APS Logo

Principle of Universal Antigravitation is Revealed Under the Guidance of Principle of Physics

POSTER

Abstract

Principle of Universal Antigravitation (PUA) is revealed under the guidance of the Past-Uncertainty/Future-Certainty Time-Complementary Duality Principle of Physics (POP) that first popped up in 1960 in the seminal Rudolf E. Kalman’s Optimum LQG Control scheme. Combined with Newton’s Principle of Universal Gravitation (PUG) a PUG/PUA time-complementary duality is uncovered expressing a PUA-PUG Theory for the aversion of gravitational collapse through centripetal forces exerted by PUA’s dissimilar cells based mass-quantums, named Gyradors in future-certainty motions with assigned symbol mGy and orbiting speed vGy, whose kinetic energies are fueled by also novel PUG’s DoF based energy-quantums, named Thermotes in past-uncertainty retention with assigned symbol eTh and surface pace ΠTh in secs per squared meter. The PUA-PUG Theory then leading to a quantum version of E = Mc2 given by the gyrador-thermote equation (GTE) eTh = mGyvGy2/2 that enables the discovery of efficient analysis and design solutions in: 1) Entropy Physics, with the discovery of a simple thermotes-based method for the finding of the entropy of flexible-phase mediums used as solvents in chemical reactions; 2) Industry, with methods already patented for controlling the temperature and/or lingerature of a chemical reaction without measuring temperature and/or lingerature; 3) Biophysics, with sensible lifespan predictions for organisms; 4) Astrophysics, with prediction of the observed Universe’s accelerated expansion; etc.

Publication: Convenience Note: The US Patents 11,998,884 (June 4, 2024) and 11,766,654 (Sept 26, 2023) that are directly connected to this abstract and the additional selected publications listed below ending with the seminal Kalman paper of 1960 (with three illuminating notes for the readers benefit also given for the last three references) may be conveniently found in the CUNY College of Staten Island Website www.csi.cuny.edu or in the author's personal website under construction http://feria.csi.cuny.edu.<br>1) Feria, E.H., (2024), "On the Principle of Universal Antigravitation", Leading Planned Nature Paper Soon to be Submitted<br>2) Feria, E.H., (2024), "Method for Controlling Lingerature of a Chemical Reaction", US Patent 11,998,884, June <br>3) Feria, E.H., (2023), "Method for Controlling Temperature of a Chemical Reaction", US Patent 11,766,654, September<br>4) Feria, E.H., (2020), "Emergent Principle of Physics yields Paradigm Shift in Physics Harmonious with Known Mass of Visible Universe but not Dark Matter", 235th Meeting of AAS, Galaxies (1st Among all Most Popular iPosters), Honolulu, Hawaii, USA, 4-8 Jan. <br>5) Feria, E.H., (2019), "First Principles of Linger-Thermo Theory, a Time-Complementary Duality in Physics, Inherently Lead to Average Mass of Star Particles and Organism Cells", 234th Meeting of AAS, Cosmology, St. Louis, Miss., USA, 9-13 June<br>6) Feria, E.H., (2016), "Linger-Thermal Theory: Simplifying the finding of the Entropy of Mediums with Applications that Span from Astrophysics to Human Lifespan", Proc. IEEE Int'l Conf. on Smart Cloud, Columbia University, New York, USA, 18 pages, doi: 10.1109/SmartCloud.2016.57.<br>7) Feria, E.H., (2014), "The Flexible Phase Entropy and its Rise from the Universal Cybernetics Duality", Proc. IEEE International Conference on Systems, Man, and Cybernetics (SMC), San Diego, CA, 8 pages.<br>8) Feria, E.H., (2014), "Maximizing the Efficiency and Affordability of High-Performance Radar", SPIE Newsroom, May, 3 pages (Invited article found in http://dx.doi.org/10.1117/2.1201407.005429); Feria, E. H., (2014), "Power Centroid Radar and its Rise from the Universal Cybernetics Duality", Proc. of SPIE, Vol. 9120 912007, 29 pages, May (Invited paper); Feria, E. H., (2018), "Power Centroid Radar", US Patents 7,773,032; 8,098,196; and 10,101,445 <br>9) Feria, E.H., (2011), "Latency-Information Theory: Novel Lingerdynamics Ectropies are Revealed as Time Duals of Thermodynamics Entropies", Proc. IEEE International Conference on Systems, Man, and Cybernetics (SMC), Anchorage, Alaska, 8 pages<br>10) Feria, E.H., (2009), "Latency-Information Theory: A Novel Latency Theory Revealed as Time Dual of Information Theory", IEEE Signal Processing Society: DSP Workshop and SPE Workshop, Marco Island, Florida, 4-7 January<br>11) Feria, E.H., (2008), "Latency-Information Theory and Applications: Part III, On the Discovery of the Space Dual of the Laws of Motion of Physics", Proc. of SPIE, vol. 6982, 16 pages<br> Note to the Reader: The integration of the discovered Stochastic Laws of Retention (SLR) for a blackhole derived in the above publication and the classical Deterministic Laws of Motion (DLM) for a vacuum form a novel and efficient DLM-SRL Theory that is ruled by a SLR/DLM Time-Complementary Duality. <br>12) Feria, E.H., (1985), "Matched Processors for Quantized Control: A Practical Parallel Processing Approach", International Journal of Controls, vol. 42, issue 3, pp. 695-713; Feria, E.H., (1981), Matched Processors for Optimum Control, Ph.D. Dissertation, CUNY Graduate Center <br> Note to the Reader: The integration of the discovered Deterministic Matched Processors (DMP) method for quantized control offered in the above publications and the classical Stochastic Matched Filters (SMF) method for state detections of digital communication systems form a novel and efficient DMP-SMF theory that is ruled by a SMF/DMP Time-Complementary Duality. <br>13) Kalman, R.E., (l960), "A New Approach to Linear Filtering and Prediction Problems", Journal of Basic Engineering, 82: 35 <br> Note to the Reader: In the above seminal Kalman's Linear Quadratic Gaussian (LQG) Control paper for the control of discrete-time systems a past-uncertainty/future-certainty time-complementary duality solution popped up made of a Stochastic Kalman Filter (SKF) for past and present state estimations and a Deterministic Control Law (DCL) for future non-quantized control. This was indeed an unexpected result since exactly the same result would have been generated if we had assumed that future state disturbances and state noise will NOT occur, which is never the case. In 1978 this suprising and strictly optimum LQG control result was viewed by the author as advancing a novel and efficient DCL-SKF Theory that was ruled by a SKF/DCL time-complementary duality that conveyed a hidden Principle of Physics (POP) that could be used to guide in a maximally efficient and affordable way the analysis and design of complex general systems such as those found in Gravitational Physics which in this paper leads to a novel and efficient PUA-PUG Theory that is ruled by a PUG/PUA Time-Complementary Duality.

Presenters

  • Erlan H Feria

    CUNY College of Staten Island

Authors

  • Erlan H Feria

    CUNY College of Staten Island