The system is released from rest with no slack in the cable and with the spring unstretched. Determine the distances traveled by the 4.5-kg cart before it comes to rest (a) if m approaches zero and (b) if m= 2.8 kg. Assume no mechanical interference and no friction. The distances is positive if up the incline, negative if down. k = 160 N/m 4.5 kg m Answers: (a) m = 0, (b) m = 2.8 kg. 28° S= i S= i m
The system is released from rest with no slack in the cable and with the spring unstretched. Determine the distances traveled by the 4.5-kg cart before it comes to rest (a) if m approaches zero and (b) if m= 2.8 kg. Assume no mechanical interference and no friction. The distances is positive if up the incline, negative if down. k = 160 N/m 4.5 kg m Answers: (a) m = 0, (b) m = 2.8 kg. 28° S= i S= i m
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4.5-kg cart before it comes to rest (a) if m approaches zero and (b) if m= 2.8 kg. Assume no mechanical interference and no friction. The
distances is positive if up the incline, negative if down.
k = 160 N/m
4.5 kg
m
Answers:
(a) m = 0,
S= i
(b) m = 2.8 kg, S= i
28°
m
m"
Transcribed Image Text:The system is released from rest with no slack in the cable and with the spring unstretched. Determine the distances traveled by the
4.5-kg cart before it comes to rest (a) if m approaches zero and (b) if m= 2.8 kg. Assume no mechanical interference and no friction. The
distances is positive if up the incline, negative if down.
k = 160 N/m
4.5 kg
m
Answers:
(a) m = 0,
S= i
(b) m = 2.8 kg, S= i
28°
m
m
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