:::::Jaques, I am afraid you are incorrect again. The fall is the phenomenon but it is not gravity. It is the observed effect of gravity, not gravity itself. Falling is not gravity but the force of the attraction is gravity. You can have an object sitting on a plane and it will be affected by gravity however it would not be the same phenomenon that you are claiming is gravity, hence the reason why gravity is not a phenomenon. The theory of gravity tries to explain the force of gravity's interactions of objects within space. The General theory of Relativity seeks to explain special relativity with the added effect of gravitation on the shape of space and the flow of time, not actually trying to explain the force. The two theories are different due to the scopes of what each is trying to explain. Several decades after the discovery of general relativity it was realized that it cannot be the complete theory of gravity because it is incompatible with quantum mechanics. Later it was understood that it is possible to describe gravity in the framework of quantum field theory like the other fundamental forces. In this framework the attractive force of gravity arises due to exchange of virtual gravitons, in the same way as the electromagnetic force arises from exchange of virtual photons. I hope this clears everything up.--[[User:Tims|TimS]] 12:16, 5 April 2007 (EDT) | :::::Jaques, I am afraid you are incorrect again. The fall is the phenomenon but it is not gravity. It is the observed effect of gravity, not gravity itself. Falling is not gravity but the force of the attraction is gravity. You can have an object sitting on a plane and it will be affected by gravity however it would not be the same phenomenon that you are claiming is gravity, hence the reason why gravity is not a phenomenon. The theory of gravity tries to explain the force of gravity's interactions of objects within space. The General theory of Relativity seeks to explain special relativity with the added effect of gravitation on the shape of space and the flow of time, not actually trying to explain the force. The two theories are different due to the scopes of what each is trying to explain. Several decades after the discovery of general relativity it was realized that it cannot be the complete theory of gravity because it is incompatible with quantum mechanics. Later it was understood that it is possible to describe gravity in the framework of quantum field theory like the other fundamental forces. In this framework the attractive force of gravity arises due to exchange of virtual gravitons, in the same way as the electromagnetic force arises from exchange of virtual photons. I hope this clears everything up.--[[User:Tims|TimS]] 12:16, 5 April 2007 (EDT) |