A spool of thread consists of a cylinder of radius R, = 6.5 cm with end caps of radius R2 = 11.0 cm as depicted in the end view shown in the figure below. The mass of the spool, including the thread, is m = 250 g. The spool is placed on a rough, horizontal surface so that it rolls without slipping when a force T = 0.430 N acting to the right is applied to the free end of the thread. For the moment of inertia treat the spool as being a solid cylinder of radius R1, as the extended edges are thin and therefore light. \R2 R (a) What is the acceleration of the spool? Take positive to be to the right. m/s2 (b) Determine the direction of the force of friction. O to the left O to the right O straight up O straight down

Physics for Scientists and Engineers with Modern Physics
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Chapter10: Rotation Of A Rigid Object About A Fixed Axis
Section: Chapter Questions
Problem 47CP: A uniform, hollow, cylindrical spool has inside radius R/2, outside radius R, and mass M (Fig....
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A spool of thread consists of a cylinder of radius R1 = 6.5 cm with end caps of radius R2 = 11.0 cm as depicted in the end view shown in the figure below. The mass of the spool, including the thread, is m = 250
g. The spool is placed on a rough, horizontal surface so that it rolls without slipping when a force T = 0.430 N acting to the right is applied to the free end of the thread. For the moment of inertia treat the spool
as being a solid cylinder of radius R1, as the extended edges are thin and therefore light.
\R2
R
(a) What is the acceleration of the spool? Take positive to be to the right.
m/s2
(b) Determine the direction of the force of friction.
O to the left
to the right
straight up
O straight down
Transcribed Image Text:A spool of thread consists of a cylinder of radius R1 = 6.5 cm with end caps of radius R2 = 11.0 cm as depicted in the end view shown in the figure below. The mass of the spool, including the thread, is m = 250 g. The spool is placed on a rough, horizontal surface so that it rolls without slipping when a force T = 0.430 N acting to the right is applied to the free end of the thread. For the moment of inertia treat the spool as being a solid cylinder of radius R1, as the extended edges are thin and therefore light. \R2 R (a) What is the acceleration of the spool? Take positive to be to the right. m/s2 (b) Determine the direction of the force of friction. O to the left to the right straight up O straight down
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