The gravitational force between objects A and B is 4 N. If the mass of B is decreased to one-half as large as it currently is while A’s mass remains the same, calculate the new gravitational force between them?
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Explanation:
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The force of gravitational attraction between the two bodies of mass (M) and (m
The force of gravitational attraction between the two bodies of mass (M) and (m) is
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=G
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2M
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2Mand
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2Mand m=
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2Mand m=2
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2Mand m=2m
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2Mand m=2m
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2Mand m=2m Now,
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2Mand m=2m Now, F=
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2Mand m=2m Now, F=G
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2Mand m=2m Now, F=G4r
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2Mand m=2m Now, F=G4r2
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2Mand m=2m Now, F=G4r2Mm
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2Mand m=2m Now, F=G4r2Mm.
The force of gravitational attraction between the two bodies of mass (M) and (m) is F=Gr 2Mm.Now, If masses of both objects are halved without changing distance between them or M=2Mand m=2m Now, F=G4r2Mm.Thus, force becomes one-fourth as we reduce the masses to half without altering the distances.
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