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A5-kg bag is gently pushed off the top of a wall and swings in a vertical plane at the end of a 2.4m rope which
A5-kg bag is gently pushed off the top of a wall and swings in a vertical plane at the end of a 2.4m rope which can withstand a maximum tension Fm. for different type of rope Fm changes from 40 to 140 N develop a MATLAB code to determine: (a) the difference in elevation h between point A and point B where the rope will break if Fn-40N, (b) plot normal acceleration versus (00-9s 90) for Fm-140N, (c) plot tangential acceleration versus (0-6590) for Fm-140N, (d) plot the velocity of the bag versus (0-9s 90) for Fm-40N, 60N, 80N, 100N on one graph. 2.4m 3 m A5-kg bag is gently pushed off the top of a wall and swings in a vertical plane at the end of a 2.4m rope which can withstand a maximum tension Fm. for different type of rope Fm changes from 40 to 140 N develop a MATLAB code to determine: (a) the difference in elevation h between point A and point B where the rope will break if Fn-40N, (b) plot normal acceleration versus (00-9s 90) for Fm-140N, (c) plot tangential acceleration versus (0-6590) for Fm-140N, (d) plot the velocity of the bag versus (0-9s 90) for Fm-40N, 60N, 80N, 100N on one graph. 2.4m 3 m
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