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Do this in Matlab please! Recall that the velocity of the free-falling bungee jumper can be computed analytically as [Eq. (1.9)]: tanh mm where y(t)
Do this in Matlab please!
Recall that the velocity of the free-falling bungee jumper can be computed analytically as [Eq. (1.9)]: tanh mm where y(t) = velocity (m/s), t= time (s), 9 = 9.81 m/s2, m= mass (kg), Ca = drag coefficient (kg/m). (a) Use integral to compute how far the jumper travels during the first 8 seconds of free fall given m = 80 kg and ca = 0.2 kg/m. Hint: The answer is the integral over V(t) on the interval of [0,8]Step by Step Solution
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