Which is the greatest inertia Brainly?

Which is the greatest inertia Brainly?

Answer. The fast-moving objects has the greatest inertia.

Do all bodies have the same inertia if not name the factors which determine inertia of a body?

Answer:No, all bodies do not have the same inertia because all the quantity does not have the same quality to strives.

Why does inertia exist?

Originally Answered: Why does inertia exist? Inertia is a property of matter due to its motion. Due to the resistances offered inertia comes into being. Inertia is the resistance of any physical object to any change in its state of motion; this includes changes to its speed, direction, or state of rest.

Do we understand inertia?

Inertia may manifest in physical objects or in the minds of people. We learn the principle of inertia early on in life. We all know that it takes a force to get something moving, to change its direction, or to stop it.

What did Einstein say about inertia?

From this principle, Einstein deduced that free-fall is inertial motion. Objects in free-fall do not experience being accelerated downward (e.g. toward the earth or other massive body) but rather weightlessness and no acceleration.

How did Einstein think of general relativity?

General relativity predicted that light would bend in a gravitational field. In 1919, British expeditions to Africa and South America observed a total solar eclipse to see if the position of stars near the Sun had changed. The observed effect was exactly what Einstein had predicted.

Did Einstein not believe in gravity?

Einstein argued that gravity isn’t a force at all. He described it as a curvature of time and space caused by mass and energy. Their math, laid down in 10 equations, explained how gravity could move around objects via a warped reality, accelerating without ever feeling any mysterious Newtonian forces.

Is acceleration same as gravity?

A free-falling object has an acceleration of 9.8 m/s/s, downward (on Earth). It is known as the acceleration of gravity – the acceleration for any object moving under the sole influence of gravity.

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