The 0.2 kg pellet is pushed against the spring at A and released from rest. Neglecting friction, determine the smallest deflection D 0,6 m C E k = 500 N/m of the spring for which the pellet will travel around the loop ABCDE and remain at all times in contact with the loop. w = 0.2 kg B
The 0.2 kg pellet is pushed against the spring at A and released from rest. Neglecting friction, determine the smallest deflection D 0,6 m C E k = 500 N/m of the spring for which the pellet will travel around the loop ABCDE and remain at all times in contact with the loop. w = 0.2 kg B
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![The 0.2 kg pellet is pushed against
the spring at A and released from
rest. Neglecting friction,
determine the smallest deflection
0.6 m
k = 500 N/m
of the spring for which the pellet
will travel around the loop ABCDE
and remain at all times in contact
W = 0.2 kg/
A
with the loop.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F47bf6c6a-f891-432b-813b-c59583435791%2Fbb5685c2-7cc8-4ebb-be11-5ddf2f8eba83%2Fef5ob1n_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The 0.2 kg pellet is pushed against
the spring at A and released from
rest. Neglecting friction,
determine the smallest deflection
0.6 m
k = 500 N/m
of the spring for which the pellet
will travel around the loop ABCDE
and remain at all times in contact
W = 0.2 kg/
A
with the loop.
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