« QUARKS FLAVORS » A Geometric Interpretation in the CRVD Framework
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This paper presents a novel geometric formulation of quark flavor and hadronic states within the Clustered Resonance Volume Dynamics (CRVD) framework.Rejecting the Standard Model's treatment of flavors as arbitrary, fundamental point-like attributes, we model them as discrete levels of localized tension and stress-shell organization within an underlying, continuous $O$-field. The fundamental hadronic unit is characterized by an intertwined geometry consisting of an open peripheral geodesic and a closed central core. We show that the quark flavor sequence (u \to d \to s \to c \to b \to t) represents a step-like accumulation of bosonic potential shells around this core, governed by the interaction between stable local torsional stresses and passing O-field energy flows. The fractional electric charges (+2/3e and -1/3e ) emerge naturally as geometric branch resultants. We discuss the mechanisms of mass condensation, flavor limits, and beta decay, aligning the framework qualitatively with known hadronic phenomenology.



