that the density must increase with depth. In this question, we will assume that the density, p, follows the equation: p(r) = 3000 + Po(1- In which r is the distance from the centre of the Earth, R is the radius of the Earth, and po is a constant. a) Using your knowledge of the mass of the Earth, calculate the value of the constant po b) The radius of the Earth's iron core is about 3500 km. If the equation above is correct, calculate the fraction of the Earth's mass that is in the core.
that the density must increase with depth. In this question, we will assume that the density, p, follows the equation: p(r) = 3000 + Po(1- In which r is the distance from the centre of the Earth, R is the radius of the Earth, and po is a constant. a) Using your knowledge of the mass of the Earth, calculate the value of the constant po b) The radius of the Earth's iron core is about 3500 km. If the equation above is correct, calculate the fraction of the Earth's mass that is in the core.
Applications and Investigations in Earth Science (9th Edition)
9th Edition
ISBN:9780134746241
Author:Edward J. Tarbuck, Frederick K. Lutgens, Dennis G. Tasa
Publisher:Edward J. Tarbuck, Frederick K. Lutgens, Dennis G. Tasa
Chapter1: The Study Of Minerals
Section: Chapter Questions
Problem 1LR
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Transcribed Image Text:that the density must increase with depth. In this question, we will assume that the
density, p, follows the equation:
p(r) = 3000 + po(1-7)
In which r is the distance from the centre of the Earth, R is the radius of the Earth, and po
is a constant.
a) Using your knowledge of the mass of the Earth, calculate the value of the constant po
b) The radius of the Earth's iron core is about 3500 km. If the equation above is correct,
calculate the fraction of the Earth's mass that is in the core.
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