A train car has block M₂ on the floor of the car and block M₁ stacked on top of M₂. You acceleration constraints are that M2 and M₁ remain stationary relative to each other and remain on the same part of the train's floor. µs1 = 0.5 refers to the surface between M₁ and M₂ while us2 = 0.25 refers to the surface between M₂ and the floor. a) 5) c) Draw an Interaction Diagram then Free Body Diagrams for each ob- ject in your system that satisfy the con- straints (size of vectors matter). What is the maximum accel- eration the train can have to fulfill the constraints? What is the Force of friction 10kg and M₂ = acting on M₁ if M₁ 30kg? = M₁ M₂ Usi=1/ Hs2=1/

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Problem 3:
A train car has block M₂ on the floor of the
car and block M₁ stacked on top of M₂.
You acceleration constraints are that M₂
and M₁ remain stationary relative to each
other and remain on the same part of the
train's floor. μS1 = 0.5 refers to the surface
between M₁ and M₂ while us2 = 0.25 refers
to the surface between M₂ and the floor.
a)
b)
Draw an Interaction Diagram
then Free Body Diagrams for each ob-
ject in your system that satisfy the con-
straints (size of vectors matter).
What is the maximum accel-
eration the train can have to fulfill the
constraints?
c)
What is the Force of friction
acting on M₁ if M₁ = 10kg and M₂ =
30kg?
M₁
M₂
Ms1=1/2
Hs2=1/4
Transcribed Image Text:Problem 3: A train car has block M₂ on the floor of the car and block M₁ stacked on top of M₂. You acceleration constraints are that M₂ and M₁ remain stationary relative to each other and remain on the same part of the train's floor. μS1 = 0.5 refers to the surface between M₁ and M₂ while us2 = 0.25 refers to the surface between M₂ and the floor. a) b) Draw an Interaction Diagram then Free Body Diagrams for each ob- ject in your system that satisfy the con- straints (size of vectors matter). What is the maximum accel- eration the train can have to fulfill the constraints? c) What is the Force of friction acting on M₁ if M₁ = 10kg and M₂ = 30kg? M₁ M₂ Ms1=1/2 Hs2=1/4
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