F-1—F-14
Ontology of time
R⋆R is a physical algebra of time, beyond its role as a mathematical model.
OPEN_PHYSICAL_HYPOTHESISFundamentality
PN.2 is more fundamental than Robertson–Heisenberg or noise–disturbance relations.
OPEN_PHYSICAL_HYPOTHESISPN.2 ⇒ PN.1
Quantum uncertainty follows from the associator through a representation ρ.
OPEN_PHYSICAL_HYPOTHESISCalibration of ħ
A physically justified regime ‖K‖∼ħ exists with the correct units and coefficient.
OPEN_PHYSICAL_HYPOTHESISInduced commutator
After representation, [x,y]_z:=K(x,y,z) defines an admissible operator commutator.
OPEN_PHYSICAL_HYPOTHESISSeven-component time
Seven R⋆R objects form an internal multicomponent structure of time.
OPEN_PHYSICAL_HYPOTHESISFOS and V*P
FOS and the Time*Space model have an observable physical realization.
OPEN_PHYSICAL_HYPOTHESISTime-evolution operator
The hierarchy and operator T describe the physical passage of time.
OPEN_PHYSICAL_HYPOTHESISMonotonicity of complexity
A physically defined C(R) satisfies dC/dτ≥0.
OPEN_PHYSICAL_HYPOTHESISAssociator dynamics
∇_T K=J_T is a valid covariant field equation.
OPEN_PHYSICAL_HYPOTHESISEarly universe
The dynamics of K imply a testable early-cosmological regime.
OPEN_PHYSICAL_HYPOTHESISLocalization in matter
The associator is physically localized in matter and produces measurable effects.
OPEN_PHYSICAL_HYPOTHESISFinite observer branch
The structural nesting accessible to an observer is physically finite.
OPEN_PHYSICAL_HYPOTHESISGravity and cosmology
PN.2 yields testable corrections to general relativity, quantum theory or the dark sector.
OPEN_PHYSICAL_HYPOTHESIS