m,- 5 kg and m, = 25 kg are connected by cords over pulleys that have radius r= 0.1 m, and the moment of inertia -0.25 kg.m². There isn't friction force on surface. The directions of acceleration a and angular acceleration a are given in Figure. (a) Draw free-body diagram. (b) Find the linear acceleration. (c) Find the angular acceleration. (d) Find the tensions in the cords. (g=9.8 m/s' sin37-0.6 cos37-0.8) m, 37° 37°

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Chapter1: Units, Trigonometry. And Vectors
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m;= 5 kg and m, = 25 kg are connected by cords over pulleys that have radius r= 0.1 m, and
the moment of inertia I-0.25 kg.m². There isn't friction force on surface. The directions of
acceleration a and angular acceleration a are given in Figure.
(a) Draw free-body diagram.
(b) Find the linear acceleration.
(c) Find the angular acceleration.
(d) Find the tensions in the cords. (g=9,8 m/s² sin37=0.6 cos37=0.8)
m
m,
37°
37°
Transcribed Image Text:m;= 5 kg and m, = 25 kg are connected by cords over pulleys that have radius r= 0.1 m, and the moment of inertia I-0.25 kg.m². There isn't friction force on surface. The directions of acceleration a and angular acceleration a are given in Figure. (a) Draw free-body diagram. (b) Find the linear acceleration. (c) Find the angular acceleration. (d) Find the tensions in the cords. (g=9,8 m/s² sin37=0.6 cos37=0.8) m m, 37° 37°
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