m rope which can withstand a maximum tension Fm. For Fm from 40 to 140 N use computation software to determine (a) the difference in elevation h between point A and point B where the ro will break, (b) the distance d from the vertical wall to the point where the bag will strike the flo -2.4m- A 3m

International Edition---engineering Mechanics: Statics, 4th Edition
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ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
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Chapter7: Dry Friction
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Problem 7.78P: The figure shows a steel bar being processed by a rolling mill. Given that P=80kN and r =0.016,...
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A 5-kg bag is gently pushed off the top of a wall and swings in a vertical plane at the end of a 2.4-
m rope which can withstand a maximum tension Fm. For Fm from 40 to 140 N use computational
software to determine (a) the difference in elevation h between point A and point B where the rope
will break, (b) the distance d from the vertical wall to the point where the bag will strike the floor.
-2.4m
A
3m
B'
Transcribed Image Text:A 5-kg bag is gently pushed off the top of a wall and swings in a vertical plane at the end of a 2.4- m rope which can withstand a maximum tension Fm. For Fm from 40 to 140 N use computational software to determine (a) the difference in elevation h between point A and point B where the rope will break, (b) the distance d from the vertical wall to the point where the bag will strike the floor. -2.4m A 3m B'
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