Nexus - 0306 - New Times Magazine-pages

Page 45 of 96

Page 45 of 96
Nexus - 0306 - New Times Magazine-pages

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, One thing we did was we took our white powder and we said, "Now, if this is a superconductor, we should be able to put this white powder down on the table and should be able to hook up a voltmeter to it." Your voltmeter has got two electrodes, and you put it on a wire, tum on the battery pack and it tells you the resistance in the wire. This elusive Well, if you touch the powder with one electrode on one end and the other electrode on the other end and tum on the electricity, you just figure the needle is going to go 'boing', substance not just like this, right? Perfect conductivity, right? Nothing. Zilch. Nothing. No conduc­ tivity at all. So we think, "Whaes going on here?" only has We found out that the definition of a superconductor is that it does not allow any volt­ age potential or any magnetic field to exist inside the sample. So, by definition, a super­ superconducting conductor will not allow any voltage potential to exist inside the sample. To gct electrici­ ty off a wire requires a voltage, and to get electricity back on the wirc requires a voltage. properties which So now I know your question is, "So what the heck good is this stuff? If you can't get energy into it and you can't get energy back out of it, what the heck good is it?" Well, transcend time what you come to find out is that in the superconductor there is a single frequency of light, just like a laser, that is flowing perpetually inside the superconductor. And when it flows and space, but is inside the superconductor it produces around it what is called a Meissner field, which is unique to superconductors. capable of raising A Meissner field excludes all external magnetic fields from the sample. What colour must it be? It has to be white. Anything that excludes all light from the sample has to be human white. Anything that absorbs all light has to be black. If ineflects all light it has to be white. Now, I'm talking about a pure single element superconductor. It has to be white consciousness and when it is superconducting. What you have to do is take a radio frequency transmitter and resonant-frequency-tune restoring perfect the superconductor to match the frequency of the wirc. So now, the wire is in oscillation with its electron waves, exactly the same as the superconductor. At that point the electron health. pair can go on the superconductor with no push at all, because electrons are continually moving on the wire, seeking the path of least resistance. When you have them in perfect synchronisation with the superconductor, they go on with no push at all as pairs. This takes a lillie explaining because one spin-one half electron plus one spin-one half electron are two particles. Yet when these two particles become perfectly paired as mirror images of each other, they lose all particle aspects and they become nothing but pure light. Part 2 This doesn't make sense either, does it? But that's the way it is. Spin-one half plus spin­ one half gives you spin one which is now pure light. Trust me, it is so. So they can't go on as individual electrons; they go on as light. The erazy thing about electrons is that one electron can exist in one space-time, and if it moves to another space-time it gives off light or absorbs light. It's moving from one space-time to another. Now we have light. which is two electrons. Light doesn't exist in any space-time. You can put 50 billion lights ail in the same space-time and it is okay. Now we don't have a conductor. If you put electricity on the wire, you've got to take the electricity off or it won't flow. You've got to ground it, right? With a superconductor, that's not so. It can go on, and go on, and go on, and go on; it doesn't have to come off. If you want to take it off, you have to put a wire next to it and you have to resonant-frequen­ cy-tune the wire to match the superconductor. And when it's in perfect harmony you apply a voltage and, 'poof, off goes the energy. So if you could literally make a superconductor that stretches from Portland to New OCTOBER - NOVEMBER 1996 NEXUS. 45