Thinking Like an Engineer: An Active Learning Approach (3rd Edition)
Thinking Like an Engineer: An Active Learning Approach (3rd Edition)
3rd Edition
ISBN: 9780133593211
Author: Elizabeth A. Stephan, David R. Bowman, William J. Park, Benjamin L. Sill, Matthew W. Ohland
Publisher: PEARSON
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Chapter 19.4, Problem 7CC

A device constructed to throw various objects can impart up to 500 joules of kinetic energy to the object being thrown. For a given mass, there is a maximum velocity that the device can throw the object. This is represented in the following diagram, and it fits a power law model. Velocities above the line cannot be achieved by the device, velocities below the line can.

Chapter 19.4, Problem 7CC, A device constructed to throw various objects can impart up to 500 joules of kinetic energy to the

Write a MATLAB program that will accept a value of mass [kg] and desired velocity [m/s] from the user and classify them as “Possible” or “Not Possible.” Three points on the line are labeled on the diagram. You must use polyfit to determine the equation of the line, and then use these values to do the classification.

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After years of asking, you finally were allowed to go on a joy ride in your uncle’s 1956 Mercedes-Benz 300 SL. A notable feature of this vehicle is the gullwing door design that opens from a hinge at the top of the car. Unfortunately, you are having so much fun driving the car that you end up submerged in a fresh water lake. You sink to the bottom of the lake, which has a depth of 10 m. For the sake of simplicity, you can model the door as a 1 m × 1 m square plate, inclined at 45° relative to the floor of the lake. Neglect the weight of the door and friction in the hinge. How much force will be required to open the door, assuming you push from its geometric center?
Matlab code please

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