9. The following differential equation provides a simple model of a suspension system. The constant m...
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9. The following differential equation provides a simple model of a suspension system. The constant m gives the mass of moving parts, the constant k relates to stiffiness of the suspension system and the constant e is a measure of the damping in the system. F is a constant force appliced at / 0. më + cx + kx = F Given that m= 1, k=4, F=1 and both x= 0 and dx/dt 0 when t-10, determine the responses, x(t) for t -0 to 8 and plot x(t) for each case in one graph. Remember to label cach curve. 1. c=0 2. c mk 3. c 4 mk 9. The following differential equation provides a simple model of a suspension system. The constant m gives the mass of moving parts, the constant k relates to stiffiness of the suspension system and the constant e is a measure of the damping in the system. F is a constant force appliced at / 0. më + cx + kx = F Given that m= 1, k=4, F=1 and both x= 0 and dx/dt 0 when t-10, determine the responses, x(t) for t -0 to 8 and plot x(t) for each case in one graph. Remember to label cach curve. 1. c=0 2. c mk 3. c 4 mk
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2 Matlab Function function ypms ypmstxm 1k 4 c mk05F1ypms1 x2ypms2 Fm kmx1 cmx2ypms ypms1 ... View the full answer
Related Book For
Discrete Time Signal Processing
ISBN: 978-0137549207
2nd Edition
Authors: Alan V. Oppenheim, Rolan W. Schafer
Posted Date:
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