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128 N
128 N

Chapter 02 Motion
Chapter 02 Motion

POWERPOINT JEOPARDY
POWERPOINT JEOPARDY

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MP sols

... Description: A block with mass m=## kg slides down a surface inclined 36.9 degree(s) to the horizontal (the figure ). The coefficient of kinetic friction is ##. A string attached to the block is wrapped around a flywheel on a fixed axis at O. The flywheel has... A block with mass \texttip{m}{m} = 5. ...
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... Torque is provided by friction acting at the surface (otherwise the ball would just slide). Note that the normal force does not produce a torque (although it can with deformable surfaces and rolling friction). Semester 1 2009 ...
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... Torque is provided by friction acting at the surface (otherwise the ball would just slide). Note that the normal force does not produce a torque (although it can with deformable surfaces and rolling friction). Semester 1 2008 ...
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Classical central-force problem



In classical mechanics, the central-force problem is to determine the motion of a particle under the influence of a single central force. A central force is a force that points from the particle directly towards (or directly away from) a fixed point in space, the center, and whose magnitude only depends on the distance of the object to the center. In many important cases, the problem can be solved analytically, i.e., in terms of well-studied functions such as trigonometric functions.The solution of this problem is important to classical physics, since many naturally occurring forces are central. Examples include gravity and electromagnetism as described by Newton's law of universal gravitation and Coulomb's law, respectively. The problem is also important because some more complicated problems in classical physics (such as the two-body problem with forces along the line connecting the two bodies) can be reduced to a central-force problem. Finally, the solution to the central-force problem often makes a good initial approximation of the true motion, as in calculating the motion of the planets in the Solar System.
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