In reply to Jürg Wyttenbach's message of Thu, 14 May 2020 01:23:28 +0200:
Hi,
[snip]
>AFAIK the spin angular momentum of a photon is h-bar.
>
>
>This is highly unlikely as in this case all photons should have the same
>angular momentum.
They do. (At least intrinsic angular momentum. Of course th
AFAIK the spin angular momentum of a photon is h-bar.
This is highly unlikely as in this case all photons should have the same
angular momentum.
The real question is: Is the total mass of a photon just its angular
momentum?
All EM mass needs a topological charge to constantly reproduce the
In reply to bobcook39...@hotmail.com's message of Wed, 13 May 2020 20:10:56
+:
Hi,
[snip]
>It is also widely considered that angular momentum (AM) is also quantized
>during physical system total energy transitions. Thus, if a system is
>deconstructed such as Andrew suggests happens when
:42 AM
To: VORTEX<mailto:vortex-l@eskimo.com>
Subject: Re: [Vo]:Electron Transition Atomic Mass Change Quantified
Terry,
Thank you for the link.
It is obvious that, if an excited atom emits a photon, it will become lighter.
The ground state is lighter than an excited state. This new tec
Terry,
Thank you for the link.
It is obvious that, if an excited atom emits a photon, it will become
lighter. The ground state is lighter than an excited state. This new
technique might somehow be able to distinguish the mass-loss to the nucleus
alone rather than to the atom (ion) as a whole. Suc
It's not Einsteins law it's Plank law combined with Poincarés Mass EM
mass energy relation.
See : https://en.wikipedia.org/wiki/Henri_Poincaré#Mass–energy_relation
The formula E=MC^2 has first been found by Poincaré!
J.W.
Am 09.05.20 um 19:33 schrieb Terry Blanton:
A new door to the quantu
Interesting. Mass-energy change at the atomic scale is usually ignored by
chemists and physicists because it is too small measure.
Now that such a small change can be measured perhaps it will lead to the
discovery/recognition of novel phenomena at the interface of chemical and
nuclear physics.
Harr
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