L2. An ideal spring, with spring constant k = 0.50 N/m, has an m = 0.20 kg block attached to its end as shown. At time t=0, the block is traveling with its maximum speed of 2.0 m/s as it passes through its equilibrium position, headed to the right. Assume the +x-direction is to the right. k 3 a) What is the period of oscillation for the system? b) What is the amplitude of the motion? c) What is the phase constant, do for this system, if using x = Acos(wt +po) to describe the motion? d) Sketch a graph of x vs t for the motion. Be sure to label the period, amplitude and initial position of the motion on the graph.

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Chapter1: Units, Trigonometry. And Vectors
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L2. An ideal spring, with spring constant k = 0.50
N/m, has an m = 0.20 kg block attached to its end
as shown. At time t=0, the block is traveling with
its maximum speed of 2.0 m/s as it passes through
its equilibrium position, headed to the right.
Assume the +x-direction is to the right.
k
3
a) What is the period of oscillation for the
system?
b) What is the amplitude of the motion?
c) What is the phase constant, do for this system, if using x = Acos(wt +po) to describe the
motion?
d) Sketch a graph of x vs t for the motion. Be sure to label the period, amplitude and initial
position of the motion on the graph.
Transcribed Image Text:L2. An ideal spring, with spring constant k = 0.50 N/m, has an m = 0.20 kg block attached to its end as shown. At time t=0, the block is traveling with its maximum speed of 2.0 m/s as it passes through its equilibrium position, headed to the right. Assume the +x-direction is to the right. k 3 a) What is the period of oscillation for the system? b) What is the amplitude of the motion? c) What is the phase constant, do for this system, if using x = Acos(wt +po) to describe the motion? d) Sketch a graph of x vs t for the motion. Be sure to label the period, amplitude and initial position of the motion on the graph.
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