2. Two spherical celestial objects, call them A and B have mass M1 and M, with radius R1 and R2 respectively. Initially they are at a distance d from each other. Now solve the following problems. A (a) What would be the gravitational acceleration on the surface of object A ? You should ignore B's presence in this case. (b) Find the escape velocity of object B. Again ignore A's presence. (c) Now lets say these two objects, A & B start to move towards each other dude to mutual gravitational attraction. Find the time when they will collide with each other. Express you answers in terms of the given pa- rameters and any universal constant.

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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2. Two spherical celestial objects, call them A and B have mass M1 and M, with
radius R1 and R2 respectively. Initially they are at a distance d from each
other. Now solve the following problems.
d
A
(a) What would be the gravitational acceleration on the surface of object A
? You should ignore B's presence in this case.
(b) Find the escape velocity of object B. Again ignore A's presence.
(c) Now lets say these two objects, A & B start to move towards each other
dude to mutual gravitational attraction. Find the time when they will
collide with each other. Express you answers in terms of the given pa-
rameters and any universal constant.
Transcribed Image Text:2. Two spherical celestial objects, call them A and B have mass M1 and M, with radius R1 and R2 respectively. Initially they are at a distance d from each other. Now solve the following problems. d A (a) What would be the gravitational acceleration on the surface of object A ? You should ignore B's presence in this case. (b) Find the escape velocity of object B. Again ignore A's presence. (c) Now lets say these two objects, A & B start to move towards each other dude to mutual gravitational attraction. Find the time when they will collide with each other. Express you answers in terms of the given pa- rameters and any universal constant.
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