Consider the 13.0 kg motorcycle wheel shown in Figure 9.29. Assume it to be approximately an annular ring with an inner radius of R,- 0.280 m and an outer radius of R2 = 0.300 m. The motorcycle is on its center stand, so that the wheel can spin freely. Figure 9,29. (a) If the drive chain exerts a force of 1800 N at a radius of 5.00 cm, what is the angular acceleration of the wheel? x rad/s (b) What is the tangential acceleration of a point on the outer edge of the tire? wW m/s (c) How long, starting from rest, does it take to reach an angular velocity of 80.0 rad/s?

University Physics Volume 1
18th Edition
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Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter11: Angular Momentum
Section: Chapter Questions
Problem 89AP: A solid cylinder of mass 2.0 kg and radius 20 cm is rotating counterclockwise around a vertical axis...
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Consider the 13.0 kg motorcycle wheel shown in Figure 9.29. Assume it to be approximately an annular ring with an inner radius of R, = 0.280 m and an outer radius of R, = 0.300 m. The motorcycle is on its center stand, so that the wheel can spin freely.
!!
Figure 9.29.
(a) If the drive chain exerts a force of 1800 N at a radius of 5.00 cm, what is the angular acceleration of the wheel?
X rad/s?
(b) What is the tangential acceleration of a point on the outer edge of the tire?
m/s2
(c) How long, starting from rest, does it take to reach an angular velocity of 80.0 rad/s?
Additional Materials
Transcribed Image Text:Consider the 13.0 kg motorcycle wheel shown in Figure 9.29. Assume it to be approximately an annular ring with an inner radius of R, = 0.280 m and an outer radius of R, = 0.300 m. The motorcycle is on its center stand, so that the wheel can spin freely. !! Figure 9.29. (a) If the drive chain exerts a force of 1800 N at a radius of 5.00 cm, what is the angular acceleration of the wheel? X rad/s? (b) What is the tangential acceleration of a point on the outer edge of the tire? m/s2 (c) How long, starting from rest, does it take to reach an angular velocity of 80.0 rad/s? Additional Materials
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