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Need help don't understand this please draw diagrams for better understanding Submit the numerical answers for parts a) b) & c) to Canvas. Submit your

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Need help don't understand this please draw diagrams for better understanding

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Submit the numerical answers for parts a) b) & c) to Canvas. Submit your written work for this part and the next two parts via Crowdmark as one file. Your written work should contain the following: 1) A labeled diagram of the situation showing the known quantities, the unknown quantities and any free-body diagrams needed. 2) All of the work you did to obtain the numerical answers submitted to Canvas. 3) Please circle the answers in your written work and don't forget units on your final answers. Two small balls with masses m; and m, are attached to each end of a rod of length L = 40.0 cm and mass M = 6.00 kg. See figure below. The moment of inertia of this object about an axis that is perpendicular to the rod and passes through the rod a distance of 2L/3 from mass m,is | = 0.240 kg m2. L/3 2L/3 a) If one ball has a mass of m; =2.20 kg, what is the mass of the other ball m, equal to in kilograms? Treat the two balls as point masses. Enter an answer with two decimal places in the space below. This object is caused to rotate about a vertical axis located a distance of 2L/3 from mass m, on a horizontal frictionless surface. Two forces act on the object parallel to the surface as shown in the view from above. (See Figure.) One applied force: F; = 53.4 N acts perpendicular to the rod at a distance of d = 20.6 cm from the axis. The other applied force F, acts at angle of 8 = 31 degrees from a line drawn perpendicular to the rod at a distance of L/6 from the axis. No other unbalanced forces are acting on the object. L/3 2L/3 b) If the magnitude of the angular acceleration of the object is 5.00 rad/sec\"2, what is the magnitude of force F,in Newtons? Enter an integer answer (to O decimal places) in the box below. This object starts at rest and experiences an angular acceleration with a magnitude of 5.00 rad/s"2. After some time has elapsed, its angular velocity has a magnitude of w = 21.5 rad/s. c) What is the magnitude of the angular displacement of the object in radians during this time period? Enter an answer to one decimal place in the box below

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