Consider a motorcycle with a mass of 300.0 kg (including the rider) traveling at a constant speed 20.0 m/s. The force of air resistance depends on the speed of the object. Suppose that at 20.0 m/s, the air provides a constant force of 325 N, opposing the motion of the motorcycle. (a)Find the power needed from the motor to travel on level ground at 20.0 m/s, in units of Watts. (b)Find the power needed from the motor to go up a hill inclined at 5.00 ̊ withthis same constant speed of 20.0 m/s.
Consider a motorcycle with a mass of 300.0 kg (including the rider) traveling at a constant speed 20.0 m/s. The force of air resistance depends on the speed of the object. Suppose that at 20.0 m/s, the air provides a constant force of 325 N, opposing the motion of the motorcycle. (a)Find the power needed from the motor to travel on level ground at 20.0 m/s, in units of Watts. (b)Find the power needed from the motor to go up a hill inclined at 5.00 ̊ withthis same constant speed of 20.0 m/s.
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Consider a motorcycle with a mass of 300.0 kg (including the rider) traveling at a constant speed 20.0 m/s. The force of air resistance depends on the speed of the object. Suppose that at 20.0 m/s, the air provides a constant force of 325 N, opposing the motion of the motorcycle.
(a)Find the power needed from the motor to travel on level ground at 20.0 m/s, in units of Watts.
(b)Find the power needed from the motor to go up a hill inclined at 5.00 ̊ withthis same constant speed of 20.0 m/s.
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