An object of mass m1 = 0.105 kg undergoes uniform circular motion. It is connected by a massless string through a hole in a frictionless table to a larger object of mass R m, m2 = 0.225 kg, as shown in the figure. Assuming the larger object is stationary, calculate the tension T in the string and the linear speed v of the circular motion of the smaller m2 object on the table. Assume that the radius R of the circular path of the smaller object is equal to 1.00 m. T = 1.421 Incorrect U = m/s

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter5: More Applications Of Newton’s Laws
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An object of mass m1 =
0.105 kg undergoes uniform
circular motion. It is connected by a massless string through
a hole in a frictionless table to a larger object of mass
R
m,
m2 = 0.225 kg, as shown in the figure. Assuming the larger
object is stationary, calculate the tension T in the string and
the linear speed v of the circular motion of the smaller
т,
object on the table. Assume that the radius R of the circular
path of the smaller object is equal to 1.00 m.
T =
1.421
N
Incorrect
U =
m/s
Incorrect
Transcribed Image Text:An object of mass m1 = 0.105 kg undergoes uniform circular motion. It is connected by a massless string through a hole in a frictionless table to a larger object of mass R m, m2 = 0.225 kg, as shown in the figure. Assuming the larger object is stationary, calculate the tension T in the string and the linear speed v of the circular motion of the smaller т, object on the table. Assume that the radius R of the circular path of the smaller object is equal to 1.00 m. T = 1.421 N Incorrect U = m/s Incorrect
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