For the mechanical system below, determine the tension forces between the two masses using the la
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For the mechanical system below, determine the tension forces between the two masses using the la
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- The following ramp has a slope of 14.0∘and a co-efficient of friction of μk=μk= 0.290. The mass of the box on the ramp, M, is unknown, but the mass hanging from down is given as 70.0 kg and the system accelerates to the right with an acceleration of a=a= 4.00 m/s2m/s2 (as shown below). Looking for: The force of tension in the rope will be: The mass, MM, of the box on the ramp is:Solve correctlysolve both the parts
- What would the FBD of the basketball at point 1, 2, and 3 look like? Draw 3 seperate FBD for each point. Label the forces and direction. Use a dynamics approach.A 566.78 kg box is placed on top of a 19.35° inclined plane with a coefficient of kinetic friction of 0.05. The box is attached to a pulley with a hanging mass of 130.23 kg. What is the acceleration of the system? Calculate the tension force on the rope. Use 9.81m/s squared for the gravityUse the worked example above to help you solve this problem. A car travels at a constant speed of 35.0 mi/h (15.6 m/s) on a level circular turn of radius 40.0 m. What minimum coefficient of static friction, ?s, between the tires and the roadway will allow the car to make the circular turn without sliding?