motion m2

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter5: Newton's Law Of Motion
Section: Chapter Questions
Problem 65P: Consider the baby being weighed in the following figure. (a) What is the mass of the infant and...
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Objects 1 and 2 are shown below. Object 1 has mass 20 kg, object 2 has mass 9 kg, and the kinetic
coefficient of friction for object 1 on the table is 0.3. If object 1 is pushed so that it is moving away from
the pulley, then find the magnitude of the acceleration of each mass and the tension in the string.
motion
m2
8.
acceleration magnitude
D. 5.304 m/s?
E. 5.069 m/s
F. 4.355.m/s
A 4.101 m/s?
В.
4.813_m/s
C.
4.532.m/s?
|--/
9.
tension
А
38.93_N
D.
44.01 N
В.
46.13.N
E.
41.2_N
C.
42.58 N
F.
48.44 N
/--/
Transcribed Image Text:Objects 1 and 2 are shown below. Object 1 has mass 20 kg, object 2 has mass 9 kg, and the kinetic coefficient of friction for object 1 on the table is 0.3. If object 1 is pushed so that it is moving away from the pulley, then find the magnitude of the acceleration of each mass and the tension in the string. motion m2 8. acceleration magnitude D. 5.304 m/s? E. 5.069 m/s F. 4.355.m/s A 4.101 m/s? В. 4.813_m/s C. 4.532.m/s? |--/ 9. tension А 38.93_N D. 44.01 N В. 46.13.N E. 41.2_N C. 42.58 N F. 48.44 N /--/
Expert Solution
Step 1

Given 

mass of object 1 m1 = 20 kg

mass of object 2 m2 = 9 kg

kinetic coefficient of friction μ = 0.3

Force of friction is defined as 

F = μN

where N = normal force to the surface.

N =mg

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