Quantised-Relativity Theory

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Quantised-Relativity Theory Quantised-Relativity Theory is a based upon a hypothetical model of the physical nature of the unive

QRT is an hypothetical model of the nature of things, which we derive by employing viable arguments to some facts and subjects that concerns quantum theory. the goal here is to simplify the aforementioned subjects in simple terms, language, and logic to the better understanding of all, and to achieve at the end of the day a generally and logically accepted theory that will improve our human perception of the universe and our very existence.

Here it's possible to go to the past and the future but it is not done in reverse or forward order it's done in loop ord...
23/05/2020

Here it's possible to go to the past and the future but it is not done in reverse or forward order it's done in loop order. Here, many seconds, minutes, hours, days or years might have past before you hit that dimension of your grandfather's existence (reality). If you go there, you're real. If you kill him, your savage. If you come back your going there becomes an illusion. You just kill an innocent young man! During your quest to understand the universe 😭.
Your coming back too becomes an illusion to your former travel, because you might have travelled to the future to get here (now)

04/10/2019

T1 = xt2 – xt1/∆xt :: ref.

∆xt = xt1–xt0 .................... i
Tn = xty > xtn/∆xt ............. ii
∆T = T2 – T1 ..................... iii

::

The quanta, or discreet properties of matter at all indivisible state, is hereby denoted as ∆xt following the law that all discrete matter at it's Quantised state has a position and time, and exist relative to a frame of reference which precedes it. Therefore if a thing must exist it must have a reference frame even before it is been observed. The references frame must take the value of xt0(unobserved position and time).
an observed event, being the first frame of reference at a Quantised state will be xt1
denoting ∆x = xt1 – xt0.
Then a complete event being observed must comprise of a change in the existence of one observed event, which therefore is denoted as T1 = xt2 – xt1/∆xt.
Where, ∆xt = xt1–xt0 (constant)
All observed matter .·. is;
Tn = xty > xtn/∆xt.

e.g,
T1 = xt2 – xt1
T2 = xt3 – xt2
T3 = xt4 – xt3
Tn...

Next '∆T'

   missed this👆 Quantised-Relativity Theory For us to practically progress here we must first, neglect the Nature of thi...
03/10/2019

missed this
👆


Quantised-Relativity Theory



For us to practically progress here we must first, neglect the Nature of things and prove the Nature of our observational capability. Which brings us towards these deductions.

#1. Relativity/Time is a measure of how we observe things existing.

#2. Existence cannot be limited to our Perception but we (our observation) can be limited to our Perception.

#3. Therefore, for us to assert that only those things we see, feel, hear or smell do exist, we must first put our observation elements to test.

#4. Everything we humans do perceive are being interpreted in our mind. And nothing being observed or significant due to observation, exists outside the mind.

#5. Therefore, we can progress by saying, that there is a Time difference between the Time of receiving an information and the Time of interpretation. This can be seen as a quantised phenomenon.

#6. We can say with clarity that the interpretation of a thing is the function of the mind. But we can't say wether the information being received by our senses are independent of the mind.

#7. The reality is; the materials of our senses may be the mediums where informations passes through but the very function of reception, the ability to receive an information is certainly a function of the mind.

#8. Following these premise, it is logical for us to say that the time difference between that which Is observed and that which Is interpreted, is the Time taken for the storage of that information in our mind. So the received information must be stored before our mind makes use (interpret it) so the stored Time is the received Time, And the interpretation Time is the Time we become aware of what is observed.

#9. Here our storage Time (received Time) is denoted as unobservation time.
xt0

#10. Our observation time is denoted as the difference between the unobserved time(storage Time) and the observed time (Time of interpretation). Following the formula:
∆xt= xt1–xt0

#11. ∆xt which denotes the relativity of all things proves that even our observational capability must have a reference point. And follow the law that that which is been observed must have an unobserved reference point.

👉 Coming next is test of the cartesian coordinate system and space dimension.

03/10/2019

Considering the reactions fromour last post. I've decided to elaborate on the first article so we can progress with a better understanding of the subject.

#1. For an event to exist it must have;
a position(x) and a
moment(t) of existence.
= x × t
Whereby you can't say a thing exists without having a time of existence.

#2. Universally, time is a relativity. All event must have a reference point preceding it. Same as the laws of relativity are the same among all frames of reference irrespective of the point of observation.
#4. All observed event must have a reference point hence denoted as an unobserved event.
#5. an unobserved event (xt0) is the unknown reference point to the observed event.
#6. An observed event is the known reference point between the observed event and the unobserved event(or unknown reference point) given as.
∆xt= xt1– xt0
In other words an event has occure at the time of observation before the observed event but it is unknown.
#7. Time is the relativity of events, which thus depends on what can be observationally related(significant) over what it's not.
T = xt2 – xt1/∆x
where ∆x is an insignificant time or time at an infinitesimally observed rate or the mediator of time itself.

We shall begin with these basics, at least for now, we will be guiding our thoughts through a thorough and complex sessions of this discuss. So each of these rules needs to be followed systematically.
We hope that when we broading our understanding of the Time T as having the properties of the known and the unknown, we can predict more precisely the state of existence of a thing.

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