Situation A: A long pole is rotated around three different rotation axes: central core axis, midpoint...
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Situation A: A long pole is rotated around three different rotation axes: central core axis, midpoint axis, and one end axis as shown in figure 2. The pole is easiest to rotate about its central core axis, and it is hardest to rotate around its one end avis Figure 2: The three axes at which pole is rotated. The blue arrow represents the axis of rotation. Axis 1: Central Core Axis 2: Midpoint Axis 3: One End Image via https:/len.wikipedia.org/wiki/L.ist_of_moments of_inertia is licensed under CCBY-SA 3.0 Analysis: 1. Which axis of rotation the pole obtains the greatest moment of inertia? 2. In which axis of rotation, the pole had the smallest moment of inertia? 3. How do the axes of rotation affect the rotation of the pole? (Hint: Relate it to the moment of inertia.) Situation A: A long pole is rotated around three different rotation axes: central core axis, midpoint axis, and one end axis as shown in figure 2. The pole is easiest to rotate about its central core axis, and it is hardest to rotate around its one end avis Figure 2: The three axes at which pole is rotated. The blue arrow represents the axis of rotation. Axis 1: Central Core Axis 2: Midpoint Axis 3: One End Image via https:/len.wikipedia.org/wiki/L.ist_of_moments of_inertia is licensed under CCBY-SA 3.0 Analysis: 1. Which axis of rotation the pole obtains the greatest moment of inertia? 2. In which axis of rotation, the pole had the smallest moment of inertia? 3. How do the axes of rotation affect the rotation of the pole? (Hint: Relate it to the moment of inertia.)
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Fundamentals of Physics
ISBN: 978-0471758013
8th Extended edition
Authors: Jearl Walker, Halliday Resnick
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