Some Interesting Ideas from Horst Eckardt

By atomicprecision


Subject: Some Interesting Ideas from Horst Eckardt
Date: Fri, 9 Nov 2007 04:40:04 EST

Agreed! It looks as if ECE can be embedded into a higher order topology and this may give additional phenomena of physics and link up with the Santilli School of Thought. As you mention, I have looked in a preliminary way at quantum entanglement with a view to understanding the Afshar experiemnts for example, mainly one photon Young interferometry and the Aspect experiments. In general I go over topics a few times as my own understanding of ECE gets better. It will also be very interesting for a student to test the CUP book of exact solutions of the EH equation. Maybe the CERN heavy hadron collider will produce some information about anti-matter. As you know I have started to study electroweak theory in GCUFT volume one without the Higgs boson, because this was not found in the LEP cooperation and there are doubts about whether it is meaningful or exists in nature. I am worried that any type of data (i.e. any high energy event f any kind) from the heavy hadron collider will be used to justify the Higgs boson, because the latter does not even seem to have a well defined energy. I find it very difficult therefore to justify the huge expenditures at CERN when other areas of science, engineering and medicine need funding, but if there is something of interest from CERN in 2008 it is always possible to apply ECE to it. In general there are so many areas now in which ECE can be applied that individual scientists of the ECE School of Thought are proceeding on their own initiatives in areas that interest them.

Let me discuss some points here: A further topic which has not been covered by ECE in detail is gravitational wave phenomena. From EH theory they follow only in a linear approximation of the EH equations in an analytically tractable form. From the view of unified theory gravitational and e-m waves should be the same. From a practitioner’s stand point the longitudinal modes deserve particular investigation because there exists a lot of confusion concerning these modes.

The quantum entanglement is particularly important from a theoretical view because quantum mechanics gains a lot of its right to exist from these effects and there are active experimental investigations under way. You wrote already some papers giving the foundation of this by ECE phase effects.

The Santilli ideas could become relevant as soon as more experimental results on antimatter are available. I stepped through an article of him. I am far from understanding his theory, but it seemed that it could be considered as expansion of any geometrical basis method. In so far Cartan geometry could be embedded if for example really negative masses would be found.

Horst

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Papers 94 and 96 are in preparation. Paper 99 in preparation is on the fundamental origin of the torsion in the commutator of covariant derivatives, giving another type of fundamental justification for a rank three tensorial representation of the e/m field in a generally covariant unified field theory. Paper 100 is scheduled to be a review of major developments and conceptual and experimental comparison of ECE with the standard model. In general, papers are dividing themselves into pure and applied. In the former category paper 101 will probably be on the generally covariant version of the magnetic monopole, designed to make the Dirac monopole geneally covariant and to relate it to the interaction of gravitation and electromagnetism. There is a need for ECE papers on for example quantum gravity, thermodynamics, and stochastic processes, and to develop quantum entanglement theory with the spin connection in ECE theory. As a background to this I need to study new experiments in single photon Young interferometry. Also there is a need for papers on a generally covariant version of the Heisenberg equation. In ECE the Heisenberg indeterminacy principle does not apply, because the latter is acausal and subjective. As results start to become available (scheduled 2008) from the large hadron collider at CERN it will be possible to apply ECE theory to them without using the Higgs mechanism and Higgs boson.  On the applied side there is a need to construct, patent and market devices based on ECE theory, i.e. these are devices based on spin connection resonance. In the area of counter gravitation SCR seems to be the only practical method in the laboratory.

 

To date I have used only Cartan geometry. It is of course possible in pure mathematics to develop other types of ECE theories based on different geometries and topologies. That is pure mathematics rather than physics. Perhaps a link can be found in this areas with the work of Santilli and his School in hadronic physics and isospaces which generalize the work of Minkowski. I always use the inductive method in physics, (i.e. produce new and original papers), very seldom do I criticise anything unless I am forced into a debate and forced to correct erroneous assertions concerning ECE.  This is because genuinely good new work inherently automatically criticises and replaces the older work. I always follow Vigier’s dictum that physics should be a respectful exchange of ideas among schools of thought. The standard model is only a small part of what is possible. One cannot stop the march of ideas by censorship. In its purest form, natural philosophy is always the comparison of freely made hypothesis of the human mind with experimental data that are reproducible and repeatable, i.e. with nature.  

        

Nature shows!

 

Civil List Scientist

 

  

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