A solid sphere of uniform density has a mass of 2.4 × 104 kg and a radius of 2.2 m. What is the magnitude of the gravitational force due to the sphere on a particle of mass 6.5 kg located at a distance of (a) 9.2 m and (b) 1.3 m from the center of the sphere? (c) Write a general expression for the magnitude of the gravitational force on the particle at a distance r≤ 2.2 m from the center of the sphere. (a) Number i (b) Number i (c) Fon m = kr, where k = i ! Units ! Units > >
A solid sphere of uniform density has a mass of 2.4 × 104 kg and a radius of 2.2 m. What is the magnitude of the gravitational force due to the sphere on a particle of mass 6.5 kg located at a distance of (a) 9.2 m and (b) 1.3 m from the center of the sphere? (c) Write a general expression for the magnitude of the gravitational force on the particle at a distance r≤ 2.2 m from the center of the sphere. (a) Number i (b) Number i (c) Fon m = kr, where k = i ! Units ! Units > >
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![A solid sphere of uniform density has a mass of 2.4 × 104 kg and a radius of 2.2 m.
What is the magnitude of the gravitational force due to the sphere on a particle
of mass 6.5 kg located at a distance of (a) 9.2 m and (b) 1.3 m from the center of
the sphere? (c) Write a general expression for the magnitude of the gravitational
force on the particle at a distance r≤ 2.2 m from the center of the sphere.
(a) Number
i
(b) Number
i
(c) Fon m = kr, where k =
i
!
Units
!
Units
>
>](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F502e6ee2-e791-4396-a310-fa5d1ffaf465%2Fdbd7c077-8204-48db-bc05-7b3191e7db86%2Fzvc27d7_processed.png&w=3840&q=75)
Transcribed Image Text:A solid sphere of uniform density has a mass of 2.4 × 104 kg and a radius of 2.2 m.
What is the magnitude of the gravitational force due to the sphere on a particle
of mass 6.5 kg located at a distance of (a) 9.2 m and (b) 1.3 m from the center of
the sphere? (c) Write a general expression for the magnitude of the gravitational
force on the particle at a distance r≤ 2.2 m from the center of the sphere.
(a) Number
i
(b) Number
i
(c) Fon m = kr, where k =
i
!
Units
!
Units
>
>
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