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An atom can be compared to a miniature solar system with a positive nucleus in the middle, around which electrons rotate, each capable of spinning on themselves, just as the Earth does on its journey around the sun. The electrons’ movement is described by four quantum numbers (principle, secondary, magnetic and spin). Wave mechanics associated a particular vibration to all moving particles, the motion of which can be predicted by Shrodinger’s equation. An atom can only emit or absorb energy of particular frequencies. This is accompanied by a spectrum of separate and distinct radiations which are related directly to the energy state of the atom. Therefore, every type of atom has its own specific type of atomic spectrum. The nuclear magnetic resonance can also provide detailed information on the nature of the bond holding the atoms together c : 1 1 1 forming the molecule. Within the molecule the atoms will also vibrate relative to each other. If there are only two, there is only one fundamental frequency following the joining at the two centers of gravity of the two nuclei, and it is, therefore, linear. Molecules composed of more atoms will have a larger number of fundamentals. A 1 rae on ns 1 1 rotational energies can vary only in a discontinuous way. The jump from one energy level to another is done either by absorbing or emitting energy. Every chemical reaction is based on such energy changes, and the emission resulting from these matter changes, and the emission resulting from these matter transformations can be measured and recorded as “rotational and the from these emission matter electro-vibrational molecular spectrums”. Every molecule of our body is vibrating in such a way and is, therefore, emitting a whole host of vibrations which at first sight might appear to be a huge cacophony. Thus the human body is an electric and electromagnetic wave emitter. Today, our technology does not yet allow us to record such phenomena on an organism as complex as the human being. Neither are our methods of analysis fine enough to distinguish the emission 333 COMMENTARIES & TESTIMONIALS OF RAELIANS - RAELISM THROUGH THE EYES OF SCIENCE Atoms can also rotate around their own axes. Their vibrational and