The Windever Unit

The Windever Unit is an almost unimagineably large amount of energy, enough to produce a whole universe. It does have a distinct value and it is not infinite in any way. Unlike the matter it will eventually produce which will allways vary in volume according to the state of the environment it is released into, the Windever Unit will always remain the same. It is measured in units of Joules but we are currently unable to quantify the value due to the fact that it was a unique item and it has already coallesced into matter some billions of years ago. The best we could do in terms of calculating it would be to obtain the value of the mass of the universe and calculate the value of the Windever Unit from that. The start of the creation of the Universe was caused by the introduction of 1 Windever Unit into a Time Vacuous Environment (TVE). At the point of the introduction, the TVE actually had no dimensions at all but it might be helpful to imagine the TVE as being infinitely small.The nature of the time vacuous state provides for it to expand at a particular speed in order to accomodate the matter produced by the introduction of energy into it. The rate at which it expands will dictate the overall mass of the matter produced by the reaction. In the case of our own universe, the TVE operated (and remains fixed) at 299 million metres per second

A. The rules, principles and laws of physics will apply at all times.

B. Though energy has to travel at a fixed speed of 299m metres per second, matter cannot.

C. Nothing can occur at a faster speed than 299m metres per second.

D. The relationship between time and energy is that time condenses energy into matter.

You can see from these considerations that for example, the energy condensing process will nesessitate a considerable reduction in speed. As the energy dissipates into time, it is doing so in the most efficient way, away from where it has come and towards where it is going which is at the perpendicular to the horizontal plane. We can deduce from this that the first particle of matter in the universe would have been created at the moment there were enough (??) joules available and that though the speed of the energy would have been 299m metres per second but, at the point of condensation, the matter would remain where it was and not be moving. This would have occured at about the time the boundary of time was approximately a foot away from the centre and the energy would have been about the size of a football. We can tell that at this time the universe would have been (1/928 millionth of a second old). Clearly, from this point forward, things were happening very quickly because for every (??) joules arriving, 1 particle of matter would be produced. In the next (1/928 millionth of a second) the universe would now be 2 foot wide and so on until when it was 1 complete second old, it would have been 299 million metres wide. All this matter created by the energy became compressed by the force of the energy behind it and as it did so, it became more dense. This matter very quickly would have gravitated towards other matter and at some point would present a very real obstacle to the energy behind it. A massive crust would have formed which would impede the energy, only allowing it through when the pressure became too much. Massive chunks 100's of miles wide would be thrown out in the display. The question is at what point in terms of distance did this occur. I use the figure of 299million metres because that is how big the boundary of the edge of space would have been after 1 second and the first second does seem to have some importance. However, the boundary of space would be the equivalent to the speed of light from the moment of creation to the end of the first second. The actual matter, as stated before, would not be travelling at the same speed so one has to guess in the abbsence of a calculation, where the boundary of the matter would be in relation to the boundary of space itself. All of this would have been controlled by a much more important factor anyway. There simply was too much energy within the Windever Unit to be exposed to the TVE for it coallesce at the same time, hence it took millions of years (cite sodium in water) and there no doubt is a formula to work out where the boundary would have naturally settled and this would provide a good estimation of the size of the event.It would have to take into account the vacuous quality of the TVE, the rate at which the energy condensed into matter and the ability of the matter created to impede the progress of the energy behind it. Once it had settled, I beleive it would have been quite stable in its size and that it would haver remained at approximately that size forn it's duration. The comparatively large peices ejected would have come away at different speeds but generaly in the same direction and would have joined together under gravity and even started revolving at this early stage. It is even possible that large conglomerations of matter would have had temporary satellites orbiting them as the progressed away from the singularity. These orbits and paths of the ejected matter would have become unstable as they effected each other on their journey

 

(discuss the plasma stage) (discuss the immediate nature of gravity at the boundary and the constant forces <the electro magnetic spectrum>)

Time: The vacuous envelope into which energy and events are sucked..