Problem 3 A L75 kg puck is moving in a circular path on a frictionless, lat surface. The puck is tied to a string, which is attached to a post. The length of the connecting string segment is 7S.0 cm and the puck rotates with at a rate of 32.5 revolutions per minute (pm). The diagram on the right shows a top-down view of the table. 75.0 cm (a) Find the speed of the puck, in units of meters per second (m/s). b) Find the tension in the string, in units of Newtons (N). (c) Describe how the puck would move if the string broke at the moment shown above.

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter10: Fixed-axis Rotation
Section: Chapter Questions
Problem 10.2CYU: Check Your Understanding A centrifuge used in DNA extraction spins at a maximum rate of 7000 rpm,...
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Problem 3
A L75 kg puck is moving in a circular path on a
frictionless, ņat surface. The puck is tied to a string, which
is attached to a post. The length of the connecting string
segment is 75.0 cm and the puck rotates with at a rate of
32.5 revolutions per minute (rpm). The diagram on the right
shows a top-down view of the table.
75.0
cm
(a) Find the speed of the puck, in units of meters
per second (m/s).
6) Find the tension in the string, in units of Newtons (N).
(c) Describe how the puck would move if the string broke at the moment shown above.
Transcribed Image Text:Problem 3 A L75 kg puck is moving in a circular path on a frictionless, ņat surface. The puck is tied to a string, which is attached to a post. The length of the connecting string segment is 75.0 cm and the puck rotates with at a rate of 32.5 revolutions per minute (rpm). The diagram on the right shows a top-down view of the table. 75.0 cm (a) Find the speed of the puck, in units of meters per second (m/s). 6) Find the tension in the string, in units of Newtons (N). (c) Describe how the puck would move if the string broke at the moment shown above.
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