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What is the gravity range of celestial bodies in our solar system?

The gravity range of celestial bodies in our solar system varies widely, from the intense gravity of massive planets like Jupiter to the much weaker gravity of smaller bodies like asteroids and comets. The gravitational pull of a celestial body is determined by its mass and size.


What particles are gravity natural?

If by "gravity neutral" you mean "not affected by gravity" the answer is none. Gravity is an attribute of curved space-time and thus everything in space-time is affected. Even massless photons curve in the presence of massive bodies.


Why are all planets moons and stars spheres instead of a square or cylinder?

These bodies are so massive, that the force of gravity is stronger than their chemical bonds. Gravity's effect is equal in all directions - meaning it is spherical and so massive objects are also spherical.


How does gravity cause massive collisions?

Gravity causes massive collisions by attracting objects with mass towards each other. When two massive objects are traveling towards each other due to gravitational pull, they can collide with great force, releasing a huge amount of energy. This process is seen in celestial bodies such as galaxies, stars, and planets.


Why gravity is different on different bodies in our solar system?

Gravity varies on different bodies in our solar system primarily due to differences in mass and size. The strength of gravitational attraction is directly proportional to an object's mass; more massive bodies exert a stronger gravitational pull. Additionally, the radius of the body affects gravity; for instance, a larger radius can decrease the gravitational acceleration experienced at the surface. Consequently, smaller celestial bodies like the Moon have weaker gravity compared to larger ones like Earth or Jupiter.


Who are the scientists who investigated gravity?

Several key scientists have made significant contributions to our understanding of gravity. Sir Isaac Newton formulated the law of universal gravitation in the 17th century, describing gravity as a force that attracts two bodies with mass. In the 20th century, Albert Einstein revolutionized the concept with his general theory of relativity, which explains gravity as the curvature of spacetime caused by mass. Other notable figures include Galileo Galilei, who studied motion and falling bodies, and Johannes Kepler, who formulated the laws of planetary motion.


What are the causes by of gravity that produced gravitational force attraction of mass of celestial body?

Gravity is caused by the curvature of spacetime around massive objects. This curvature creates a gravitational force that attracts objects with mass towards each other. The more massive an object is, the stronger its gravitational force will be.


How does the strength of gravity affect acceleration of falling bodies?

All bodies with mass are affected by gravity. Gravity pulls at a rate of 9.8m/s/s


The space surrounding a massive object subject to the body's force of attraction is?

The space surrounding a massive object subject to the body's force of attraction is the gravitational field. This field is responsible for exerting a force on any other object within its influence, causing it to experience gravitational acceleration towards the massive object.


A sentence with bodies?

scientists call stars heavenly bodies


If gravity is same for all bodies why not on moon and earth?

The gravitational constant is the same for all bodies.The actual force depends on the masses of the bodies (and the distance between them).Since the mass of the Moon is considerably less than the mass of the Earth, the Moon's surface gravity is lower than the Earth's surface gravity.


Why isn't any gravity in space?

Gravity is everywhere. Its strength depends on how close you are to other bodies, and the mass of the other bodies. If you're way out in empty space, the force can be quite small, but it's never zero.