Energy conservation with conservative forces: In the figure, a stunt car driver negotiates the frictionless track shown in such a way that the car is barely in contact with the track at the top of the loop. The radius of the track is 9.9 m and the mass of the car is 1800 kg. Find the magnitude of the force of the car on the track when the car is at point A. You can treat the car as a point mass. 
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Q81: Energy conservation with conservative forces: In the
Q82: Energy conservation with nonconservative forces: A 50.0-kg
Q83: Energy conservation with conservative forces: A 60.0-kg
Q84: Energy conservation with nonconservative forces: In the
Q85: Energy conservation with conservative forces: An object
Q87: Energy conservation with nonconservative forces: A 1.86-kg
Q88: Energy conservation with nonconservative forces: An object
Q89: Energy conservation with nonconservative forces: A 1.37-kg
Q90: Energy conservation with conservative forces: A very
Q91: Energy conservation with conservative forces: Consider the
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