An 6-kg mass is attached to a spring hanging from the ceiling and allowed to come to rest. Assume that the spring constant is 40 N/m and the damping constant is 4 N-sec/m. At time t=0, an external force of 2 sin 3t cos 3t is applied to the system. Determine the amplitude and frequency of the steady-state solution.
An 6-kg mass is attached to a spring hanging from the ceiling and allowed to come to rest. Assume that the spring constant is 40 N/m and the damping constant is 4 N-sec/m. At time t=0, an external force of 2 sin 3t cos 3t is applied to the system. Determine the amplitude and frequency of the steady-state solution.
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![An 6-kg mass is attached to a spring hanging from the ceiling and allowed to come to rest. Assume that the spring constant is 40 N/m and the damping constant is 4 N-sec/m.
At time t=0, an external force of 2 sin 3t cos 3t is applied to the system. Determine the amplitude and frequency of the steady-state solution.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc83dfb19-f1c7-4b75-8492-1ddb3b556ee5%2F13a90fcf-5842-4887-9e1b-cda6d985cd34%2Fc4dnx8m_processed.png&w=3840&q=75)
Transcribed Image Text:An 6-kg mass is attached to a spring hanging from the ceiling and allowed to come to rest. Assume that the spring constant is 40 N/m and the damping constant is 4 N-sec/m.
At time t=0, an external force of 2 sin 3t cos 3t is applied to the system. Determine the amplitude and frequency of the steady-state solution.
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