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Sphere.

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Q: Round three-dimensional object whose surface at all points is the same distance form its center?
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What is the name for round threedimensional object?

A sphere.


What determines the graviteational pull on an object on the surface of the moon?

The mass of the Moon, the mass of the object, and the distance to the center of the Moon.


What is a round three dimensional object that surface at all points is same distance from center?

circle


What factor affects the size of the force between Earth and an object?

-- the mass of the object -- the distance between the object and the earth's center (or the object's height off the surface)


What is the round three dimensional object whose surface at all points is the same distance from its center?

That is a sphere.


A round three dimensional object whose surface is the same distance from its center at all points?

A sphere perhaps?


What is the round 3 dimensional object whose surface at all points is the same distance from its center?

That is called a sphere.


What is a round three dimensional object where all points on the surface are an equal from its center point?

A sphere, globe, or ball.If the word missing from the question is "distance",then the object is a sphere,


Distance through the center of a circular object?

Diameter.


What is the distance through the center of an object?

It is called the Diameter.


How does the object distance of a convex lens compared with the object distance of a concave lens?

The object distance of a convex lens is measured from the optical center to the object, while for a concave lens, it is measured from the optical center to the object along the path of light. In general, the object distance for a convex lens is positive, while for a concave lens, it is negative since the object distances are measured on the opposite sides of the lens.


What determines how strong the force of gravity is at the surface of each planet?

The weight of an object on the surface of a planet depends on ...-- The mass of the object.-- The mass of the planet.-- The distance between the center of the object and the centerof the planet, i.e. the planet's radius.