A box of mass m1 = 9.4 kg on a rough inclined plane of angle a = 58° is connected with a string of negligible mass over a pulley m 2"pulley R to a bucket of mass m, = 1 kg. The coefficient of kinetic friction in shape of a disk with a moment of inertia /= between the block and the surface of the incline is u = 0.19. The mass m, is sliding downward as shown in the figure with a m magnitude of the acceleration of a =0.7 m, m2

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A box of mass m,=9.4 kg on a rough inclined plane of angle a= 58° is connected with a string of negligible mass over a pulley
1
z" pulley
R to a bucket of mass m,=1 kg. The coefficient of kinetic friction
in shape of a disk with a moment of inertia/=
between the block and the surface of the incline is u, = 0.19. The mass m, is sliding downward as shown in the figure with a
m
magnitude of the acceleration of a =0.7
m,
m2
1. Calculate the tension in the string T, =
N
2. Calculate the tension in the string T2 =
3. Calculate the mass of the pulley m pulley
kg
Check
Finish at
Transcribed Image Text:A box of mass m,=9.4 kg on a rough inclined plane of angle a= 58° is connected with a string of negligible mass over a pulley 1 z" pulley R to a bucket of mass m,=1 kg. The coefficient of kinetic friction in shape of a disk with a moment of inertia/= between the block and the surface of the incline is u, = 0.19. The mass m, is sliding downward as shown in the figure with a m magnitude of the acceleration of a =0.7 m, m2 1. Calculate the tension in the string T, = N 2. Calculate the tension in the string T2 = 3. Calculate the mass of the pulley m pulley kg Check Finish at
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