For the two-degree-of-freedom system shown below determine the transfer functions X(s)/F(s) and 0(s)/F(s) and the frequency response functions X(o)/F(o) and 0(0)/F(0). x and 0 are shown in the Figure and L-1 m, the mass of the beam = 2 kg, k-100 N/m and F(t)-20sin(2t) N. /- L/4 L/4 L/2 e(t) x(t) F(t)
For the two-degree-of-freedom system shown below determine the transfer functions X(s)/F(s) and 0(s)/F(s) and the frequency response functions X(o)/F(o) and 0(0)/F(0). x and 0 are shown in the Figure and L-1 m, the mass of the beam = 2 kg, k-100 N/m and F(t)-20sin(2t) N. /- L/4 L/4 L/2 e(t) x(t) F(t)
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![For the two-degree-of-freedom system shown below determine the transfer functions X(s)/F(s)
and 0(s)/F(s) and the frequency response functions X(o)/F(@) and 0(m)/F(m). x and 0 are shown
in the Figure and L-1 m, the mass of the beam 2 kg, k-100 N/m and F(t)=20sin(2t) N.
L/4
L/4
L/2
e(t)
|x(t)
F(t)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fee97e7e7-9b6a-43ed-919f-fc11a7e6553e%2F1bb94224-5e00-416d-80f3-8a908811fa98%2Fqx4c6ym_processed.jpeg&w=3840&q=75)
Transcribed Image Text:For the two-degree-of-freedom system shown below determine the transfer functions X(s)/F(s)
and 0(s)/F(s) and the frequency response functions X(o)/F(@) and 0(m)/F(m). x and 0 are shown
in the Figure and L-1 m, the mass of the beam 2 kg, k-100 N/m and F(t)=20sin(2t) N.
L/4
L/4
L/2
e(t)
|x(t)
F(t)
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