Question: answer all part's please Module 5 Quiz Begin Date: 9/29/2020 12:01:00 AM -- Due Date: 2/19/2023 11:59:00 PM End Date: 9/13/2026 11:59:00 PM (8%) Problem

answer all part's please

answer all part's please Module 5 Quiz Begin Date: 9/29/2020 12:01:00 AM

Module 5 Quiz Begin Date: 9/29/2020 12:01:00 AM -- Due Date: 2/19/2023 11:59:00 PM End Date: 9/13/2026 11:59:00 PM (8%) Problem 6: Suppose we want to calculate the moment of inertia of a 59.5 kg skater, relative to a vertical axis through their center of mass. Forbes, David - david forbes @doane.edu @theexpertta.com - tracking id: 9N69-72-B9-45-AB7A-35264. In accordance with Expert TA's Tens of Service, copying this information to any solutions sharing website is strictly forbidden. Doing so may result in termination of your Expert TA Account. A 50% Part (a) First calculate the moment of inertia (in kg.m-) when the skater has their arms pulled inward by assuming they are cylinder of radius 0.135 m. 1b = 1 Grade Summary Deductions 1% Potential 100% Late Work % 100% sin( cos() tan 7 9 HOME Late Potential 100% cotan( asin( acosO B 4 5 6 Submissions atan() acotan( sinh( 1 2 3 Attempts remaining: 1 cosh( tanh() cotanh() + 0 END (100% per attempt) detailed view Degrees O Radians VO ACK SPACE CLEAR Submit Hint Feedback I give up! Hints: 0% deduction per hint. Hints remaining: 1 Feedback: 0% deduction per feedback. 4 50% Part (b) Now calculate the moment of inertia of the skater (in kg.m ) with their arms extended by assuming that each arm is 5% of the mass of their body. Assume the body is a cylinder of the same size, and the arms are 0.825 m long rods extending straight out from the center of their body being rotated at the ends. All content @ 2023 Expert TA, LLC

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