Q2) A parachutist of mass 60 kg jumps out of a stationary hot air balloon. Use numerical method to plot the velocity-time relationship and compute the terminal velocity. The drag coefficient is equal to 12 kg/s. Employ a step size of 4 s for the calculation. Repeat the solution by using Analytical method for five steps only. Based on your results, discuss which method is more exact?

Engineering Fundamentals: An Introduction to Engineering (MindTap Course List)
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ISBN:9781305084766
Author:Saeed Moaveni
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Chapter8: Time And Time-related Variables In Engineering
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Q2) A parachutist of mass 60 kg jumps out of a stationary hot air balloon. Use numerical method to plot
the velocity-time relationship and compute the terminal velocity. The drag coefficient is equal to 12 kg/s.
Employ a step size of 4 s for the calculation. Repeat the solution by using Analytical method for five steps
only. Based on your results, discuss which method is more exact?
Transcribed Image Text:Q2) A parachutist of mass 60 kg jumps out of a stationary hot air balloon. Use numerical method to plot the velocity-time relationship and compute the terminal velocity. The drag coefficient is equal to 12 kg/s. Employ a step size of 4 s for the calculation. Repeat the solution by using Analytical method for five steps only. Based on your results, discuss which method is more exact?
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