Myroslav Stalnyi
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myroslavstalnyi.bsky.social
Myroslav Stalnyi
@myroslavstalnyi.bsky.social
Independent researcher in mathematical physics.
Generative Triangle T: a common recursive basis for causality, emergent spacetime, spin-like structure, stable patterns, mass and gravity.
Preprint: doi.org/10.5281/zenodo.22158676
Gravity in Generative Triangle T is not a primary field. A localized stable structure leaves the causal cone unchanged but redistributes the stable continuations compatible with another structure; attraction is the resulting sectoral deficit within the same causal domain.
#Gravity
October 7, 2026 at 12:50 PM
In Generative Triangle T, combinatorial mass is defined only after a stable particle-like macroclass exists. It quantifies the multiplicity of stable microhistorical realizations compatible with that same macrostructure, rather than adding mass as an independent input.
#MathematicalPhysics
October 4, 2026 at 9:57 AM
In the binary case, Generative Triangle T yields an exact two-state half-integer internal structure from the generative organization itself. Pauli algebra, spinor representations and the Dirac equation are not required to obtain that structure.
#QuantumFoundations
October 3, 2026 at 9:51 AM
In Generative Triangle T, deterministic law does not imply predetermined macrohistory. The recursion fixes the admissible causal structure and stability criteria, but not which stable macroscopic structures must occur or in what sequence.
#FoundationsOfPhysics
September 30, 2026 at 10:24 AM
A particle-like object in Generative Triangle T is not a primitive point. It is a macroclass satisfying recursive stability, causal localization, stable internal structure and asymptotic distinguishability. Particle-likeness is derived from those conditions, not postulated.
#MathematicalPhysics
September 30, 2026 at 10:24 AM
Generative Triangle T contains no primary random rule. Every fixed microhistory has a unique outcome; effective randomness appears only when many distinct deterministic microhistories become indistinguishable at finite macroscopic resolution.
#QuantumFoundations
September 28, 2026 at 6:58 AM
Generative Triangle T is a static causal block. Its temporal order is not added externally: the recursion itself generates an ordered hierarchy of disjoint levels and a strictly forward causal structure. For an internal observer, reading this order appears as the flow of time.
#FoundationsOfPhysics
September 26, 2026 at 7:15 AM
In Generative Triangle T, causality is not imposed on pre-existing events. It is the reachability relation generated by the recursion itself. The result is an oriented acyclic causal structure with exact cones and an internal propagation bound c=1.
#Causality #QuantumGravity
September 26, 2026 at 6:54 AM
In Generative Triangle T, the continuum is not fundamental. Each finite causal level carries an exact s-adic discrete spectrum; the continuous coordinate interval appears only as the closure of increasingly refined spectra. Geometry is therefore generated, not assumed.
September 8, 2026 at 8:06 AM
I have completed the development of Generative Triangle T, a discrete generative framework in which causal order, emergent spacetime, spin-1/2-like structure, stable particle-like patterns, combinatorial mass and gravity arise from one common recursive basis.

Manuscript: doi.org/10.5281/zeno...
Generative Triangle T: A Fundamental Discrete Generative Mathematical Structure Giving Rise to Causality, Spacetime, a Spin-1/2-Like Internal Structure, Stable Particle-Like Patterns, and Gravity as a...
This record contains the English preprint version of “Generative Triangle T”, a self-contained mathematical preprint introducing a discrete generative construction and studying the structures that ari...
doi.org
September 7, 2026 at 9:59 AM