6.6 Derive the differential equations governing the damped two degree-of-freedom system shown in Figure P6.6 using x, and x, as generalized coordinates. Derive the differential equations governing the damped two degree-of-freedom system shown in Figure P6.7 using x, and x, as generalized coordinates.

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Chapter4: Numerical Analysis Of Heat Conduction
Section: Chapter Questions
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6.6
6.7
www
AS DA
Derive the differential equations governing the damped two degree-of-freedom
system shown in Figure P6.6 using x, and x, as generalized coordinates.
Derive the differential equations governing the damped two degree-of-freedom
system shown in Figure P6.7 using x, and x, as generalized coordinates.
Imm
*>
141
2m
C
112₂2
M
Fosin oot
FIGURE P
M
2m
Transcribed Image Text:6.6 6.7 www AS DA Derive the differential equations governing the damped two degree-of-freedom system shown in Figure P6.6 using x, and x, as generalized coordinates. Derive the differential equations governing the damped two degree-of-freedom system shown in Figure P6.7 using x, and x, as generalized coordinates. Imm *> 141 2m C 112₂2 M Fosin oot FIGURE P M 2m
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