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Memo 0x30063f94…909c4b on Ethereum

# "Exclusion zone" is ordered diamagnetically by 1 nm thick "adsorbate" fourth phase of water Gerald Pollack has proven that a magnet will order  water, and reasonably this is diamagnetic ordering as the water will form magnetic field that opposes the magnet, and when it does so, the molecules will magnetically align and order from that. The exact molecular structure is known from McGeoch s diffraction photographs, it is like ice but each layer shifted one oxygen relative to the layer above and below. This ordered water  that excludes particles is upwards 0.3 mm. Gerald Pollack s data also show a release of hydrogen ions that spreads outwards up to 10 mm, that lands at a pH of 5.5. Gerald Pollack has also shown magnetic effects that presumably come from the adsorbed water, such as the water bridge, and suggested the exclusion zone  is in a fourth phase  of water, where each ice layer was shifted half an oxygen atom, and the hydrogen ions between each layer expelled. It can be known the exclusion zone  is not this phase, because it releases 250000 times less hydrogen ions than this phase would. But if only one 250000th of the exclusion zone  is fourth phase , you get, well, the right amount of hydrogen ions released. You then have roughly 1 nm of the phase, and this happens to be what conventional science says is how thick adsorbed water is. Conventional science says that 1 nm of adsorbed water looks different from the rest of the liquid water, and thee exclusion zone  does not, given the things they look at. Then when you add the electricity to the water beakers above, the H+ that is released from the adsorbed water (the fourth phase , 1 nano-meter thick, 3 atomic layers) will start to flow (and be consumed to produce water at one side, while OH- in adsorbate is oxidized to release electrons) and this generates an electromagnetic field which is amplified in the ferromagnetic fourth phase, like an electromagnet, and this lets it magnetically hold together the shell  around the bridge better, thus you can extend the beakers further from one another while keeping the bridge intact &