PROBLEM3: Consider the system shown in Figure 3, where m = 70 ton and k = 6000 kN/m. d) Derive the equations of motion. e) Find the natural frequencies and mode shapes of the system. f) Find the free-vibration response of the system for the initial conditions: v (0) = cm, v (0) = m Sec 5k 0888

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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PROBLEM3:
Consider the system shown in Figure 3, where m = 70 ton and k = 6000 kN/m.
d) Derive the equations of motion.
e) Find the natural frequencies and mode shapes of the system.
f) Find the free-vibration response of the system for the initial conditions:
v (0)
m
(2)
{2} cm.
=
cm, v (0)
Sec
00000 m
k
00000
k
x₂ (1)
5k
0000
Figure 3
00000
k
x₂ (1)
m
00000
k
X3 (1)
Transcribed Image Text:PROBLEM3: Consider the system shown in Figure 3, where m = 70 ton and k = 6000 kN/m. d) Derive the equations of motion. e) Find the natural frequencies and mode shapes of the system. f) Find the free-vibration response of the system for the initial conditions: v (0) m (2) {2} cm. = cm, v (0) Sec 00000 m k 00000 k x₂ (1) 5k 0000 Figure 3 00000 k x₂ (1) m 00000 k X3 (1)
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