An important part of this experiment is the alternator, without it, the experiment does not work. The alternator converts the mechanical energy from the motor, converts it back into electrical energy and moves it to the battery. The battery uses electric energy to supply power to the motor. In theory this works because the proportion of pulleys that need to be set is transferred from the alternator to the battery, so the alternator needs to have a higher RPM than the motor.
First law of thermodynamics: When energy is used as a work, when heat and matter goes into and out of the system, the internal energy of the system changes according to the law of conservation of energy. Likewise, the first type of permanent motion machine (a machine that does not generate energy input) is impossible. This rule is intended to allow the existence of empirical parameters, ie temperature, as a characteristic of the system so that the systems thermally balanced with each other have the same temperature. The law described here is compatible with the use of a specific physical object (eg a large amount of gas) to match the temperature of other objects, but it should be shown as a measurable quantity in actual ratio You can not.
Physicists say that it is impossible to make a permanent motion machine, a machine that allows its own activities to permanently move it. What energy principle excludes the possibility of perpetual movement? In places where this equipment functions in the universe where we live, the law regulates habitats and processes here. One of those rules states that it is an energy conservation law that energy is preserved in space by switching from one form to another. This is a universal law. It precludes the creation of such machines with permanent movements; by converting to other forms of energy, the machine runs out of its conversion according to the principle of reducing revenue.
The result of the law of energy conservation is that there is no permanent kinematics of the first type, that is, a system without external energy supply can not supply infinite amount of energy around its surroundings. In systems without time translational symmetry, energy conservation may not be defined. Examples are spatiotemporal crystals in curved spacetime, or condensed matter physics in general relativity. Ancient philosophers can trace to Thales of Miletus. Some basic substances, including everything, were preserved in 550 BC. But there is no particular reason to distinguish this as "mass energy" we know today (eg Thales considers it water). Empedocles (490-430 BC) wrote that in this general system consisting of four roots (earth, air, water, fire), "nothing will die." organize