Show all your procedures when giving the answers to the questions 1. (33 points) In the figure below, block-2 of mass M= 1 Kg is at rest on a frictionless surface and touching the end of an un-stretched spring whose spring constant is 200 N/m. The other end of the spring is fixed to a wall. Block-1 of mass 2 Kg, travelling at speed v₁ = 4 m/s, collides with block-2 and the two blocks stick together. When the blocks momentarily stop, by what distance is the spring compressed? V1 200000
Show all your procedures when giving the answers to the questions 1. (33 points) In the figure below, block-2 of mass M= 1 Kg is at rest on a frictionless surface and touching the end of an un-stretched spring whose spring constant is 200 N/m. The other end of the spring is fixed to a wall. Block-1 of mass 2 Kg, travelling at speed v₁ = 4 m/s, collides with block-2 and the two blocks stick together. When the blocks momentarily stop, by what distance is the spring compressed? V1 200000
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1. (33 points) In the figure below, block-2 of mass M= 1 Kg is at rest on a frictionless surface and
touching the end of an un-stretched spring whose spring constant is 200 N/m. The other end
of the spring is fixed to a wall. Block-1 of mass 2 Kg, travelling at speed v₁ = 4 m/s, collides
with block-2 and the two blocks stick together. When the blocks momentarily stop, by what
distance is the spring compressed?
V1
200000"
Transcribed Image Text:Show all your procedures when giving the answers to the questions
1. (33 points) In the figure below, block-2 of mass M= 1 Kg is at rest on a frictionless surface and
touching the end of an un-stretched spring whose spring constant is 200 N/m. The other end
of the spring is fixed to a wall. Block-1 of mass 2 Kg, travelling at speed v₁ = 4 m/s, collides
with block-2 and the two blocks stick together. When the blocks momentarily stop, by what
distance is the spring compressed?
V1
200000
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