k F X m HE Figure Q1 Figure Q1 shows a forced spring-mass system with damping, where mass m = 1 kg, spring constant k = 0.2 N/m, and damping coefficient c = 0.3 N-s/m. (a) This forced spring-mass system with damping can be described by the following differential equation: d'x(t) c dx(t) k + +x(t) == F(t) dt² m dt m m

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Sketch frequency response of the system from part (a) in the form of Bode plot as accurately as you can.
k
F
X
m
HE
Figure Q1
Figure Q1 shows a forced spring-mass system with damping, where
mass m = 1 kg, spring constant k = 0.2 N/m, and damping coefficient c
= 0.3 N-s/m.
(a) This forced spring-mass system with damping can be described
by the following differential equation:
d'x(t) c dx(t) k
+
+x(t) == F(t)
dt²
m dt
m
m
Transcribed Image Text:k F X m HE Figure Q1 Figure Q1 shows a forced spring-mass system with damping, where mass m = 1 kg, spring constant k = 0.2 N/m, and damping coefficient c = 0.3 N-s/m. (a) This forced spring-mass system with damping can be described by the following differential equation: d'x(t) c dx(t) k + +x(t) == F(t) dt² m dt m m
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