Why is free energy Impossible? – Importance Of Free Energy In Living System

Answer: The fundamental laws of physics tell us that all matter as seen in the universe is composed of one or more particles. These particles must be repelled from each other by forces acting at a distance, called the electromagnetic field. The frequency which these forces operate at is called the speed of light, and the frequency they operate at determines the speed of particles – in other words the energy available for a photon of light. The fundamental equations of physics dictate that: if the speed of light were increased to the speed of light minus one another, the energy (or mass) would decrease, but not to zero and


the frequency would increase. This has been termed the nuclear limit , but the idea is simple: the energy available for a particle at various different frequencies, as expressed by the equations above, is limited by how quickly a particle can achieve maximum energy. This energy is available to all other particles because the speed of light is a minimum, and the frequencies which each particle is able to attain at a maximum are limited by the speed of light minus one another. So if we change one variable in the equations above, it will have a significant impact on the other in an entirely unpredictable way. There are also many variables which can be “controlled” in such a way as to increase or decrease the energy level, but the effects would be very unpredictable, and we would not know if they had an effect on us. If one would “control” this energy system in a “controlled” way, then how can this matter be created (or destroyed)? One possibility would be to “chop” the frequency (or energy level) that the energy would be emitted at, and then set other variable up that will raise or lower the energy level of the whole system. This is called “controlled nuclear interaction” (CNE), and has been studied for many years now, as it produces an increase in the energy level of one of the particle. The theory is that when the frequency is increased, the frequency is lowered back to its original value. For example, let us pretend that we were in the center of the earth and were emitting the same particle at the same level and frequency. If we increased one of our frequencies by 1.4 times above the current maximum (to say, a 100 keV “megahertz”), then this would produce an increase of 1.65 times above the current maximum energy level of a 100 keV particle, or 2.9 keV, and the particle would be reduced to near zero energy. If we

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