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1 Length and Angel? Part A A ball is hanging from a long string that is tied to the ceiling of a train car traveling
1 Length and Angel?
Part A A ball is hanging from a long string that is tied to the ceiling of a train car traveling eastward on horizontal tracks. An observer inside the train car sees the ball hang motionless. Draw a clearly labeled free-body diagram for the ball if the train has a uniform velocity. For related problem-solving tips and strategies, you may want to view a Video Tutor Draw all the required force vectors with their tails at the dot. The location and orientation of your vectors will be graded. The exact length of your vectors will not be graded but the relative length one to the other will be graded. Solution of Tension in a massless chain. + Label Vectors T Tension - Length: 0 Angle: 0 Start point X: - End point X: - E=0 T = 0 Press TAB to go to the next element.Draw all the required force vectors with their tails at the dot. The location and orientation of your vectors will be graded. The exact length of your vectors will not be graded but the relative length of one to the other will be graded. The black vector is the sum of the vectors in your diagram. A ball is hanging from a long string that is tied to the ceiling of a train car traveling eastward on horizontal tracks. An observer inside the train car sees the ball hang + motionless. Add element For related problem-solving tips and strategies, you may want to view a Video Tutor Label vectors Solution of Tension in a massless chain. E Vector sum Length: - Angle: 0.0 Start point X: - y: End point X: - y. - Press ESC] to return to the main menu. Press |CTRL+Q) to quit the application.A ball is hanging from a long string that is tied to the ceiling of a train car traveling eastward on horizontal tracks. An observer inside the train car sees the ball hang motionless. Part B For related problem-solving tips and strategies, you may want to view a Video Tutor Solution of Tension in a massless chain. Part C Is the net force on the ball zero in either case? O in part A only O in part B only O in both parts Submit Request Answer Provide FeedbackConstants Part A Two 32.0-N weights are suspended at opposite ends of a rope that passes over a light, frictionless pulley. The pulley is attached to a chain that is fastened to the ceiling. (See Draw the free-body diagram for the left weight. Figure 1)). Draw all of the required vectors starting at the black dot, which represents the center of the left weight. The location and orientation of your vectors will be graded. The exact length of your vectors will not be graded. + Label Vectors w Weight - w Weight F. Friction Tr Rope Tension Unlabeled vector X. - y. - gure Press CTRL+Y) to get to the elements on the canvas. Press |CTRL+M| to return to the main menu. Press |CTRL+Q| to quit the application.Review | Constan Draw the free-body diagram for the right weight. Draw all of the required vectors starting at the black dot, which represents the center of the right weight. The location and orientation of your vectors will be graded. The exact length of your vectors Two 32.0-N weights are suspended at opposite ends of a rope that passes over a light, will not be graded. frictionless pulley. The pulley is attached to a chain that is fastened to the ceiling. (See (Figure 1)). + Label Vectors w Weight - w Weight FT Friction Tr Rope Tension Unlabeled vector x. - y. - O w = 0 Figure Press CTRL+Y | to get to the elements on the canvas. Press |CTRL+M| to return to the main menu. Press |CTRL+0) to quit the application. Submit Request Answer Part C 4:43 PM Type here to search 76F Mostly cloudy 9/17/2023Review | Constants Part C Draw the free-body diagram for the pulley. Two 32.0-N weights are suspended at opposite ends of a rope that passes over a light, Draw all of the required vectors starting at the black dot, which represents the center of the pulley. The orientation of your vectors will be graded. The exact length of your vectors will not be graded. frictionless pulley. The pulley is attached to a chain that is fastened to the ceiling. (See (Figure 1)). + S i V Q ? Label Vectors Tri Rope Tension Left Length: - Angle: 0 Start point x: - y: - End point X: - Tri = 0 Figure Press (CTRL+Y) to get to the elements on the canvas. Press |CTRL+M| to return to the main menu. Press (CTRL+Q) to quit the application. Submit RequestStep by Step Solution
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