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• Now the number of Electrons also splits into 36 for Krypton and 56 for Barium, equal and therefore neutral to the number of Positrons. It is in the number of Neutrons that the difference occurs.
• The Barium element now has 144 Neutrons and is still radioactive as the stable Barium has only 138 Neutrons. Likewise the Krypton element has 89 Neutrons and also radioactive as the stable Krypton has only 84 Neutrons. However, in this transmutation there are 3 Neutrons left over and these fly off into the surrounding isotopes of Uranium to continue the explosion. The 144 Barium Neutrons plus the 89 Krypton Neutrons plus the 3 fliers add back to the original 236 Neutrons where it all started.
• So where did all that extra energy come from as we have still the same number of Electrons,of Positrons and of Neutrons from the beginning? Normal science gives you the reasoning of E=MC 2 but, as we have seen, there is no loss of mass to account for the energy released. What is more there is no explanation for the fact that the total energy released is only about 2 percent of the theoretical amount that should be released if the energy comes from the mass squared. If when the original atomic bomb exploded, back in 1945 with Oppenheimer and friends, it had been 50 times greater in devastation as the theory said it should, the result would have been a catastrophe for the surrounding area. The scientists themselves had been warned that to have the atomic explosion, based on the theory, might even set the whole world on fire. They went ahead on the basis that if the world fire resulted there would not have been any one left to complain!
• Normal science, ignoring the problem above, tells us that when the Neutron joins with the nucleus of the atom, it gives off some of its mass as energy, thereby accounting for the lighter weight of the Proton when compared with the Neutron. It is this store of energy that is causing the explosion and is called the 'weak nuclear force'. The trouble with this explanation is that when the Neutron leaves the atom nucleus, it should take back the energy given off before when it joined, back into the rest mass or again there are Neutrons of less mass floating around in space, something not spoken of by normal science which simply ignores the problem.
• So mass does not change into energy to make the atomic explosion because energy does not convert into mass and vice-versa.
• You must also note that for matter to change into energy, two other famous laws of normal science must be considered, the law of the conservation of mass and the first law of thermodynamics.
• The first of these two laws states that when one piece of matter changes into two or more pieces of matter, the mass of the parts is equal to the mass of the whole. The atomic explosion confirms this law. Also if paper is burnt in a sealed container, the weight of the container will not change from before the fire to after the fire. Note that some of the energy heat will transfer outside the container so for the weight, or rest mass if you prefer, to be the same the energy obviously does not have any mass.
• The first of the laws of thermodynamics says that heat is a form of energy and energy is conserved, just like matter above. But energy in the transformed concept as matter is no longer energy and therefore not conserved. It has to be transformed back into energy before that can happen. Energy being equal to mass times the speed of light (which speed for example, miles per second as Maxwell used or meters per second as the SI units use or even centimetres per second as Einstein used?) cannot be true as it contradicts the above laws, plus the result of the atomic bomb etc.
• So to explain the source of all that excess energy from the atomic bomb explosion, we must blow up yet another normal science treasured theory, the claim that the inside of every atom is a vacuum around the nucleus, nothing at all. This concept comes from those who were the first to investigate the atom and they decided that because space was a vacuum then the atom must also be a vacuum.
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