Position 1 A collar of mass 10 kg moves in a vertical guide as shown. Neglecting friction between guide and the 400 mm collar, find its velocity when it passes through position (2), after starting from rest in position (1). The spring constant is 200 N/m and the free length 300 mm www. of the spring is 200mm. Position 2 300 mm-
Position 1 A collar of mass 10 kg moves in a vertical guide as shown. Neglecting friction between guide and the 400 mm collar, find its velocity when it passes through position (2), after starting from rest in position (1). The spring constant is 200 N/m and the free length 300 mm www. of the spring is 200mm. Position 2 300 mm-
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Position 1
T
shown. Neglecting friction between guide and the
collar, find its velocity when it passes through
400 mm
position (2), after starting from rest in position (1).
The spring constant is 200 N/m and the free length
300 mm
of the spring is 200mm.
Position 2
-300 mm"
Transcribed Image Text:A collar of mass 10 kg moves in a vertical guide as
Position 1
T
shown. Neglecting friction between guide and the
collar, find its velocity when it passes through
400 mm
position (2), after starting from rest in position (1).
The spring constant is 200 N/m and the free length
300 mm
of the spring is 200mm.
Position 2
-300 mm

Transcribed Image Text:The block-and-tackle system is released from rest
with all cables taut. Neglect the mass and friction of
all pulleys and determine the acceleration of each
cylinder and the tensions T1 and T2 in the two cables.
Cable 1
4 kg
B
Cable 2
6 kg
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