Photosynthesis
Started by unknown · · 5 posts
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#1 ·
Photosynthesis is a process which includes the transformation of light into another form of energy, the end result being that molecular bonds are rearranged with the formation of subsequent molecules which a plant needs. Light with the proper spectral content is absorbed by certain complex, photo receptive molecules within the plant. The energy in a photon can raise the band gap of an electron such that the electron becomes delocalized across several spatially separated molecules. This condition has weaker covalent bonds and is meta stable. If the condition was allowed to decay, that reaction would be exothermic, giving up energy. Instead, the plant uses the meta stable energy (which is actually non local energy) to split some CO2, done through ionization. So when light is converted into non local energy, it can break a covalent bond and produce ionization, along with the subsequent dissociation of the fuel gas, when an alternative molecular potentiality is presented by the presence of an additional, electron receiving molecule. The electron's heightened band gap allows it to jump from one chemical to another, still forming chemical.
Someone has a theory that this is the same basic process which manifests in Stan Meyer's energy system. The photo receptors are simple H2O molecules, with the electron receivers being some type of ionized gas mixed with, or ions contained by, the water. (Some gasses, including chlorine, carbon tetrachloride, and freon are "electron grabbers" which wouldn't even need to be pre ionized. One chlorine can grab up to four electrons.) The important correlation of this theory is that the water molecules, or "mini capacitors" (as Meyer puts it), become "charged", prior to dissociation, with a type of energy which is not associated with placing extra electrons on the molecules. Electrical potential can be directly converted into non local energy without any electron current because potential is an electromagnetic field.
And, speaking of charging a capacitor, radiant energy can place a heightened potential on one plate of a capacitor without changing the number of electrons on the other plate.
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#2 · date not recorded
http://www.truegreensolutions.net/index.php?p=1_9_Water-for-fuel-technology
That someone would be me. -
#3 · date not recorded
Hi Ed. Glad you didnt lost yr humor..
Yes you are right. Read that once on yr website.
cheers -
#4 · date not recorded
Here's my theorem. Or perhaps I should say my understanding.
Water can be easily split if the electrons are delocalized from the molecules, so that they each orbit a group of molecules (while still maintaining valence), then are nudged away from any molecule. As a result, the water molecule simply falls apart.
This mechanism also represents one part of the photo synthesis process.
Did Stan Meyer delocalize the electrons, or did his type of pulses simply move the electrons away from the atoms incrementally? -
#5 · date not recorded
Molecular dissociation through photosynthesis is basically a two step process. First, the molecule absorbs an electron delocalizing photon. This does not produce ionization. That occurs when the electron transfers to a second molecule.
This process is not at all the same as an electron being completely ejected from a water molecule in a single step, due to a voltage gradient established by a lightning bolt.
Stan Meyer captured free electrons, using ions or a charged electrode, to prevent water from reforming. But that was not HOW he split the water.
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