sir issac newton
Gravity.
Many scientists think, several believe, and others conjecture, that it was the force of gravity.
Yes, Sir Isaac Newton was the first scientist to describe how the force of gravity behaves. He formulated the law of universal gravitation, which states that every mass attracts every other mass in the universe with a force proportional to the product of their masses and inversely proportional to the square of the distance between their centers.
My balls. They lay a nuclear active radiated gas that explains the whole theory.
All objects in the universe with mass are attracted to each other by gravity, which is the large scale organizer of the universe itself.
Sir isaac newton
Isaac Newton
ANSWER Sir Isak Newton was the first person to realise that the force of gravity was universal. It is Kepler motion that describes the elliptically orbits of the planets.
Sir Isaac Newton is credited with first describing the force of gravity in his book "Philosophiæ Naturalis Principia Mathematica" published in 1687.
Isaac newton
Isaac Newton
Gravity.
Even though it cannot be fully explained but can be inferred to as a force of attraction.
Many scientists think, several believe, and others conjecture, that it was the force of gravity.
General relativity explains the force of gravity.
Yes, the force of gravity is typically measured in Newtons (N). It represents the gravitational attraction between two objects and is a measure of the amount of force that gravity exerts on an object.
Aristotle did the first recorded speculations on the nature of gravity. Speculations by various philosophers continued for centuries. By 1544, experimenters had shown that Aristotles speculations were false. Galileo Galilei did the first mathematical description of gravity at the Earth's surface. Isaac Newton showed that the same force (gravity) that caused objects to fall to the Earth also caused the planets to go around our Sun. Albert Einstein showed that gravity was not EXACTLY a force between two masses (although that is a useful approximation) but a warping of space by each mass.