3. Suppose the model of a vehicle suspension is given below. Write the equation of motion in matrix form (not in State Space form). Calculate the natural frequencies for k₁ k2 10 N/m, m2 = 50kg, and m₁ = 2000kg. -= - - 103 N/m, 1 x1(c) m1 www m1 Car mass k₁ Car spring k1 k₂ Tire stiffness www x2(1) m2 Tire mass м2 k₂ ↑

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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3. Suppose the model of a vehicle suspension is given below. Write the equation of motion in
matrix form (not in State Space form). Calculate the natural frequencies for k₁
k2 10 N/m, m2 = 50kg, and m₁ = 2000kg.
-=
-
-
103 N/m,
1 x1(c)
m1
www
m1
Car mass
k₁
Car spring
k1
k₂
Tire stiffness
www
x2(1)
m2
Tire mass
м2
k₂
↑
Transcribed Image Text:3. Suppose the model of a vehicle suspension is given below. Write the equation of motion in matrix form (not in State Space form). Calculate the natural frequencies for k₁ k2 10 N/m, m2 = 50kg, and m₁ = 2000kg. -= - - 103 N/m, 1 x1(c) m1 www m1 Car mass k₁ Car spring k1 k₂ Tire stiffness www x2(1) m2 Tire mass м2 k₂ ↑
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