Q1. A mass-spring-damper vibration system, if the mass is 10 kg. stiffness -2000 N/m and damped constant -50 N.s/m. The system is vibrated at the steady-state initial conditions with frequency 3 rad'see, displacement 0.1 m and velocity 2 m/sec. Determine the force that required vibrating this system and the response of the system after 2 sec.

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Q1. A mass-spring-damper vibration system, if the mass is 10 kg. stiffness -2000 Nim and
damped constant 50 N.s/m. The system is vibrated at the steady-state initial conditions with
frequency 3 rad'sec, displacement 0.1 m and velocity 2 m/sec. Determine the force that
required vibrating this system and the response of the system after 2 sec.
Q2. The vibration system is shown in Fig.1. if the K 1500 N/m, K 1800 N/m, K 1200
Nim, w, 12.9 rad/sec, C- 40 N.s/m, r 0.1m and I-0.01 kg/m. Find out the value of m.
K2
Transcribed Image Text:Q1. A mass-spring-damper vibration system, if the mass is 10 kg. stiffness -2000 Nim and damped constant 50 N.s/m. The system is vibrated at the steady-state initial conditions with frequency 3 rad'sec, displacement 0.1 m and velocity 2 m/sec. Determine the force that required vibrating this system and the response of the system after 2 sec. Q2. The vibration system is shown in Fig.1. if the K 1500 N/m, K 1800 N/m, K 1200 Nim, w, 12.9 rad/sec, C- 40 N.s/m, r 0.1m and I-0.01 kg/m. Find out the value of m. K2
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