A spring-mass-damper system is at the equilibrium position. The mass m = 10 kg, the damping coefficient c = 18 N.s/m and stiffness k = 9000 N/m. The initial velocity is 5 m/s. (a) Is the system over, under or critically damped. Why? (b) Find the damped period of the system. (c) Find the position
A spring-mass-damper system is at the equilibrium position. The mass m = 10 kg, the damping coefficient c = 18 N.s/m and stiffness k = 9000 N/m. The initial velocity is 5 m/s. (a) Is the system over, under or critically damped. Why? (b) Find the damped period of the system. (c) Find the position
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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A spring-mass-damper system is at the equilibrium position. The mass m = 10 kg, the damping coefficient
c = 18 N.s/m and stiffness k = 9000 N/m. The initial velocity is 5 m/s.
(a) Is the system over, under or critically damped. Why?
(b) Find the damped period of the system.
(c) Find the position of the mass as a function of time.
(d) Calculate the amplitude of acceleration of the mass.
Please solve (d)
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