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HGUT
Harrison Grand
Unified Theory
Current ResearchLorentz and Three-Speed Closure
05Active Development

Lorentz and Three-Speed Closure

Testing whether all observable matter, clocks, light, and propagation modes recover one operational relativistic causal structure.

Programme Overview

What This Research Is Doing

The HGUT parent theory contains transverse, longitudinal, and phase-related propagation sectors. This program determines whether those sectors unify, decouple, become gapped, remain hidden beneath experimental bounds, or produce falsifying Lorentz violations.

Immediate Milestone

Next Research Gate

Determine whether the scalar-longitudinal sector can be dynamically decoupled, gapped, confined, or unified with the protected transverse cone.

Active Objectives

Current Research Goals

1

Derive the complete mode spectrum.

2

Identify the observable coupling of every mode.

3

Recover a universal operational causal cone.

4

Establish clock and rod transformations.

5

Derive relativistic particle dispersion.

6

Protect operational relativity from Sea-Time observability.

7

Compare all predicted deviations with precision tests.

Evidence Trail

What Has Been Established So Far

This ledger records the mathematical, computational, conceptual, and numerical work already completed within this programme.

The transverse speed c_T has been identified.

The longitudinal and phase-related sectors have been derived.

A slow and a stiff mixed branch have been identified.

The background-stability condition has been established.

Simple stiffness has been shown not to equal physical suppression.

A conditional single-cone theorem has been formulated.

Sea Time and operational clock time have been structurally distinguished.

Shared Mathematical Foundation

This programme works from the HGUT field equations.

The master Lagrangian and baseline displacement, phase, interaction, and conservation equations are already established. The work on this page concerns solving, validating, extending, and testing their consequences in this specific physical sector.

Active Research

Follow, test, or challenge the programme.

Successful derivations, failed simulations, replications, corrections, and falsifying evidence all belong in the evidence trail.