Difference between revisions of "TFNR - Interactions"

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Interactions: from the interaction of these pure type of Structures composite particles arise, which form most of the particles that exist in nature or have been produced in colliders (hadrons: baryons, like protons and neutrons, and mesons, weak and strong nuclear bosons like gluons and W / Z particles).
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Direct expression of the Operator [[Relation]] at the level of the [[Structures of Information]], at all the levels of [[Complexity]], the Operator Interaction'''puts in relation the [[Structures of Propagation]], the [[Structures of Conservation]] and the related [[Events]]''' that characterize the [[Evolutionary Dynamics|Dynamics]] and the [[Evolution]] of the Structures of Information, creating [[Mixed Structures]]  and  more complex events.
 
Direct expression of the Operator [[Relation]] at the level of the [[Structures of Information]], at all the levels of [[Complexity]], the Operator Interaction'''puts in relation the [[Structures of Propagation]], the [[Structures of Conservation]] and the related [[Events]]''' that characterize the [[Evolutionary Dynamics|Dynamics]] and the [[Evolution]] of the Structures of Information, creating [[Mixed Structures]]  and  more complex events.
  

Revision as of 16:31, 10 April 2024

Interactions: from the interaction of these pure type of Structures composite particles arise, which form most of the particles that exist in nature or have been produced in colliders (hadrons: baryons, like protons and neutrons, and mesons, weak and strong nuclear bosons like gluons and W / Z particles).



Direct expression of the Operator Relation at the level of the Structures of Information, at all the levels of Complexity, the Operator Interactionputs in relation the Structures of Propagation, the Structures of Conservation and the related Events that characterize the Dynamics and the Evolution of the Structures of Information, creating Mixed Structures and more complex events.

In Physical Reality, it is the level at which the complex Derived Physical Forces manifest themselves. Foundation of any manifestation.


Physical Interactions

Direct expression of the Operator Relation in Physical Reality at the level of the Physical Structures of Information, at all the levels of Physical Complexity, the Operator Physical Interaction puts in relation the Physical Structures of Propagation (Waves), the Physical Structures of Conservation (Vortices) and the related Physical Events that characterize the Dynamics and the Evolution of the Physical Structures of Information, creating Mixed Physical Structures and more complex events.

In Physical Reality, it is the level at which the complex Derived Physical Forces manifest themselves. Foundation of any manifestation.


Operator Interaction

The Operator Interaction operates at the level of the Physical Structures of Information, which includes, at various levels of complexity, the elementary Structures (we define them as elementary as they appear unitary and non-divisible, even if they are infinitely large and complex with respect to the level of Elementary Events, which represents the causal and variational substrate; they represent the elementary bricks that build the Material Forms, Particles and Waves).

More in general, with respect to the whole Reality, the Physical and the Cognitive Reality, and so on, in a growing Complexity, Interaction puts in Relation more and more complex Structures, such as the cosmic Structures that populate the Universe, or the Immaterial Forms and the Cognitive Forms (for example, the ecological, social, political, economic structures, which represent some of the aspects of the organization of human groups), to name but a few.


Interactions represent composite Structures formed by the interaction among elementary Structures. This class comprehend almost all the Structures that form Physical Reality, the pure structures normally being organized in more complex aggregates. In this sense, we should classify as Interactions the composite and the complex vortices, above mentioned. In a narrow sense, this class includes:

  • the interactions between dark matter structures (gravitational waves and dark matter halos), forming more complex dark matter structures, like dark filaments or that weird structures we can observe in the case of galactic, or more likely, cluster collisions, with the appearance of gravitational shock waves and other complex dark forms,
  • interactions between ordinary matter structures (e. m. waves and ordinary matter vortices): bosons (gluons, heavy bosons, higgs boson, etc.).


Links to the tables of contents of TFNR Paper