Question: Assessment - PHYS 231/241 - Acl X Course Hero X + X C achieve.macmillanlearning.com/courses/c8f94c77-9f41-434b-aa96-6d894047e4e2/3/2kha2n/tools/assessment/items/1bca1ad6-4e78-4c12-9fde-14b9e0b8220e/assignments/7046352?redirec... [ I C y! apple credit union -... New Tab Settings

 Assessment - PHYS 231/241 - Acl X Course Hero X +X C achieve.macmillanlearning.com/courses/c8f94c77-9f41-434b-aa96-6d894047e4e2/3/2kha2n/tools/assessment/items/1bca1ad6-4e78-4c12-9fde-14b9e0b8220e/assignments/7046352?redirec... [ I C y! apple credit union -... NewTab Settings M Gmail YouTube ) Maps Translate Assessment ? Assignment 11

of 20 Questions 0% Your score has been saved, but it's takinglonger than A Resources Ly Give Up? Hint Check Answer Score: usualto display. 8 Question 0% 0 of co Attempts Dima pulls directly

Assessment - PHYS 231/241 - Acl X Course Hero X + X C achieve.macmillanlearning.com/courses/c8f94c77-9f41-434b-aa96-6d894047e4e2/3/2kha2n/tools/assessment/items/1bca1ad6-4e78-4c12-9fde-14b9e0b8220e/assignments/7046352?redirec... [ I C y! apple credit union -... New Tab Settings M Gmail YouTube ) Maps Translate Assessment ? Assignment 11 of 20 Questions 0% Your score has been saved, but it's taking longer than A Resources Ly Give Up? Hint Check Answer Score: usual to display. 8 Question 0% 0 of co Attempts Dima pulls directly backward with a force F = 189 N on the Side view end of a 2.00 m-long oar. The oar pivots about its midpoint. 9 Question 0% 0 of co Attempts At the instant shown, the oar is completely in the yz-plane Macmillan Learning and makes a 0 = 44.0 angle with respect to the 10 Question 0% water's surface. y 0 of co Attempts Derive an expression for the torque vector 7 about the axis through the oar's pivot. Express the torque using ijk 11 Question 0% vector notation. 0 of co Attempts 1 = [xi + ty j + [z k 12 Question 0% 0 of co Attempts Aerial view 13 Question 0% 0 of co Attempts 1 = N.m 14 Question 0% 0 of co Attempts 15 Question 0% ttempts W 10:23 PM * 10/21/2022Assessment - PHYS 231/241 - Acl X Course Hero X + X C achieve.macmillanlearning.com/courses/c8f94c77-9f41-434b-aa96-6d894047e4e2/3/2kha2n/tools/assessment/items/1bca1ad6-4e78-4c12-9fde-1469e0b8220e/assignments/7046352?redirec... [ I C y! apple credit union -... New Tab Settings M Gmail YouTube ) Maps Translate Assessment ? Assignment 12 of 20 Questions 0% Your score has been saved, but it's taking longer than Resources Ly Give Up? Hint Check Answer Score: A usual to display. 8 Question 0% 0 of co Attempts A flywheel in the form of a uniformly thick disk of radius 1.58 m has a mass of 39.1 kg and spins counterclockwise at 311 rpm. 9 Question 0% 0 of co Attempts Macmillan Learning If the positive direction of rotation is counterclockwise, 10 Question calculate the constant torque r required to stop it in 3.75 min. T = N.m 0 of co Attempts 11 Question 0% 0 of co Attempts 12 Question 0% 0 of co Attempts 13 Question 0% 0 of co Attempts 14 Question 0% 0 of co Attempts 15 Question 0% ttempts W 10:23 PM . 10/21/2022Assignment 13 of 20 Questions 0% Your score has been saved, but it's taking longer than Resources Ly Give Up? 9 Hint Check Answer Score usual to display. Press Esc to exit full screen 8 Question 0% 0 of co Attempts A 240-g mass hangs from a string that is wrapped around a pulley, as shown in the figure. The pulley is suspended in 9 Question 0% 0 of co Attempts such a way that it can rotate freely. When the mass is Macmillan Learning released, it accelerates toward the floor as the string unwinds. 10 Question Model the pulley as a uniform solid cylinder of mass 1.00 kg 0% 0 of co Attempts and radius 7.00 cm. Assume that the thread has negligible mass and does not slip or stretch as it unwinds. 11 Question 0% 0 of co Attempts 12 Question 0% 0 of co Attempts 13 Question 0% 0 of . Attempts 14 Question 0% Determine the magnitude a of the pulley's 0 of co Attempts angular acceleration. a = rad/$2 15 Question 0% 0 of co Attempts Determine the magnitude of the acceleration a of the 16 Question 0% descending weight. a = m/$2 0 of co Attempts 17 Question 0% 0 of co Attempts Calculate the magnitude of the tension T in the string. T = N 18 Question 0% 0 of co Attempts

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