my" + cy' + ky = F(t), y(0) = 0, y'(0) = 0 modeling the motion of a spring-mass-dashpot system initially at rest and subjected to an applied force F(t), where the unit of force is the Newton (N). Assume that m = 2 kilograms, c = 8 kilograms per second, k = 80 Newtons per meter, and F(t) = 30 sin(6t) Newtons. %3D a. Solve the initial value problem. y(t) help

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my" + cy' + ky = F(t), y(0) = 0, y'(0) = 0
modeling the motion of a spring-mass-dashpot system initially at rest and subjected to an applied
force F(t), where the unit of force is the Newton (N). Assume that m = 2 kilograms, c = 8
kilograms per second, k = 80 Newtons per meter, and F(t) = 30 sin(6t) Newtons.
%3D
%3D
a. Solve the initial value problem.
y(t)
help
Transcribed Image Text:my" + cy' + ky = F(t), y(0) = 0, y'(0) = 0 modeling the motion of a spring-mass-dashpot system initially at rest and subjected to an applied force F(t), where the unit of force is the Newton (N). Assume that m = 2 kilograms, c = 8 kilograms per second, k = 80 Newtons per meter, and F(t) = 30 sin(6t) Newtons. %3D %3D a. Solve the initial value problem. y(t) help
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