Suppose a small spherical dust particle of radius ris suspended at some distance R from the Sun, where the gravitational attraction to the Sun is balanced by the radiation pressure pushing it away. Comment on what would happen to the particle in the following 2 situations (would the forces still balance, or would one now be stronger than the other, and *why*): (a) we move the particle out to a distance of 2R from the Sun (b) at R, we increase the size of the particle to 2r, keeping its mass the 1. same A BIU - I E III !!
Suppose a small spherical dust particle of radius ris suspended at some distance R from the Sun, where the gravitational attraction to the Sun is balanced by the radiation pressure pushing it away. Comment on what would happen to the particle in the following 2 situations (would the forces still balance, or would one now be stronger than the other, and *why*): (a) we move the particle out to a distance of 2R from the Sun (b) at R, we increase the size of the particle to 2r, keeping its mass the 1. same A BIU - I E III !!
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Transcribed Image Text:Suppose a small spherical dust particle of radius ris suspended at some
distance R from the Sun, where the gravitational attraction to the Sun is
balanced by the radiation pressure pushing it away. Comment on what
would happen to the particle in the following 2 situations (would the forces
still balance, or would one now be stronger than the other, and *why*):
(a) we move the particle out to a distance of 2R from the Sun
(b) at R, we increase the size of the particle to 2r, keeping its mass the
same
A BI U
Question 2
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