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Each of the block shown in figure has mass 1 kg. The near block moves with a speed of 2 m/s towards the front block kept at rest. The spring attached to the front block is light and has a spring constant 50 N/m. Find the maximum compression of the spring. (in cm) :
    Correct answer is '20'. Can you explain this answer?
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    Each of the block shown in figure has mass 1kg. The near block moves w...
    Maximum compression will take place when the blocks move with equal velocity. As no net external horizontal force acts on the system of the two blocks, the total linear momentum will remain constant. If v is the common speed at maximum compression, we have,
    (1 kg) (2m/s) = (1kg)v + (1kg)v
    or v = 1m/s
    Initial kinetic energy 
    Final kinetic energy =

    or x = 0.2m
    The correct answer is: 20
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    Each of the block shown in figure has mass 1kg. The near block moves w...
    Maximum compression will take place when the blocks move with equal velocity. As no net external horizontal force acts on the system of the two blocks, the total linear momentum will remain constant. If v is the common speed at maximum compression, we have,
    (1 kg) (2m/s) = (1kg)v + (1kg)v
    or v = 1m/s
    Initial kinetic energy 
    Final kinetic energy =

    or x = 0.2m
    The correct answer is: 20
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    Each of the block shown in figure has mass 1kg. The near block moves with a speed of 2m/stowards the front block kept at rest. The spring attached to the front block is light and has a spring constant 50N/m. Find the maximum compression of the spring. (incm) :Correct answer is '20'. Can you explain this answer?
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    Each of the block shown in figure has mass 1kg. The near block moves with a speed of 2m/stowards the front block kept at rest. The spring attached to the front block is light and has a spring constant 50N/m. Find the maximum compression of the spring. (incm) :Correct answer is '20'. Can you explain this answer? for Physics 2024 is part of Physics preparation. The Question and answers have been prepared according to the Physics exam syllabus. Information about Each of the block shown in figure has mass 1kg. The near block moves with a speed of 2m/stowards the front block kept at rest. The spring attached to the front block is light and has a spring constant 50N/m. Find the maximum compression of the spring. (incm) :Correct answer is '20'. Can you explain this answer? covers all topics & solutions for Physics 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Each of the block shown in figure has mass 1kg. The near block moves with a speed of 2m/stowards the front block kept at rest. The spring attached to the front block is light and has a spring constant 50N/m. Find the maximum compression of the spring. (incm) :Correct answer is '20'. Can you explain this answer?.
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