b) The motor-pump system shown in Fig. 5.36(a) is modeled as a rigid bar of mass m=50kg and mass moment of inertia A = 100 kg-m. The foundation of the system can be replaced by two springs of stiffness k = 500 N/m k = 200 N/m. and Determine the natural frequencies of the system. C.G. m, Jo Motor, Pump C.G. xt) Base (a) Foundation FIGURE 5.36 Motor-pump system on springs.

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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b) The motor-pump system shown in Fig. 5.36(a) is modeled as a rigid bar of
mass m=50kg and mass moment of inertia A = 100 kg-m². The foundation of
the system can be replaced by two springs of stiffness k = 500 N/m k = 200
N/m. and Determine the natural frequencies of the system.
C.G. m, Jo
Motor
- Pump
C.G.
Base
Foundation
(a)
FIGURE 5.36 Motor-pump system on springs.
0mm
Transcribed Image Text:b) The motor-pump system shown in Fig. 5.36(a) is modeled as a rigid bar of mass m=50kg and mass moment of inertia A = 100 kg-m². The foundation of the system can be replaced by two springs of stiffness k = 500 N/m k = 200 N/m. and Determine the natural frequencies of the system. C.G. m, Jo Motor - Pump C.G. Base Foundation (a) FIGURE 5.36 Motor-pump system on springs. 0mm
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