Physical hypotheses

F-1—F-14

All physical claims retain OPEN_PHYSICAL_HYPOTHESIS status.
F-1 · FOUNDATION

Ontology of time

R⋆R is a physical algebra of time, beyond its role as a mathematical model.

OPEN_PHYSICAL_HYPOTHESIS
F-2 · QUANTUM_BRIDGE

Fundamentality

PN.2 is more fundamental than Robertson–Heisenberg or noise–disturbance relations.

OPEN_PHYSICAL_HYPOTHESIS
F-3 · QUANTUM_BRIDGE

PN.2 ⇒ PN.1

Quantum uncertainty follows from the associator through a representation ρ.

OPEN_PHYSICAL_HYPOTHESIS
F-4 · QUANTUM_BRIDGE

Calibration of ħ

A physically justified regime ‖K‖∼ħ exists with the correct units and coefficient.

OPEN_PHYSICAL_HYPOTHESIS
F-5 · QUANTUM_BRIDGE

Induced commutator

After representation, [x,y]_z:=K(x,y,z) defines an admissible operator commutator.

OPEN_PHYSICAL_HYPOTHESIS
F-6 · TIME_GEOMETRY

Seven-component time

Seven R⋆R objects form an internal multicomponent structure of time.

OPEN_PHYSICAL_HYPOTHESIS
F-7 · TIME_GEOMETRY

FOS and V*P

FOS and the Time*Space model have an observable physical realization.

OPEN_PHYSICAL_HYPOTHESIS
F-8 · TIME_GEOMETRY

Time-evolution operator

The hierarchy and operator T describe the physical passage of time.

OPEN_PHYSICAL_HYPOTHESIS
F-9 · DYNAMICS

Monotonicity of complexity

A physically defined C(R) satisfies dC/dτ≥0.

OPEN_PHYSICAL_HYPOTHESIS
F-10 · DYNAMICS

Associator dynamics

∇_T K=J_T is a valid covariant field equation.

OPEN_PHYSICAL_HYPOTHESIS
F-11 · COSMOLOGY

Early universe

The dynamics of K imply a testable early-cosmological regime.

OPEN_PHYSICAL_HYPOTHESIS
F-12 · DYNAMICS

Localization in matter

The associator is physically localized in matter and produces measurable effects.

OPEN_PHYSICAL_HYPOTHESIS
F-13 · FOUNDATION

Finite observer branch

The structural nesting accessible to an observer is physically finite.

OPEN_PHYSICAL_HYPOTHESIS
F-14 · COSMOLOGY

Gravity and cosmology

PN.2 yields testable corrections to general relativity, quantum theory or the dark sector.

OPEN_PHYSICAL_HYPOTHESIS