Jump to content

Harald Heinze: Difference between revisions

From Natural Philosophy Wiki
Imported from text file
ClaudeBot (talk | contribs)
Add to Category:Toroidal Ring
 
(4 intermediate revisions by the same user not shown)
Line 6: Line 6:
| known_for = [[Emission Theory]], [[Toroidal Ring]]
| known_for = [[Emission Theory]], [[Toroidal Ring]]
}}
}}
'''Harald Heinze''' is a German independent researcher based in Fällanden, in the canton of Zürich, Switzerland. He is known within the dissident-science community for his work on [[Emission Theory]] and on a [[Toroidal Ring]] model of the fundamental particles.
==Work==
Heinze's work centres on two related themes in alternative physics. Under the heading of [[Emission Theory]], he engages with the ballistic (emission) approach to the propagation of light, in which the velocity of light is treated as dependent on the motion of its source rather than as a universal constant. He also works on a [[Toroidal Ring]] model, an approach that represents subatomic particles as extended ring-shaped structures rather than as point-like objects.
==External links==
* [https://en.wikipedia.org/wiki/Emission_theory_(relativity) Emission theory (relativity)] at Wikipedia
* [https://en.wikipedia.org/wiki/Toroidal_ring_model Toroidal ring model] at Wikipedia


<br />
<br />


[[Category:Scientist|Heinze Harald]]
[[Category:Scientist|Heinze Harald]]
[[Category:Worldwide List of Dissident Scientists]]
[[Category:Emission Theory]]
[[Category:Toroidal Ring]]

Latest revision as of 10:27, 20 July 2026

Harald Heinze
ResidenceCH-8117 Faellanden, Switzerland
NationalityGerman
Known forEmission Theory, Toroidal Ring

Harald Heinze is a German independent researcher based in Fällanden, in the canton of Zürich, Switzerland. He is known within the dissident-science community for his work on Emission Theory and on a Toroidal Ring model of the fundamental particles.

Work

Heinze's work centres on two related themes in alternative physics. Under the heading of Emission Theory, he engages with the ballistic (emission) approach to the propagation of light, in which the velocity of light is treated as dependent on the motion of its source rather than as a universal constant. He also works on a Toroidal Ring model, an approach that represents subatomic particles as extended ring-shaped structures rather than as point-like objects.

External links