From: JT on
The photon having being rubberband sinus wave with polarity shaped as
a circle which makin it bouncy but as it pass the magnetic fields of
the universal voids it stretch out taking on polarity in the ends, and
finally get caught by matter stretching it out and clogging it with
other strings.

Where it will rest until tension so big that it will be released
again.

JT
From: JT on
On 19 mar, 06:23, JT <jonas.thornv...(a)hotmail.com> wrote:
> The photon having being rubberband sinus wave with polarity shaped as
> a circle which makin it bouncy but as it pass the magnetic fields of
> the universal voids it stretch out taking on polarity in the ends, and
> finally get caught by matter stretching it out and clogging it with
> other strings.
>
> Where it will rest until tension so big that it will be released
> again.
>
> JT

The scifi photon is a slinky attached with both ends. When it cross
the electromagnetic medium of the universe it stretch out intertwining
itself and gain polarity at full stretch out it has so strong magnetic
polarity that it can not escape and bounce from a surface. Instead it
clogg up like glued strings making the surface and mass of elementar
particles.

So how many photons have to clogg up to make a elementar particle,
only Einstein now.

Hehehehe that sound like new wave drivel, we are all light.

So at the normal restlength of circled slinky you have a photon and as
the wave lenght strech out it lose the ability to bounce other photons
and clogg up to create elementar particles. So we have of course a
steady rate of photons low energy photons stretched out and clogging
up on earth we gain mass.

JT
From: Sam Wormley on
On 3/19/10 1:41 AM, JT wrote:
> The scifi photon is a slinky attached with both ends. When it cross
> the electromagnetic medium of the universe it stretch out intertwining
> itself and gain polarity at full stretch out it has so strong magnetic
> polarity that it can not escape and bounce from a surface. Instead it
> clogg up like glued strings making the surface and mass of elementar
> particles.

ILLUCID