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Figure 1 shows a typical flywheel setup. Develop a matlab program to read the flywheel parameter, speed ( rpm ) and flywheel angular deceleration. Using

Figure 1 shows a typical flywheel setup. Develop a matlab program to read the flywheel parameter, speed (rpm) and flywheel angular deceleration. Using flywheel energy equation, calculate the following:
a) Maximum energy stored (in watts and joule)
b) Total energy required to rotate the flywheel from stationary to the maximum rpm (specify the time required).
c) Moment of inertia and torque.
d) The time taken before the angular velocity reaches 0rads.
Save the result to a text file with file name "flywheel.txt"
Plot line graph energy versus rpm, torque versus rpm.(from stationary to maximum rpm and to a complete stop.
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