A force F = 55N acts upon a block of mass M1 = 30kg, that pushes a second block of mass M2 = 20 kg, that pushes a third block of mass M3 = 5kg. The whole system moves along a straight line in absence of gravity or friction. assume that the force F is applied for a period of time T and it drops to zero thereafter. What type of motion do the three masses undergo fort > T? Do the three masses get detached fort > T?
A force F = 55N acts upon a block of mass M1 = 30kg, that pushes a second block of mass M2 = 20 kg, that pushes a third block of mass M3 = 5kg. The whole system moves along a straight line in absence of gravity or friction. assume that the force F is applied for a period of time T and it drops to zero thereafter. What type of motion do the three masses undergo fort > T? Do the three masses get detached fort > T?
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![A force F = 55N acts upon a block of mass M1 = 30kg, that pushes a second block of mass M2= 20 kg, that pushes a
third block of mass M3 = 5kg. The whole system moves along a straight line in absence of gravity or friction. assume
that the force F is applied for a period of time T and it drops to zero thereafter. What type of motion do the three masses
undergo fort > T? Do the three masses get detached fort > T?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F460b6c1b-66ff-4d5c-9365-528a1c12747d%2F1c261e48-ee4e-4276-b4fb-b849e394ad84%2F8nl682v_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A force F = 55N acts upon a block of mass M1 = 30kg, that pushes a second block of mass M2= 20 kg, that pushes a
third block of mass M3 = 5kg. The whole system moves along a straight line in absence of gravity or friction. assume
that the force F is applied for a period of time T and it drops to zero thereafter. What type of motion do the three masses
undergo fort > T? Do the three masses get detached fort > T?
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