Question of Centre- Point and Time

The starting points are:
Every object with mass has a defined extent.
Distance measurements are taken between centres.

Theorem 1:
The distance of an object from the centre of the universe is defined by its wavelength and is expressed (in terms of ->time) in the dimension of seconds.
Theorem 2:
The distance of an object from the centre of the universe cannot be changed by any uniform motion.
Theorem 3:
A change in mass or accelerated motion of an object changes its distance from the centre.

A logical extension of this idea leads to the realisation that isotropy cannot be absolute. Immediately following the first energy event in the universe (the Big Bang), every object resulting from it obeyed Principle 1, and was therefore displaced from the centre. Since, following the shrinking atom theory, we continue to assume that objects are shrinking, the information from this primordial event must have traversed the universe; and from the perspective of a shrinking object displaced from the centre, the universe cannot have been isotropic.
Consequently, isotropy applies approximately, but not absolutely.
At the beginning of the universe, within the first 10⁻⁴³ of a second, anisotropy was of great significance.

Clarification:
The points mentioned above are the fundamental prerequisite for the existence of meaningful time. Only in a universe in which the first event can be detected by the subsequent objects arising from it can a temporal interval be measured. To put it vividly, this first interval contains the first tick of the clock. Without the first event being detected by a subsequent object, there is no detection of time, and therefore no time in the universe. Time is directly and exclusively linked to events. Time can only be expected in a universe in which the objects it contains become smaller over time, since only here can an event bear witness to itself for its descendants, that is, for the events that follow it. Furthermore, one’s own location must necessarily occupy the (relative) centre, taking into account Theorem 1.
The concept of time is therefore essentially a concept of events.

#Double-slit experiment with a single object

The double-slit experiment involving a single object leads to the realisation that a single object (e.g. an electron) interferes with itself.
Since, from its subjective perspective, the observed object ‘E’ does not move away from its position near the centre of the universe, but rather the configuration of all other objects around ‘E’ changes, it is conceivable that, from ‘E’s’ perspective, the double-slit is approaching, even though we, as external observers, observe something fundamentally different. From this perspective, it is possible for ‘E’ to pass through both slits. Interference of a particle with itself thus becomes plausible.