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What moment of inertia does the Oberbeck pendulum have if, under the action of a weight of 760 g, it spins with an angular acceleration of 2.07 c^-2? Pulley radius 42 mm, free fall acceleration 9.81 m/s^2. What is the length of the rod if the moment of inertia due to the rods is 40 times the moment of inertia of the pendulum? Mass of one rod 280 g.
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- Content type File
- Content description 136,9 kB
- Added to the site 25.02.2014
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A detailed solution with a brief note of the conditions, formulas and laws used in the solution, the derivation of the calculation formula and the answer.
If you have any questions about the solution, write. I try to help.
If you have any questions about the solution, write. I try to help.
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