11. A mass weighing 2 lb stretches a spring by 0.5 ft. The spring is displaced 1 ft below the equilibrium and then released. The spring is in a medium that exerts a viscous resistance of 6 lb when the mass has a velocity of 3 ft/sec. (Assume g = 32 ft/sec2). Formulate the initial value problem. Do not solve.
11. A mass weighing 2 lb stretches a spring by 0.5 ft. The spring is displaced 1 ft below the equilibrium and then released. The spring is in a medium that exerts a viscous resistance of 6 lb when the mass has a velocity of 3 ft/sec. (Assume g = 32 ft/sec2). Formulate the initial value problem. Do not solve.
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
Transcribed Image Text:11. A mass weighing 2 lb stretches a spring by 0.5 ft. The spring is displaced 1 ft below the
equilibrium and then released. The spring is in a medium that exerts a viscous resistance
of 6 lb when the mass has a velocity of 3 ft/sec. (Assume g = 32 ft/sec²). Formulate the
initial value problem. Do not solve.
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