with radius r = 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 string. (I =-Mr²,g=9.8 m/s² sin60=0.86 cos60=0.5) 0.2 m and mass M = 10 kg. There aren't friction forces in inclined planes. The М, 1 a a mi 60° 60° m,

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4) Two blocks of mass m,= 2 kg and m,= 8 kg are connected by a massless string over a pulley
with radiusr = 0.2 m and mass M
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.
10 kg. There aren't friction forces in inclined planes. The
(d) Find the tensions in the string. (I =Mr², g=9.8 m/s² sin60=0.86 cos60=0.5)
М, I
a
60°
60°
m2
Transcribed Image Text:4) Two blocks of mass m,= 2 kg and m,= 8 kg are connected by a massless string over a pulley with radiusr = 0.2 m and mass M 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. 10 kg. There aren't friction forces in inclined planes. The (d) Find the tensions in the string. (I =Mr², g=9.8 m/s² sin60=0.86 cos60=0.5) М, I a 60° 60° m2
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