a 1 = 95. plr»r«dr. (a) If the density p of a spherical planet is a function of distance r only, show that the moment of
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a 1 = 95. plr»r«dr. (a) If the density p of a spherical planet is a function of distance r only, show that the moment of
a 1 = 95. plr»r«dr. (a) If the density p of a spherical planet is a function of distance r only, show that the moment of inertia 87 (1) 3 (b) Calculate I in units of MR for a planet of uniform density, mass M, and radius R. (c) Calculate I in units of MR for a planet whose mass is distributed so that its core of radius R/2 has twice the density of its mantle. a
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