A mass of 0.5 kg stretches a spring by 20 cm. Neglect damping constant, an external vibrations create a force of F(t)=8cos3t N. !3D Note: Round all answers to 1 decimal place. 1. Find the steady-state solution. u(t)=l 2. Find the amplitude. A 3. Find the phase shift. 8=te1
A mass of 0.5 kg stretches a spring by 20 cm. Neglect damping constant, an external vibrations create a force of F(t)=8cos3t N. !3D Note: Round all answers to 1 decimal place. 1. Find the steady-state solution. u(t)=l 2. Find the amplitude. A 3. Find the phase shift. 8=te1
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![A mass of 0.5 kg stretches a spring by 20 cm. Neglect damping constant,
an external vibrations create a force of F(t)= 8cos3t N.
Note: Round all answers to 1 decimal place.
1. Find the steady-state solution. u(t)=
2. Find the amplitude. A
3. Find the phase shift. &=te](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ffdf8372f-39df-4f33-a526-009407bb461a%2F72cb4384-fe6c-4ae4-8c0b-f492fdcf60ac%2Felyjugsr_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A mass of 0.5 kg stretches a spring by 20 cm. Neglect damping constant,
an external vibrations create a force of F(t)= 8cos3t N.
Note: Round all answers to 1 decimal place.
1. Find the steady-state solution. u(t)=
2. Find the amplitude. A
3. Find the phase shift. &=te
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