7) Where is the block located, relative to equilibrium, at a time 0.99 s after it is released? (if the block is left of equilibrium give the answer as a negative value; if the block is right of equilibrium give the answer as a positive value) Submit 8) What is the net force on the block at this time 0.99 s? (a negative force is to the left; a positive force is to the right) N Submit 9) What is the total energy stored in the system? J Submit

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A block with mass m = 5 kg is attached to two springs with spring constants kleft = 31 N/m and kright = 56 N/m. The block is
pulled a distance x = 0.23 m to the left of its equilibrium position and released from rest.
Transcribed Image Text:wwww wwww A block with mass m = 5 kg is attached to two springs with spring constants kleft = 31 N/m and kright = 56 N/m. The block is pulled a distance x = 0.23 m to the left of its equilibrium position and released from rest.
7) Where is the block located, relative to equilibrium, at a time 0.99 s after it is released? (if the block is left of equilibrium
give the answer as a negative value; if the block is right of equilibrium give the answer as a positive value)
Submit
8) What is the net force on the block at this time 0.99 s? (a negative force is to the left; a positive force is to the right)
N Submit
9) What is the total energy stored in the system?
J Submit
Transcribed Image Text:7) Where is the block located, relative to equilibrium, at a time 0.99 s after it is released? (if the block is left of equilibrium give the answer as a negative value; if the block is right of equilibrium give the answer as a positive value) Submit 8) What is the net force on the block at this time 0.99 s? (a negative force is to the left; a positive force is to the right) N Submit 9) What is the total energy stored in the system? J Submit
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