Consider the 2 kg mass subject to viscous friction shown in the figure below. The mass is at rest at t = 0. Find; a. The transfer function X(s)/F(s). b. The position of the mass, x(t), in response to a unit step function force, f(t). c. What is the position, x(t) when t = 1sec?

9.2 - Consider the 2 kg mass subject to viscous friction shown in the figure below. The mass is at rest at t = 0. Find; a. The transfer function X(s)/F(s). b. The position of the mass, x(t), in response to a unit step function force, f(t). c. What is the position, x(t) when t = 1sec?

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images - Consider the 2 kg mass subject to viscous friction shown in the figure below. The mass is at rest at t = 0. Find; a. The transfer function X(s)/F(s). b. The position of the mass, x(t), in response to a unit step function force, f(t). c. What is the position, x(t) when t = 1sec?

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