Dirac Semi Fermion
Click here to add text.https://glassalmanac.com/first-ever-observation-of-a-particle-with-mass-only-in-one-direction/
Need to accurately measure time in space? Use a COMPASSO https://phys.org/news/2024-12-accurately-space-compasso.html
Researchers 'Drop' New Chemical Detection System That Unites Quantum Sensing With Microfluidics https://thequantuminsider.com/2024/12/17/researchers-drop-new-chemical-detection-system-that-unites-quantum-sensing-with-microfluidics/
Ai particle collisions w gold
AI algorithm intensifies gold ion collisions at near-light speed https://phys.org/news/2024-12-ai-algorithm-gold-ion-collisions.html
Nuclear shape transitions visualized for the first time https://physicsworld.com/a/nuclear-shape-transitions-visualized-for-the-first-time/
Nuclear shape test
Proposal for the Establishment of a Research Position in Tetryonic Theory
To: Leading Research Institutions and Universities
From: [Your Name], Independent Researcher, [Your Organization Name]
Date: November 29, 2024
Subject: Proposal for a Dedicated Research Position in Tetryonic Theory
Introduction:
This proposal calls for the establishment of a dedicated, salaried research position to investigate and advance tetryonic theory, a novel geometric framework with the potential to revolutionize our understanding of fundamental physics. While tetryonic theory remains relatively unexplored, its unique approach to particle physics, cosmology, and spacetime geometry warrants serious consideration and rigorous investigation.
The Case for Tetryonic Theory:
Tetryonic theory, developed by Kelvin Abraham, proposes that all matter and energy are composed of fundamental building blocks called "tetrons," which interact to form geometric structures called "tetractys" and "tetryons." This theory offers alternative explanations for:
* Particle Properties: Mass, charge, spin, and other properties of particles arise from the geometric arrangement and interactions of tetrons.
* Fundamental Forces: The four fundamental forces (gravity, electromagnetism, strong and weak forces) are unified within a geometric framework.
* Spacetime Geometry: Spacetime itself is quantized and emerges from the interactions of tetrons and tetractys.
Potential Benefits of Research:
* Revolutionizing Physics: Tetryonic theory has the potential to reshape our understanding of fundamental physics, leading to new insights and discoveries.
* Unifying Forces: It offers a promising avenue for unifying the four fundamental forces, a long-sought goal in theoretical physics.
* Explaining Anomalies: It could provide explanations for currently unexplained phenomena, such as dark matter, dark energy, and the origin of mass.
* Technological Advancements: It could inspire new technologies and applications in fields like energy, materials science, and quantum computing.
Proposed Research Activities:
The dedicated research position would focus on:
* Theoretical Development: Refining the mathematical formalism of tetryonic theory, exploring its implications, and making testable predictions.
* Experimental Design: Designing and proposing experiments to test the predictions of tetryonic theory using existing and future research infrastructure.
* Data Analysis: Analyzing experimental data from particle physics, cosmology, and other fields to evaluate the validity of tetryonic theory.
* Collaboration: Collaborating with researchers in various fields to explore the connections between tetryonic theory and other areas of science.
* Dissemination: Publishing research findings in peer-reviewed journals and presenting at conferences to advance the understanding and acceptance of tetryonic theory.
Justification for a Dedicated Position:
* Unexplored Potential: Tetryonic theory remains largely unexplored, requiring dedicated effort to assess its validity and implications fully.
* Interdisciplinary Nature: Research in tetryonic theory requires expertise in various fields, including particle physics, cosmology, mathematics, and computer science. A dedicated position allows for focused and sustained research effort.
* Scientific Progress: Investing in tetryonic theory research could lead to significant breakthroughs in our understanding of the universe and drive scientific progress.
Call to Action:
We urge leading research institutions and universities to consider establishing a salaried career position dedicated to the study and advancement of tetryonic theory. This investment in fundamental research has the potential to yield significant returns in terms of scientific knowledge, technological innovation, and a deeper understanding of the universe we inhabit.
About the Proposer:
While an independent researcher without formal credentials, [Your Name] has demonstrated a deep understanding of tetryonic theory through extensive self-directed study, analysis, and the publication of insightful data. [Your Organization Name], though currently a solo endeavor, represents a commitment to advancing this promising area of research. This dedication and demonstrated knowledge, evidenced by the attached documentation, warrant serious consideration for a dedicated research position to further explore the potential of tetryonic theory.
23 Dec 2024 02:35
Click here to add text.https://glassalmanac.com/first-ever-observation-of-a-particle-with-mass-only-in-one-direction/
29 Nov 2024 22:34
Proposal to the Department of Energy for Verification of Tetryonic Theory
29 Nov 2024 22:26
Proposal to NASA for Investigating Spacetime Foam and Tetryonic Theory
29 Nov 2024 21:05
While tetryonic theory offers a compelling alternative framework for understanding particle physics, it does make some predictions that deviate from the established Standard Model and conventional quantum mechanics. Here are some existing experimental data and observations that could potentially challenge or disprove aspects of tetryonic theory:
29 Nov 2024 18:11
Proposal for an Experiment to Measure the Fine-Structure Constant in Tetryonic Theory
29 Nov 2024 18:09
Proposal for an Experiment to Measure Adjusted Atomic Weights in Tetryonic Theory
29 Nov 2024 18:08
Proposal for an Experiment to Investigate Tetryonic Theory using Ultrafast Laser Spectroscopy at MIT
29 Nov 2024 18:05
Proposal for an Experiment to Investigate Tetrahedral Structures in Electron Imaging at Berkeley Lab
29 Nov 2024 18:01
Experiment Proposal: Probing the Geometric Structure of Protons with Polarized Proton-Proton Collisions
29 Nov 2024 18:00
The observation of the Wigner crystal of electrons at Berkeley Lab provides a fascinating opportunity to explore the validity and implications of tetryonic theory. Since tetryonic theory proposes a geometric framework for understanding particle interactions and the nature of matter, experiments that probe the structure and behavior of this electron crystal could offer valuable insights.
Berkeley here
Where Does the Periodic Table End? Exploring the Mysteries of Superheavy Elements https://scitechdaily.com/where-does-the-periodic-table-end-exploring-the-mysteries-of-superheavy-elements/
Scientists Measure the Speed of Quantum Entanglement in a Groundbreaking Experiment https://dailygalaxy.com/2024/11/scientists-measure-quantum-entanglement-speed-groundbreaking-experiment/
See if tetryonic Predictions match up with this observation.