A block of mass m = 200 g is attached to a spring whose spring constant isk= 3.2 N/m. Thne block oscillates along a horizontal frictionless surface. At t = 0.1 s, the position of the block is +0.2 m and its velocity is +1.2 m/s. a) Find the position of the block as a function of time: x = A cos(wt + P) %3D 0) Sketch a graph showing the position of the block as a function of time. Start at t = 0 and follow the motion for one complete cycle.

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A block of mass m = 200 g is attached to a spring whose spring constant isk= 3.2 N/m. The
block oscillates along a horizontal frictionless surface. At t = 0.1 s, the position of the block
is +0.2 m and its velocity is +1.2 m/s.
a) Find the position of the block as a function of time: x = A cos(wt + P)
b) Sketch a graph showing the position of the block as a function of time. Start at t = 0
and follow the motion for one complete cycle.
%3D
Transcribed Image Text:A block of mass m = 200 g is attached to a spring whose spring constant isk= 3.2 N/m. The block oscillates along a horizontal frictionless surface. At t = 0.1 s, the position of the block is +0.2 m and its velocity is +1.2 m/s. a) Find the position of the block as a function of time: x = A cos(wt + P) b) Sketch a graph showing the position of the block as a function of time. Start at t = 0 and follow the motion for one complete cycle. %3D
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