My Figure 1 The system shown in Figure 1 simulates two masses. The mass of the engine and the car will be represented by MI and M2, respectively. The two are held together by a spring, which has the stiffhess coefficient of k. F represents the force applied by the engine. A. Draw the necessary free-body diagram and derive the differential equation of motion B Assuming zero initial conditions, determine the transfer function for two different cases of output displacement x1.

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter11: Transient Stability
Section: Chapter Questions
Problem 11.18P
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My
B2
Figure 1
The system shown in FigureI simulates two masses. The mass of the engine and
the car will be represented by MI and M2, respectively. The two are held together
by a spring, which has the stiffhess coefficient of k. F represents the force applied
by the engine.
A. Draw the necessary free-body diagram and derive the differential equation of
motion
B Assuming zero initial conditions, determine the transfer function for two
different cases of output displacement x1-
Transcribed Image Text:My B2 Figure 1 The system shown in FigureI simulates two masses. The mass of the engine and the car will be represented by MI and M2, respectively. The two are held together by a spring, which has the stiffhess coefficient of k. F represents the force applied by the engine. A. Draw the necessary free-body diagram and derive the differential equation of motion B Assuming zero initial conditions, determine the transfer function for two different cases of output displacement x1-
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