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Fundemental particles of time. As particles of various aspects of space exist primarily in space and follow a timeline throughout their existence, temporons exist primarily in the time-probability-multiversal space, following a infinite amount of set courses through its given space.

The movement of temporons through space creates a temporal field and implies temporal potential energy provides momentum to the time phenomenon. Gravitons interact weakly at most, as gravitational potential energy is not impacted by either space nor time and thusly not impacted by a temporal energy field.

Temporons were created during the Big Bang and brought the time phenomenon to space as they accelerated outwards. The speed of time is therefore not constant across space, and potentially the acceleration of time is non-zero creating the temporal field gradient. Studies of this phenomenon to this point have not deduced a scale on which a temporal field gradient might be measured, but it is assumed that the scale is greater than a Planck length.

Its importance in the GSOT is #10.

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