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c B . . . . . . . . . . . Use MFE kg and M2: E kg and assume there is a
c B . . . . . . . . . . . Use MFE kg and M2: E kg and assume there is a frictlon 1n Incline and the kinetlc frictlon coefficient is- but there is no friction between M3 and vertical plane. Very light weighted wires with tw, pull on MI blocks parallel to the surface of the ramp up and the M2 block move downward wi acceleration \"a\" when the system is released gently from rest. .\\ Rx Draw a Free Body Diagram for each object on above diagram (you should draw the diagram on your paper) and label forces as Fe, Fr , FT, FM to show force of gravity, force of friction, force of tension and force of normal respectively. You should use notation Fc1 and Fm for M. and Fez and PM for M2. Draw X and Y coordinates on the above diagram for both objects. (10 points) For each object write 2F 2 m by using above drawn X and Y directions. {You should use above symbols and notations, plugging numbers will receive zero credits here). (10 Points) Calculate the force of gravity for M. and write it as For (5 points) Calculate the force of gravity for M2 and write it as F522 (5 points) Calculate the force of normal for M. and write it as FN1(10 points) Calculate the force of friction for M. and write it as Frat} points} Calculate the acceleration \"a\" of blocks? Is your M2 accelerate up or down? (10 points} Calculate the tension force FT of the wires connecting two blocks? (10 points) After system moves with calculated acceleration for some time, objects stuck on the pully and wire is break down. Then M2 moves \"y\" distance from the rest, write initial total energy of M2 by choosing potential energy zero at the resting point? (10 points) Write nal total energy of M2 after \"y\" distance moved which has nal velocity \"v \"(10 points) Now use energy conservation to calculate \"v " if y: C cm? (10 points)
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