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<blockquote data-quote="mthamson" data-source="post: 172752" data-attributes="member: 10291"><p>Certainly. Could you provide reference to the study that you are referring to? The below is an overview and I want to make sure I speak about the correct state level and that you are not speaking of triplet states of the system. </p><p></p><p>CURRENTLY KNOWN PHYSICS</p><p>Electrons in 4 dimensions carry 2 spin states (-0.5, + 0.5). Their configuration in these spin states create increasingly complex shells with increasing electron density. Shell systems can have a triplet states (-0.5, 0, +0.5) but this state in 3 dimensions is limited to the 2 spin states. </p><p></p><p>CURRENTLY UNKNOWN PHYSICS</p><p>When electron loops oscillate through higher dimensions they can have fractional states between the available +0.5/-0.5 typically limited up to 1/12, or for example +0.5 - 1/12 total state. In this model, the spin states are greater than the 3 you mentioned. In addition, these fractional spin states are not permitted within the common 4 dimensions so the observation in 4 dimensions will always be limited to either +0.5 or -0.5. Spin state systems are greatly increased as well beyond the restriction to triplet states in 4 dimensions. This means from a 4 dimension perspective, when an electron temporarily gains or loses a fractional state, it "creates" or "destroys" a portion of the electron by angular momentum gain or loss. The statistical average of these gains and losses will always be +0.5 or -0.5 spin, therefore nothing is actually ever created or destroyed.</p><p></p><p>This is part of why the recrystallization phenomenon is unknown. The fractional state gained or lost by traveling is not seen in the resultant particle. It is mathematically hypothesized that the gain or loss is contributed to the brane connection dimensions, but the gain or loss does not affect the particle. </p><p></p><p>As our example: </p><p></p><p> Origin brane = 0.5</p><p></p><p> Transfer state = 0.5 + 1/12 --- OR ---</p><p> Transfer state = 0.5 - 1/12</p><p></p><p> Target brane = 0.5</p><p></p><p>If the fractional spin state is truly "absorbed" into the higher dimension for connection, we should see a distribution of the following, which we do not: </p><p> </p><p>Origin brane = 0.5</p><p></p><p> Transfer state = 0.5 + 1/12 --- OR ---</p><p> Transfer state = 0.5 - 1/12</p><p></p><p> Target brane = 0.5 --- OR ---</p><p> Target brane = 0.5 -1/12</p></blockquote><p></p>
[QUOTE="mthamson, post: 172752, member: 10291"] Certainly. Could you provide reference to the study that you are referring to? The below is an overview and I want to make sure I speak about the correct state level and that you are not speaking of triplet states of the system. CURRENTLY KNOWN PHYSICS Electrons in 4 dimensions carry 2 spin states (-0.5, + 0.5). Their configuration in these spin states create increasingly complex shells with increasing electron density. Shell systems can have a triplet states (-0.5, 0, +0.5) but this state in 3 dimensions is limited to the 2 spin states. CURRENTLY UNKNOWN PHYSICS When electron loops oscillate through higher dimensions they can have fractional states between the available +0.5/-0.5 typically limited up to 1/12, or for example +0.5 - 1/12 total state. In this model, the spin states are greater than the 3 you mentioned. In addition, these fractional spin states are not permitted within the common 4 dimensions so the observation in 4 dimensions will always be limited to either +0.5 or -0.5. Spin state systems are greatly increased as well beyond the restriction to triplet states in 4 dimensions. This means from a 4 dimension perspective, when an electron temporarily gains or loses a fractional state, it "creates" or "destroys" a portion of the electron by angular momentum gain or loss. The statistical average of these gains and losses will always be +0.5 or -0.5 spin, therefore nothing is actually ever created or destroyed. This is part of why the recrystallization phenomenon is unknown. The fractional state gained or lost by traveling is not seen in the resultant particle. It is mathematically hypothesized that the gain or loss is contributed to the brane connection dimensions, but the gain or loss does not affect the particle. As our example: Origin brane = 0.5 Transfer state = 0.5 + 1/12 --- OR --- Transfer state = 0.5 - 1/12 Target brane = 0.5 If the fractional spin state is truly "absorbed" into the higher dimension for connection, we should see a distribution of the following, which we do not: Origin brane = 0.5 Transfer state = 0.5 + 1/12 --- OR --- Transfer state = 0.5 - 1/12 Target brane = 0.5 --- OR --- Target brane = 0.5 -1/12 [/QUOTE]
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