring whose spring constant k is (65+R1) N/m. The block is pulled a distance x = (30+R1+R2) cm from its equilibrium position at x =0 on a frictionless surface and released from rest at t =0. a) What are the angular frequency, the frequency, and the period of the resulting motion? b) What is the amplitude of the oscillation? c) What is the maximum speed vm of the oscillating block, and where is the block when it has this speed? d) What is the magnitude am of the maximum acceleration, of the block? e) What is the phase constant o for the motion? f) What is the displacement function x(t) for the spring-block system? R1=6,R2=6
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