The distance a freely falling object travels is where g= acceleration due to gravity, 9.8 m/s...
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The distance a freely falling object travels is where g= acceleration due to gravity, 9.8 m/s² t = time in seconds x = distance traveled in meters. dx If you have taken calculus, you know that we can find the velocity of the object by taking the derivative of the preceding equation. That is, dt = v=gt 1 29t² X = =a=g We can find the acceleration by taking the derivative again: dx dt ● Create a function called freefall with a single input vector that returns values for distance x, velocity v, and acceleration g. (Include a commented out copy of the function in your .m file). Make sure the function has a descriptive help and is well documented. Test your function with a time vector that ranges from 0 to 20 seconds. (Include this code in your .m file) The distance a freely falling object travels is where g= acceleration due to gravity, 9.8 m/s² t = time in seconds x = distance traveled in meters. dx If you have taken calculus, you know that we can find the velocity of the object by taking the derivative of the preceding equation. That is, dt = v=gt 1 29t² X = =a=g We can find the acceleration by taking the derivative again: dx dt ● Create a function called freefall with a single input vector that returns values for distance x, velocity v, and acceleration g. (Include a commented out copy of the function in your .m file). Make sure the function has a descriptive help and is well documented. Test your function with a time vector that ranges from 0 to 20 seconds. (Include this code in your .m file)
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Certainly Heres a MATLAB function called freefall that calculates and returns the distance x velocit... View the full answer
Related Book For
Calculus Early Transcendentals
ISBN: 978-0321947345
2nd edition
Authors: William L. Briggs, Lyle Cochran, Bernard Gillett
Posted Date:
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