k m m = 200g, k = 4.44 N/m, v(0) = 0.1 m/s to the right, x(0) = 0.05m to the left of the equilibrium position %3D Derive the particular equation of motion of the mass m b. Solve for the position of the mass at t = 0.1s, t = 0.5s and t = 1s Draw a graph of x(t) from t = 0s to t = 1.5s, clearly showing the amplitude value, correct frequency, and initial conditions. а. C.

Elements Of Electromagnetics
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1.
k
m
m = 200g, k = 4.44 N/m, v(0) = 0.1 m/s to the right, x(0) = 0.05m to the left of the equilibrium position
а.
Derive the particular equation of motion of the mass m
b. Solve for the position of the mass att = 0.1s, t = 0.5s and t = 1s
Draw a graph of x(t) from t = Os to t = 1.5s, clearly showing the amplitude value, correct
frequency, and initial conditions.
С.
Transcribed Image Text:1. k m m = 200g, k = 4.44 N/m, v(0) = 0.1 m/s to the right, x(0) = 0.05m to the left of the equilibrium position а. Derive the particular equation of motion of the mass m b. Solve for the position of the mass att = 0.1s, t = 0.5s and t = 1s Draw a graph of x(t) from t = Os to t = 1.5s, clearly showing the amplitude value, correct frequency, and initial conditions. С.
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