Assume it to be approximately an annular ring with an inner radius of R, = 0.280 m and an outer radius of R2 = 0.400 m. The motorcycle is on its center stand, so that the wheel can spin freely. (a) If the drive chain exerts a force of 2060 N at a radius of 5.00 cm, what is the angular acceleration (in rad/s?) of the wheel? rad/s2 (b) What is the tangential acceleration (in m/s?) of a point on the outer edge of the tire? m/s? (c) How long (in s), starting from rest, does it take to reach an angular velocity of 80.0 rad/s?

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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Consider the 11.0 kg motorcycle wheel shown in the figure.
Assume it to be approximately an annular ring with an inner radius of R, = 0.280 m and an outer radius of R2 = 0.400 m. The
motorcycle is on its center stand, so that the wheel can spin freely.
(a) If the drive chain exerts a force of 2060 N at a radius of 5.00 cm, what is the angular acceleration (in rad/s?) of the wheel?
rad/s2
(b) What is the tangential acceleration (in m/s?) of a point on the outer edge of the tire?
m/s?
(c) How long (in s), starting from rest, does it take to reach an angular velocity of 80.0 rad/s?
Transcribed Image Text:Consider the 11.0 kg motorcycle wheel shown in the figure. Assume it to be approximately an annular ring with an inner radius of R, = 0.280 m and an outer radius of R2 = 0.400 m. The motorcycle is on its center stand, so that the wheel can spin freely. (a) If the drive chain exerts a force of 2060 N at a radius of 5.00 cm, what is the angular acceleration (in rad/s?) of the wheel? rad/s2 (b) What is the tangential acceleration (in m/s?) of a point on the outer edge of the tire? m/s? (c) How long (in s), starting from rest, does it take to reach an angular velocity of 80.0 rad/s?
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