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A Trajectory Density Formula for the Double-Slit Interference Pattern: Source Temperature, Coherence, and a New Energy-Dependent Visibility Prediction
A Trajectory Density Formula for the Double-Slit Interference Pattern: Source Temperature, Coherence, and a New Energy-Dependent Visibility Prediction
The 3D Energy Relation, Neutrinos, and Temperature in the Trit Framework
The 3D Energy Relation, Neutrinos, and Temperature in the Trit Framework
X is Primary: General Relativity, Dynamical Dark Energy, and Three Cosmological Tensions as Limits of the Trit Master Tensor
X is Primary: General Relativity, Dynamical Dark Energy, and Three Cosmological Tensions as Limits of the Trit Master Tensor
Two Types of Gravity, Magnetic Genesis, and Black Hole Classification from the Trit Master Tensor
Two Types of Gravity, Magnetic Genesis, and Black Hole Classification from the Trit Master Tensor
X is Primary: Two Types of Gravity, Magnetic Genesis, Black Hole Classification, and the Cosmological Constant as Limits of the Trit Master Tensor
X is Primary: Two Types of Gravity, Magnetic Genesis, Black Hole Classification, and the Cosmological Constant as Limits of the Trit Master Tensor
Ξ One Field for All of Physics
Ξ One Field for All of Physics
The Wagon-Passenger Model: Special Relativity from Quantum Wavelength Geometry
The Wagon-Passenger Model: Special Relativity from Quantum Wavelength Geometry
Why Gravity is Weak and Why There is a Hierarchy: The Gravitational Coupling from S² Compact Geometry and Resolution of the Hierarchy Problem from Trit Winding Numbers
Why Gravity is Weak and Why There is a Hierarchy: The Gravitational Coupling from S² Compact Geometry and Resolution of the Hierarchy Problem from Trit Winding Numbers
Non-Abelian Gauge Theory, the Higgs Mechanism, Quark Confinement, and Asymptotic Freedom from Trit Compact Phase Geometry
Non-Abelian Gauge Theory, the Higgs Mechanism, Quark Confinement, and Asymptotic Freedom from Trit Compact Phase Geometry
Quantum Gravity from the Trit: The Graviton as Spin-2 Compact Phase, the Equivalence Principle, and Finiteness from T³ Discreteness
Quantum Gravity from the Trit: The Graviton as Spin-2 Compact Phase, the Equivalence Principle, and Finiteness from T³ Discreteness
Quantum Mechanics as Compact Phase Dynamics: Derivation from the Trit Axiom
Quantum Mechanics as Compact Phase Dynamics: Derivation from the Trit Axiom
The Schottky Uniformisation of the Trit Flavour Manifold: Period Matrix, CKM Corrections, and the Solar Mass Splitting
The Schottky Uniformisation of the Trit Flavour Manifold: Period Matrix, CKM Corrections, and the Solar Mass Splitting
The Strong CP Problem Resolved: θ_{eff} = 0 from T³ Geometry, No Axion, and d_n < 5 × 10^{-30} e·cm
The Strong CP Problem Resolved: θ_{eff} = 0 from T³ Geometry, No Axion, and d_n < 5 × 10^{-30} e·cm
Eight Angles, One Mass: Independent Convergence on M_{LQ} = 1200 GeV and M_{W_R} = 1403 GeV
Eight Angles, One Mass: Independent Convergence on M_{LQ} = 1200 GeV and M_{W_R} = 1403 GeV
Six Parameter-Free Predictions from {-1,0,+1}: A Comparison with the Particle Data Group
Six Parameter-Free Predictions from {-1,0,+1}: A Comparison with the Particle Data Group
We present six predictions of the Trit framework [1] that can be verified against existing Particle Data Group data without waiting for any new experimental result. The framework derives all Standard Model parameters from the axiom T = {-1,0,+1} with no free inputs. The six quantities compared are: the fine structure constant α, the reactor mixing angle sin²θ_{13}, the solar mixing angle sin²θ_{12}, the W boson mass M_W, the CP violation measure J_{CP} (Jarlskog invariant), and the ratio of PMNS to CKM CP phases δ_{PMNS}/δ_{CKM}. The derivation chain for each quantity is explicit and traceable to the axiom. The six errors range from 0.000% to 2.2%. The probability that an incorrect theory produces all six predictions within their stated accuracy by coincidence is less than 1 in 300 million. No new particles need to be discovered to evaluate these predictions.
Friedmann Equations from the 0Σ Cosmological Model: Cavalieri's Theorem, FRW Scale Factor, and the Baryon Dilution Factor
Friedmann Equations from the 0Σ Cosmological Model: Cavalieri's Theorem, FRW Scale Factor, and the Baryon Dilution Factor
Baryogenesis from the Trit: The Jarlskog Invariant, X-Boson CP Decay, and η_B = 5.81×10⁻¹⁰ without Free Parameters
Baryogenesis from the Trit: The Jarlskog Invariant, X-Boson CP Decay, and η_B = 5.81×10⁻¹⁰ without Free Parameters
The Hubble Tension and the Trit Mirror Photon: ΔN_eff = 0.206 from Dark Radiation and H₀ = 69.0 km/s/Mpc
The Hubble Tension and the Trit Mirror Photon: ΔN_eff = 0.206 from Dark Radiation and H₀ = 69.0 km/s/Mpc
Derivation of the Standard Model, Nuclear Physics, Flavor Mixing, and New Particle Predictions from a Pre-Geometric Trit Law
Derivation of the Standard Model, Nuclear Physics, Flavor Mixing, and New Particle Predictions from a Pre-Geometric Trit Law
Universal Mass Scaling Via A Logarithmic Exponent
Universal Mass Scaling Via A Logarithmic Exponent
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