1.00-kg aluminum block and am, 6.15-kg copper block are connected by a lght string over a frictionless pulley The two blocks are allowed to move on a fixed steel block wedge (of angle 34.5) as shown in the figure. (For aluminum on steel, ,0.61 and 0.47. For copper on steel, 0.53 and 0.36.)

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Chapter5: Further Applications Of Newton's Laws: Friction, Drag, And Elasticity
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Problem 9PE: Show that the acceleration of any object down an incline where friction behaves simply (that is,...
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Am,1.00-kg aluminum block and a m,-6.15-kg copper block are connected by a light string over a frictionless pulley. The two blocks are allowed to
move on a foxed steel block wedge (of angle e-34.5) as shown in the figure. (For aluminum on steel, w,-0.61 and H-0.47. For copper on steel,
H-0.53 and H- 0.36.)
Aluminum
Соpper
Steel
(a) the acceleration of the two blocks
m/s
(b) the tension in the string
Transcribed Image Text:Am,1.00-kg aluminum block and a m,-6.15-kg copper block are connected by a light string over a frictionless pulley. The two blocks are allowed to move on a foxed steel block wedge (of angle e-34.5) as shown in the figure. (For aluminum on steel, w,-0.61 and H-0.47. For copper on steel, H-0.53 and H- 0.36.) Aluminum Соpper Steel (a) the acceleration of the two blocks m/s (b) the tension in the string
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