(IV.) A very light spring has a length of 40.0 cm when it is relaxed and is laying on a horzontal smooth surface. A force of 50.0 Newton is used to pull it, it becomes 60.0 cm long. A block of mass 0.600 kg is then attached to the spring and stretched to a total length of 50.0cm long and then let go to vibrate. Determine: a) the vibration frequency of the spring-mass system; b) the amplitude of the horizontal oscillation A; c)the maximum speed of the block; d) the displacement x as a function of time (SHM function). e) the maximum kinetic energy in the system.
(IV.) A very light spring has a length of 40.0 cm when it is relaxed and is laying on a horzontal smooth surface. A force of 50.0 Newton is used to pull it, it becomes 60.0 cm long. A block of mass 0.600 kg is then attached to the spring and stretched to a total length of 50.0cm long and then let go to vibrate. Determine: a) the vibration frequency of the spring-mass system; b) the amplitude of the horizontal oscillation A; c)the maximum speed of the block; d) the displacement x as a function of time (SHM function). e) the maximum kinetic energy in the system.
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(IV.) A very light spring has a length of 40.0 cm when it is relaxed and is laying on a horzontal smooth surface. A force of 50.0 Newton is used to pull it, it becomes 60.0 cm long. A block of mass 0.600 kg is then attached to the spring and stretched to a total length of 50.0cm long and then let go to vibrate. Determine: a) the vibration frequency of the spring-mass system; b) the amplitude of the horizontal oscillation A; c)the maximum speed of the block; d) the displacement x as a function of time (
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