A spring with a spring constant of k=161 N/m is initially compressed by a lock a distance d = 0.36 m. The block is on a horizontal surface with coefficient of kinetic friction static friction, and has a mass of m = 7 kg. Ftotal,x: F total.y: Submit Part (a) Assuming the block is released from the initial position and begins to move to the right, please use the interactive area below to draw the ree Body Diagram for the block. Use Fsp as the spring force. If necessary, use Fs for the force of static friction and Fk as the force of kinetic friction. Hint m Feedback I give up! x Unstretched Length - wwwwww to move to the m Add Force ✓ Reset All x Part (b) Assuming the block is released from the initial position and e x-direction in the configuration shown above, using the variables provided. input an expression for the sum of the forces Part (c) How large would the coefficient of static friction u, need to be to keep the block from moving? Part (d) Assuming the block has just begun to move and the coefficient of kinetic friction is μ = 0.2, what is the block's acceleration in meters per uare second?

College Physics
11th Edition
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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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A spring with a spring constant of k = 161 N/m is initially compressed by a
block a distance d = 0.36 m. The block is on a horizontal surface with coefficient of kinetic friction
k static frictions, and has a mass of m = 7 kg.
Ftotal,x:
F total,y:
Submit
Hint
m
Part (a) Assuming the block is released from the initial position and begins to move to the right, please use the interactive area below to draw the
Free Body Diagram for the block. Use Fsp as the spring force. If necessary, use Fs for the force of static friction and Fk as the force of kinetic friction.
Add Force
Reset All
Feedback
Unstretched Length
I give up!
wwwmm
d→
m
X
Part (b) Assuming the block is released from the initial position and begins to move to the right, input an expression for the sum of the forces in
the x-direction in the configuration shown above, using the variables provided.
Part (c) How large would the coefficient of static friction u, need to be to keep the block from moving?
Part (d) Assuming the block has just begun to move and the coefficient of kinetic friction is = 0.2, what is the block's acceleration in meters per
square second?
Transcribed Image Text:A spring with a spring constant of k = 161 N/m is initially compressed by a block a distance d = 0.36 m. The block is on a horizontal surface with coefficient of kinetic friction k static frictions, and has a mass of m = 7 kg. Ftotal,x: F total,y: Submit Hint m Part (a) Assuming the block is released from the initial position and begins to move to the right, please use the interactive area below to draw the Free Body Diagram for the block. Use Fsp as the spring force. If necessary, use Fs for the force of static friction and Fk as the force of kinetic friction. Add Force Reset All Feedback Unstretched Length I give up! wwwmm d→ m X Part (b) Assuming the block is released from the initial position and begins to move to the right, input an expression for the sum of the forces in the x-direction in the configuration shown above, using the variables provided. Part (c) How large would the coefficient of static friction u, need to be to keep the block from moving? Part (d) Assuming the block has just begun to move and the coefficient of kinetic friction is = 0.2, what is the block's acceleration in meters per square second?
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