An air puck with a mass of 0.26 kg is tied to a string and moves at a constant speed in a circle of radius 1.2 m. The other end of the string goes through a hole in the air table and straight down to a suspended mass of 0.68 kg, which hangs at rest. Calculate the speed of the air puck. (Hint :- F. = mv /r and F centripetal force on m¡ ; Fc = Fg m¡V/r = m2g) mg; the gravitational force on m2 and m, = 0.26 kg m, = 0.68 kg
An air puck with a mass of 0.26 kg is tied to a string and moves at a constant speed in a circle of radius 1.2 m. The other end of the string goes through a hole in the air table and straight down to a suspended mass of 0.68 kg, which hangs at rest. Calculate the speed of the air puck. (Hint :- F. = mv /r and F centripetal force on m¡ ; Fc = Fg m¡V/r = m2g) mg; the gravitational force on m2 and m, = 0.26 kg m, = 0.68 kg
College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Question on Physics - Unit Circular Motion
![An air puck with a mass of 0.26 kg is tied to a string and moves at a constant speed in a
circle of radius 1.2 m. The other end of the string goes through a hole in the air table and
straight down to a suspended mass of 0.68 kg, which hangs at rest. Calculate the speed of
the air puck. (Hint :- Fe = mv /r and Fg
centripetal force on m ;
mg; the gravitational force on m2 and
C
Fc = Fg, m¡V/r = mg )
m, = 0.26 kg
%3D
m, = 0.68 kg](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7fd4ae34-3932-4185-af5f-1832bb8c6a40%2F9172982f-6f57-40c8-9118-ffd2128c0127%2F4k5jpz_processed.jpeg&w=3840&q=75)
Transcribed Image Text:An air puck with a mass of 0.26 kg is tied to a string and moves at a constant speed in a
circle of radius 1.2 m. The other end of the string goes through a hole in the air table and
straight down to a suspended mass of 0.68 kg, which hangs at rest. Calculate the speed of
the air puck. (Hint :- Fe = mv /r and Fg
centripetal force on m ;
mg; the gravitational force on m2 and
C
Fc = Fg, m¡V/r = mg )
m, = 0.26 kg
%3D
m, = 0.68 kg
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