Considering all the forces acting on the ball, calculate its acceleration. Round the final answer to one decimal places. Considering all the forces acting on the basketball, calculate its acceleration if the ball is moving upward at 40 mph. Round the final answer to one decimal places.
Considering all the forces acting on the ball, calculate its acceleration. Round the final answer to one decimal places. Considering all the forces acting on the basketball, calculate its acceleration if the ball is moving upward at 40 mph. Round the final answer to one decimal places.
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A basketball of mass 0.62 kg is falling downward at 40 mph, without spinning. The radius of the basketball is 0.12 m and the air density is 1.2 kg/m3. Use a drag coefficient of 0.4.
Considering all the forces acting on the ball, calculate its acceleration. Round the final answer to one decimal places.
Considering all the forces acting on the basketball, calculate its acceleration if the ball is moving upward at 40 mph. Round the final answer to one decimal places.
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