With zero initial conditions, the free-body diagram equation for mass M2 transformed into Laplace is: www M₁ Friction b M₂ www Velocity vx(t) Velocity 1(8) Force Select one: O a. M₂s V2 + b V2 + k₂ (V2 - V₁)/s = R(s) O b. M₂s² V₂+bs V₂+ k₂ (V2 V₁) = R(s) Oc. None of these answers is true O d. M₂s V₂+ b V₂+ k₂ (V₂- V₁)/s = 0 ○ e. M₂s² V₂+bs V₂+k₂ (V₂- V₁) = 0
With zero initial conditions, the free-body diagram equation for mass M2 transformed into Laplace is: www M₁ Friction b M₂ www Velocity vx(t) Velocity 1(8) Force Select one: O a. M₂s V2 + b V2 + k₂ (V2 - V₁)/s = R(s) O b. M₂s² V₂+bs V₂+ k₂ (V2 V₁) = R(s) Oc. None of these answers is true O d. M₂s V₂+ b V₂+ k₂ (V₂- V₁)/s = 0 ○ e. M₂s² V₂+bs V₂+k₂ (V₂- V₁) = 0
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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
Transcribed Image Text:With zero initial conditions, the free-body diagram equation for mass M2
transformed into Laplace is:
www
M₁
Friction
b
M₂
www
Velocity
vx(t)
Velocity
1(8)
Force
Select one:
O a. M₂s V2 + b V2 + k₂ (V2 - V₁)/s = R(s)
O b. M₂s² V₂+bs V₂+ k₂ (V2 V₁) = R(s)
Oc. None of these answers is true
O d. M₂s V₂+ b V₂+ k₂ (V₂- V₁)/s = 0
○ e. M₂s² V₂+bs V₂+k₂ (V₂- V₁) = 0
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