[General] Nature of Light and Particles - Request

John Duffield johnduffield at btconnect.com
Wed Apr 1 07:50:42 PDT 2015


Chip:

It is interesting, isn’t it? Here’s another one:

With a small correction factor Δ related to binding energy, we can say this:



    = 1.60218  × 10-19 Coulombs                                     




ε0 = 8.854187817 x 10-12



4π = 12.56637061



c3 = 26.94400241 x 1024



With no correction for binding energy we can calculate electron charge as: 



√(ε0/4πc3) = √(8.854187817 × 10-12 / 338.5883200×1024)  =  √(2.6150304 × 10-38)  = 1.61710 × 10-19 



This is within 1% of the measured value of 1.60218 × 10-19 Coulombs. 


Regards
John D


From: Chip Akins 
Sent: Wednesday, April 01, 2015 2:56 PM
To: 'Nature of Light and Particles - General Discussion' 
Subject: Re: [General] Nature of Light and Particles - Request

Hi John D

 

Interesting stuff about Planck’s constant.

 

2.42631 × 10-12 m is the physical wavelength of the confined photon in my electron model.

 

Chip

 

 

From: General [mailto:general-bounces+chipakins=gmail.com at lists.natureoflightandparticles.org] On Behalf Of John Duffield
Sent: Wednesday, April 01, 2015 3:43 AM
To: Nature of Light and Particles - General Discussion
Subject: Re: [General] Nature of Light and Particles - Request

 

John:

 

The paper looks interesting. If you wish I’ll get back to you on it properly at a later date. Meanwhile take a look at http://arxiv.org/abs/gr-qc/9610066 and at http://discovery.ucl.ac.uk/19084/ by a medical doctor called Andrew Worsley. He talks about “harmonic quintessence”, and stuff like this:

 

Planck units are based on the properties of space. The Planck length is 1.616199×10−35 metres. It’s defined using the speed of light, Planck’s constant of action h, and the gravitational constant G. It can be written (using the reduced Planck’s constant) as ℓP=√(ћG/c³). We can replace √(ћG) with 4πn where n is a suitable value with appropriate dimensionality. The expression 4πn/√c³ still yields the Planck length. But if we now set n to the value 1 whilst retaining its dimensionality, then with a very small correction factor δ related to binding energy, the result is a different length. It is however familiar:  

 

 = 2.42631 × 10-12 metres                

 

 

Regards

John D

 

 

From: Vivian Robinson 

Sent: Wednesday, April 01, 2015 2:49 AM

To: Nature of Light and Particles - General Discussion 

Subject: Re: [General] Nature of Light and Particles - Request

 

John, 

 

You are in. I look forward to receiving your contributions to the structure of photons and electrons.

 

Cheers,

 

Vivian Robinson

 

On 01/04/2015, at 9:26 AM, "chandra" <chandra at phys.uconn.edu> wrote:





  Welcome, John M.!

  I am glad to see that you are “on board” finally!

  Please, feel free to read up the “archived” discussions and present your views using brief quotations to remind the readers the connection to the earlier discussions.

  Chandra.

   

  Michael: Please, send out the instructions as to how to access the archived discussions.

   

  From: General [mailto:general-bounces+chandra=phys.uconn.edu at lists.natureoflightandparticles.org] On Behalf Of John Macken
  Sent: Wednesday, March 25, 2015 12:25 PM
  To: general at lists.natureoflightandparticles.org
  Subject: [General] Nature of Light and Particles - Request

   

  Hello,

   

  I would like to join the Nature of Light and Particles - General Discussion Group.  I am John Macken and I presented a paper titled “Spacetime-based model of EM radiation” at the Nature of Light V conference in 2013.  I have also submitted an abstract to make another presentation at the 2015 conference. 

   

  I am very interested models of the internal structure of an electron and other particles.  I have a paper that will be published next month which deals with particles, fields and forces. A preprint is available at:

  http://onlyspacetime.com/QM-Foundation.pdf    

   

  I believe that I can make significant contributions to your discussion group. 

   

  Sincerely,

   

   

  John Macken

   

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