Block A of mass M = 2kg is connected to another block B of mass m=1kg with a string and a spring of force constant k = 600N / m as shown in figure. Initially, spring is compressed to 10cm and whole system is moving on a smooth surface with a velocity v=lm/s. At any time, thread is burnt, the magnitude of velocity of block A, When B is having maximum velocity w.r.t, ground, is

College Physics
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Block A of mass M = 2kg is connected to another block B of mass m=1kg with a string
and a spring of force constant k = 600N / m as shown in figure. Initially, spring is compressed
to 10cm and whole system is moving on a smooth surface with a velocity v=lm/s. At any
time, thread is burnt, the magnitude of velocity of block A, When B is having maximum
velocity w.r.t, ground, is
Transcribed Image Text:Block A of mass M = 2kg is connected to another block B of mass m=1kg with a string and a spring of force constant k = 600N / m as shown in figure. Initially, spring is compressed to 10cm and whole system is moving on a smooth surface with a velocity v=lm/s. At any time, thread is burnt, the magnitude of velocity of block A, When B is having maximum velocity w.r.t, ground, is
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