Physical Reality and a Deterministic Structure of Strings
- Stephen Sharma

- Feb 5
- 2 min read
Motivating a lot of nuclear and particle physics is the current many body quantum theory and phase shift scattering analysis usually presented in Dirac notation. Let’s take a step back and before we delve too far down into physics and quantum, we should understand the nature of determinstic philosophy and the physical-mental-mathematical world that has built the quantum interpretation. What this means is that our ideas of causality and the dynamism of matter filled space are Pythagorean, Euclidean, and Cartesian. The structures are built from spacetime and further developed by Einstein as relativity both general and special. Essentially, the nature of things as observed in our philosophy is determined to run along geodesics, equations of motion, and grid like strings nested in the physical-mental-mathematical world. There is a take home message and it is that we have to expand our understanding of physics to connectionist and affine topological interpretations. Move away from DeCartes and move toward Weyl. The expressions of nuclear science, in a similar fashion, must develop around the hybrid physical variable picture, fuel cycle, plasma, cryogenics, thermal hydraulics, steam cycle, CODAC, etc. Even financial and engineering construction terms have to be added to the grand canonical summation. This systems engineering approach is non-traditional yet it harkens back to the last thirty years of string theory analysis of multiple dimensions. Here it starts.
String theory was developed to solve for the strong force unification problem. Aside from Yang-Mills, string geodesic landscapes and the totality of action in the Lagrangians engender a polynomial-ism or a Fourier decomposition into basis waves. The analysis is Gaussian in that the spread in uncertainty is dependent on commutation relations modifying field axioms. Let’s get real. String theory posits more dimensions. These might be curled up like fractal or fractional dimensional curves within the Planck scale. Larger systems resonate with frequencies corresponding to harmonics of fundamental Planck-Wheeler coordinate spaces. In essence, the string is the physicalism of the physical-mental-mathematical world combination. Again, we have to formulate a calculus that inflates, evolves, moves, and corresponds to a physical universe. The abstraction of calculus, dimension, Cauchy residues, Fourier analysis, quantum transformations, and computer logic eventually (and more things too) decompose into a physicalism once more.
If this is too confusing, then we have to get back to the increased dimensions, the string landscape, and the affine topology. What we describe is a summation of states that are isomorphic in their overarching grand unification. The isomorphism between variables in nuclear, thermodynamics and engineering resemble the spectrum of states of the quantum numbers. Effectively, mathematics describes the states, the connections, and the spacetime. It is just that the mathematics must involve a physical variable meta-analysis (inflation, observation, uncertainty) that adds to the dimensions of realism.





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