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<blockquote data-quote="untiax" data-source="post: 203544" data-attributes="member: 12963"><p>Hello. Our colleague, Malesch, has insufficiently conveyed useful information from what we gather. The main reason for the lacking discovery of time travel within 1 universe is the assumption that massless particles move. Information moves and is restricted to approximately 'c' along particle channels. A photon, for example, appears to move at "c". However, this is just the present information about the photon as set by interaction or measurement. States must be conserved within a universe, i.e. the photon exists when observed or measured. The photon itself exists everywhere at once within its particle channel. Channel networks of various massless particles exist like this and create the interactive universe through various interactions with the Higgs field and states stored within the Higgs field (mass particles). If you could just of think of things in this manner you would be less confused by causality, such as the double slit experiments. </p><p></p><p>Another way this can be considered is massless particles in general have no causality dimensions and can therefore "experience" causality in any direction. All mass particles can be sent across channels when the causality dimensions are uncoupled. This retains the remaining state information which is reassembled when recoupled with causality dimensions. The energy required to uncouple/recouple is low, but the state information and reassembly information is complex. </p><p></p><p>Malesh was speaking primarily about uncoupling state information for specific travel, which is not useful in this discussion. </p><p></p><p>I hope this encourages some thoughts. We are open to any questions.</p><p></p><p>Also, please message us if Malesch has contacted you directly.</p></blockquote><p></p>
[QUOTE="untiax, post: 203544, member: 12963"] Hello. Our colleague, Malesch, has insufficiently conveyed useful information from what we gather. The main reason for the lacking discovery of time travel within 1 universe is the assumption that massless particles move. Information moves and is restricted to approximately 'c' along particle channels. A photon, for example, appears to move at "c". However, this is just the present information about the photon as set by interaction or measurement. States must be conserved within a universe, i.e. the photon exists when observed or measured. The photon itself exists everywhere at once within its particle channel. Channel networks of various massless particles exist like this and create the interactive universe through various interactions with the Higgs field and states stored within the Higgs field (mass particles). If you could just of think of things in this manner you would be less confused by causality, such as the double slit experiments. Another way this can be considered is massless particles in general have no causality dimensions and can therefore "experience" causality in any direction. All mass particles can be sent across channels when the causality dimensions are uncoupled. This retains the remaining state information which is reassembled when recoupled with causality dimensions. The energy required to uncouple/recouple is low, but the state information and reassembly information is complex. Malesh was speaking primarily about uncoupling state information for specific travel, which is not useful in this discussion. I hope this encourages some thoughts. We are open to any questions. Also, please message us if Malesch has contacted you directly. [/QUOTE]
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