10) An object was a mass of 10.0 kg is at rest at the top of...
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10) An object was a mass of 10.0 kg is at rest at the top of a frictionless inclined plane of length 8.00 m and an angle of inclination 30.0 with the horizontal. The object is released from this position and it stops at a distance d from the bottom of the inclined plane along a horizontal surface, as shown in Fig. 8-6. The coefficient of kinetic friction for the horizontal surface of 0.400. (a) What is the kinetic energy of the object at the bottom of the inclined plane? (b) What is the speed of the object at the bottom of the inclined plane? (c) At what horizontal distance from the bottom of the inclined plane will this object stop? d FIGURE 8-61 30 8 m Hi 10) An object was a mass of 10.0 kg is at rest at the top of a frictionless inclined plane of length 8.00 m and an angle of inclination 30.0 with the horizontal. The object is released from this position and it stops at a distance d from the bottom of the inclined plane along a horizontal surface, as shown in Fig. 8-6. The coefficient of kinetic friction for the horizontal surface of 0.400. (a) What is the kinetic energy of the object at the bottom of the inclined plane? (b) What is the speed of the object at the bottom of the inclined plane? (c) At what horizontal distance from the bottom of the inclined plane will this object stop? d FIGURE 8-61 30 8 m Hi
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To address the questions asked we need to apply principles from kinematics and energy conservation a What is the kinetic energy of the object at the b... View the full answer
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Thermodynamics An Interactive Approach
ISBN: 978-0130351173
1st edition
Authors: Subrata Bhattacharjee
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