A 4.0 kg mass, ml, hangs from a rope that runs over a massless frictionless pulley and is connected to a 6.0 kg mass, m2, resting on the surface at an incline of 0 = 350, as shown in Figure (1). The coefficient of static friction between the incline and m2 is 0.09, and the coefficient of kinetic friction is 0.07. Initially, the system is at rest. Calculate (a)the acceleration of the masses (b) the tension in the string. pulley m2 m

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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A 4.0 kg mass, ml, hangs from a rope that runs over a massless frictionless pulley
and is connected to a 6.0 kg mass, m2, resting on the surface at an incline of 0 = 350,
%3D
as shown in Figure (1). The coefficient of static friction between the incline and m2
is 0.09, and the coefficient of kinetic friction is 0.07. Initially, the system is at rest.
Calculate (a)the acceleration of the masses (b) the tension in the string.
pulley
m2
m
Fig. 1
Transcribed Image Text:Question A 4.0 kg mass, ml, hangs from a rope that runs over a massless frictionless pulley and is connected to a 6.0 kg mass, m2, resting on the surface at an incline of 0 = 350, %3D as shown in Figure (1). The coefficient of static friction between the incline and m2 is 0.09, and the coefficient of kinetic friction is 0.07. Initially, the system is at rest. Calculate (a)the acceleration of the masses (b) the tension in the string. pulley m2 m Fig. 1
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