A box is motionless, sitting on a ramp with an incline of 0 =54.4 ° being pulled in the direction up the ramp by a spring with a spring constant of k=150 N/m that is stretched x=6.4 m. The coefficient of friction between the ramp and the box are u =0.53 and u k=0.15 and the friction force is going down the ramp. What is the mass of the box? Solve symbolically: Solve numerically: m= Units: If the box starts moving up a ramp with an acceleration of a=2.41 m/s, what is the new length that the spring will stretch? Solve symbolically: Solve numerically: Units:

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A box is motionless, sitting on a ramp with an incline of 0 =54.4 ° being pulled in the direction up the ramp
by a spring with a spring constant of k=150 N/m that is stretched x=6.4 m. The coefficient of friction
between the ramp and the box are u s=0.53 and u k=0.15 and the friction force is going down the ramp.
What is the mass of the box?
Solve symbolically:
Solve numerically:
m=
Units:
If the box starts moving up a ramp with an acceleration of a=2.41 m/s, what is the new length that the
spring will stretch?
Solve symbolically:
Solve numerically:
Units:
Transcribed Image Text:A box is motionless, sitting on a ramp with an incline of 0 =54.4 ° being pulled in the direction up the ramp by a spring with a spring constant of k=150 N/m that is stretched x=6.4 m. The coefficient of friction between the ramp and the box are u s=0.53 and u k=0.15 and the friction force is going down the ramp. What is the mass of the box? Solve symbolically: Solve numerically: m= Units: If the box starts moving up a ramp with an acceleration of a=2.41 m/s, what is the new length that the spring will stretch? Solve symbolically: Solve numerically: Units:
Expert Solution
Step 1

Given: 

θ=54.4°k = 150 N/mx = 6.4 mμs = 0.53μk = 0.15Mass of the box = m

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