Re: The electron and the photon.



On 11 juin, 12:25, socratus <israel...@xxxxxxxxxxxx> wrote:
Andre Michaud wrote:

1.
In other words, I ended up with an exponential equation that
resolves into 3 forms which cover the whole spectrum of
electromagnetic particles velocities, 1) electron at rest,
2) electron (with relativistic mass) at any velocity up to
asymptotic c and 3) photons energy always moving at c.

Also fully derived and explained in the book.
2.
Actually, the model is complete and self consistent,
providing answers to all these questions within the
model.

=========..
My questions are:
1.
The constant a ( fine structure constant )
has strong influence on electron's behavior.
By Feynman's expression , which he said with humour,
this quantity is
" by the god given damnation to all physicists ".
Which part does a (fine structure constant )
take in your electron's theory ?

It does play a major part.

Feynman being of the Copenhagen school of thought
he obviously could only be mystified by the fine structure
constant, since its understanding requires that localization
of elementary particles be accepted as physical reality.

In the background of all calculations of localized
energy, lies the requirement to set a lower limit
of integration for the total complement of energy
of an elementary particle to be calculated with
a precision in sync with observation.

This is a mathematical artifact that I try to
explain at the beginning of the following paper,
if you are interested, as it mandatorily involves
the alpha constant.

http://pages.globetrotter.net/srp/discrete_electromagnetic_fields.pdf

It is further justified in defining the maximum velocity of
energy as c within particles during transverse LC
oscillation.

2.
There are many different D spaces in the math/physicists,
works
Are there limit of these D spaces?
Maybe 123D space is the last and final space ?

I think there are as many opinions on this as there
are people giving thought to the issue.

My own opinion is that since the more immediately
obvious 123D option (either parabolic, flat or hyperbolic)
did not allow, despite all efforts, reconciling the various
theories, then there is need to try something else.

Analyzing Maxwell's theory, which fundamentally
describes an electromagnetic event as spherically
expanding outwards in 123D space after having
come into being, the wavefront of which can be
dealt with at any point of its surface by means of
plane wave treatment, it seemed to me, in light of
the quantum nature of energy emission (photons)
that there was ground to possibly consider the
option of not letting the initial EM event to
spherically expand but to try to account for
the electromagnetic properties while the
initial EM event remained localized as it
moved away from its source.

This immedialy led to the need for a
space geometry involving three distinct
and mutually orthogonal spaces, the
only configuration that allowed defining
a dynamic structure of EM particles that
preserved all known EM characteristics.

Much too complex to explain in a few
sentences, but this is the foundation
of my model.

Regards

André Michaud

.



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