Part 1: Point Masses: A Review a) Two point masses (A and B), 5000 kg each, are placed 10 m apart. A third point mass (C) of the same magnitude is placed directly between A and B, as shown below. Calculate the NET gravitational force ON the mass C. 10 m HINT 1: Calculate the gravitational force on mass Cdue to mass A. HINT 2: Calculate the gravitational force on mass C due to mass B. HINT 3. How do you combine forces to get a net force? b) Same scenario as problem (a), except that mass Cis placed 4 m to the right of A (ie. 6 m to the left of B.) Calculate the NET gravitation force ON mass C. c) Same scenario as problem (b), but now we're going to change the magnitude of mass B. What mass should we give B so that the net force on C will be ZERO.

College Physics
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ISBN:9781305952300
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Chapter1: Units, Trigonometry. And Vectors
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Part 1:
Point Masses: A Review
a) Two point masses (A and B), 5000 kg each, are placed 10 m apart. A third point mass (C) of
the same magnitude is placed directly between A and B, as shown below.
Calculate the NET gravitational force ON the mass C.
10 m
HINT 1: Calculate the gravitational force on mass Cdue to mass A.
HINT 2: Calculate the gravitational force on mass C due to mass B.
HINT 3: How do you combine forces to get a net force?
b) Same scenario as problem (a), except that mass Cis placed 4 m to the right of A (ie. 6 m to
the left of B.) Calculate the NET gravitation force ON mass C.
c) Same scenario as problem (b), but now we're going to change the magnitude of mass B.
What mass should we give B so that the net force on C will be ZERO.
Transcribed Image Text:Part 1: Point Masses: A Review a) Two point masses (A and B), 5000 kg each, are placed 10 m apart. A third point mass (C) of the same magnitude is placed directly between A and B, as shown below. Calculate the NET gravitational force ON the mass C. 10 m HINT 1: Calculate the gravitational force on mass Cdue to mass A. HINT 2: Calculate the gravitational force on mass C due to mass B. HINT 3: How do you combine forces to get a net force? b) Same scenario as problem (a), except that mass Cis placed 4 m to the right of A (ie. 6 m to the left of B.) Calculate the NET gravitation force ON mass C. c) Same scenario as problem (b), but now we're going to change the magnitude of mass B. What mass should we give B so that the net force on C will be ZERO.
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