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The Earth is more centrally concentrated than uniform density (but not as concen

ID: 2078085 • Letter: T

Question

The Earth is more centrally concentrated than uniform density (but not as concentrated as the Sun) so its moment of inertia is about I = 0.33M R^2. (A) The Thoku earthquake of 2011 shortened the length of the day by 1.8 s. Assuming that a piece of the sea floor was displaced vertically 7 meters in the earthquake, how much mass was displaced, and in which direction (up or down), during the earthquake? (Hint: you may find the binomial expansion, Appendix A in the text, useful.) The Earth is more centrally concentrated than uniform density (but not as concentrated as the Sun) so its moment of inertia is about I = 0.33M R^2. (A) The Thoku earthquake of 2011 shortened the length of the day by 1.8 s. Assuming that a piece of the sea floor was displaced vertically 7 meters in the earthquake, how much mass was displaced, and in which direction (up or down), during the earthquake? (Hint: you may find the binomial expansion, Appendix A in the text, useful.) The Earth is more centrally concentrated than uniform density (but not as concentrated as the Sun) so its moment of inertia is about I = 0.33M R^2. (A) The Thoku earthquake of 2011 shortened the length of the day by 1.8 s. Assuming that a piece of the sea floor was displaced vertically 7 meters in the earthquake, how much mass was displaced, and in which direction (up or down), during the earthquake? (Hint: you may find the binomial expansion, Appendix A in the text, useful.)

Explanation / Answer

Problem 6.32:

Here A=10, E=5, I=2, O=1, U=0 And X=-10

Total closeness rating

1 2 3 4 5 - 1 - A U E U - 2 - U U I - 3 - U X - 4 - A - 5 - -
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