The motorcycle has a kerb mass of 239 kg and test rider's mass was recorded as 76.35 kg. The wheels on the motorcycle each have a mass of 3.8 kg, with a rim diameter of 432 mm and tyre outside diameter of 635 mm, with a Radius of Gyration (k) of 0.25 m. Part B In the second test the motorcycle was recorded as traveling at 65km/h around a right-hand bend with a radius of 45 m. If wheels on the motorcycle each have a mass of 3.8 kg, with an outside diameter of 635 mm and a Radius of Gyration (k) of 0.255 m. Calculate each of the following: a) The angular velocity of each of the wheels. b) The moment of inertia of each wheel. c) The magnitude and effect of the gyroscopic torque produced on the motorcycle.

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The motorcycle has a kerb mass of 239 kg and test rider's mass was recorded as 76.35 kg. The wheels
on the motorcycle each have a mass of 3.8 kg, with a rim diameter of 432 mm and tyre outside diameter
of 635 mm, with a Radius of Gyration (k) of 0.25 m.
Part B
In the second test the motorcycle was recorded as traveling at 65km/h around a right-hand bend with a
radius of 45 m. If wheels on the motorcycle each have a mass of 3.8 kg, with an outside diameter of 635
mm and a Radius of Gyration (k) of 0.255 m.
Calculate each of the following:
a) The angular velocity of each of the wheels.
b) The moment of inertia of each wheel.
c) The magnitude and effect of the gyroscopic torque produced on the motorcycle.
Transcribed Image Text:The motorcycle has a kerb mass of 239 kg and test rider's mass was recorded as 76.35 kg. The wheels on the motorcycle each have a mass of 3.8 kg, with a rim diameter of 432 mm and tyre outside diameter of 635 mm, with a Radius of Gyration (k) of 0.25 m. Part B In the second test the motorcycle was recorded as traveling at 65km/h around a right-hand bend with a radius of 45 m. If wheels on the motorcycle each have a mass of 3.8 kg, with an outside diameter of 635 mm and a Radius of Gyration (k) of 0.255 m. Calculate each of the following: a) The angular velocity of each of the wheels. b) The moment of inertia of each wheel. c) The magnitude and effect of the gyroscopic torque produced on the motorcycle.
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