Yes it is.
It is not possible for the center of gravity to be at a point where there is no mass, as it is a weighted average that considers the distribution of mass within a body. If there is no mass at a point, it cannot contribute to the calculation of the center of gravity.
The center of gravity is the point where the entire weight of an object can be considered to act. It is the point at which an object is in perfect balance and will remain stable if supported at that point. The center of gravity is important in understanding the stability and equilibrium of physical objects.
Its the balance point.
That "point" in a body where the entire weight of the body can be represented to be present. Extend your knowledge by exploring where the center of gravity would be for metal shapes formed in the shapes of circular, square, rectanglar, hexagonal rings with metal rods. Where would the center of gravity be, on the ring or outside the ring?
The center of gravity for a spherical object is located at its geometric center, which is also the center of the sphere. This point is equidistant from all points on the surface of the sphere, making it the point where the force of gravity can be considered to act.
You can use plumb lines to find its center of gravity. Hold it from one point and draw vertical line in direction of gravity (plumb line). Hold it from another point and do the same, and a third point if necessary; where the lines cross is center of gravity
The center of gravity of a square pyramidis a point in the pyramid where its weight is assumed to be concentrated.
No, they are not the same. The center of mass is the point where the entire mass of an object can be considered to be concentrated, while the center of gravity is the point where the force of gravity appears to act on the object. The center of mass and center of gravity may coincide under certain conditions, such as in a uniform gravitational field.
The center of gravity for a spherical object is located at the exact center of the sphere. This point is equidistant from all points on the surface of the sphere, making it the point where the force of gravity can be considered to act on the object.
If you were observing the ball from the outside (of the ball) the center of gravity is in the middle of the basketball.
The center of gravity is the theoretical point where all the body weight is concentrated or the theoretical point about which the body weight is evenly distributed. If a body is of uniform density and has a symmetrical shape the center of gravity is in the geometric center. If the object is not symmetrical and does not have uniform density, it is more difficult to describe the location of its center of gravity.
The point where an object's weight is concentrated is called its center of gravity. It is the point where the force of gravity can be considered to act.