Maxwell's Equations: A Serious Flaw: Difference between revisions
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{{Infobox paper | {{Infobox paper | ||
| title = Maxwell | | title = Maxwell's Equations: A Serious Flaw | ||
| url = [http://www.naturalphilosophy.org/pdf/abstracts/abstracts_2377.pdf Link to paper] | | url = [http://www.naturalphilosophy.org/pdf/abstracts/abstracts_2377.pdf Link to paper] | ||
| author = [[Joseph F Cuny]] | | author = [[Joseph F Cuny]] | ||
| keywords = [[maxwell equations]] | | keywords = [[maxwell equations]] | ||
| published = 2009 | | published = 2009 | ||
| num_pages = 3 | | num_pages = 3 | ||
}} | }} | ||
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==Abstract== | ==Abstract== | ||
Comparison of Maxwell | Comparison of Maxwell's Equations with Faraday's work (the foundation of Maxwell) shows the equations do not describe electromagnetic waves; they only describe the associated field intensities. By contrast, Faraday's work shows that an electromagnetic wave is a sequence of magnetically coupled photons where each photon is formed of a double loop (a figure eight) electric field with a magnetic field coating or sheath. The photons interact with and travel on Faraday's electric fields that permeate otherwise "empty space". The physical size of a given photon depends on its energy and its interaction with the electric fields in the local environment. In addition, due to the magnetic sheath a photon can exchange energy with various atoms/ions. Finally there is a brief discussion of a critical difference between physical and mathematical waves, a difference known to many students but apparently forgotten by most scientists. | ||
[[Category:Scientific Paper|maxwell s equations flaw]] | [[Category:Scientific Paper|maxwell s equations flaw]] | ||
[[Category:Electromagnetism]] | |||
Latest revision as of 13:54, 22 July 2026
| Scientific Paper | |
|---|---|
| Title | Maxwell's Equations: A Serious Flaw |
| Read in full | Link to paper |
| Author(s) | Joseph F Cuny |
| Keywords | maxwell equations |
| Published | 2009 |
| No. of pages | 3 |
Read the full paper here
Abstract
Comparison of Maxwell's Equations with Faraday's work (the foundation of Maxwell) shows the equations do not describe electromagnetic waves; they only describe the associated field intensities. By contrast, Faraday's work shows that an electromagnetic wave is a sequence of magnetically coupled photons where each photon is formed of a double loop (a figure eight) electric field with a magnetic field coating or sheath. The photons interact with and travel on Faraday's electric fields that permeate otherwise "empty space". The physical size of a given photon depends on its energy and its interaction with the electric fields in the local environment. In addition, due to the magnetic sheath a photon can exchange energy with various atoms/ions. Finally there is a brief discussion of a critical difference between physical and mathematical waves, a difference known to many students but apparently forgotten by most scientists.