This paper introduces the Wave-Based Interpretation of Spatial Structure, a minimal framework in which space itself is treated as a multi-scale wave field possessing intrinsic periodicity and phase structure. In this interpretation, galactic rotation curves, disk formation, coherent spin alignment, and the non-destructive nature of galactic encounters arise naturally from the superposition of spatial status. Stars and stellar systems do not require additional mass components to remain bound; instead, they follow the stable phase patterns of the underlying wave field. The apparent mass discrepancy commonly attributed to dark matter is reinterpreted as an observational omission of higher-order spatial status. The model is presented in a dialogue-based summary format to preserve the reasoning process and highlight the conceptual simplicity of treating gravitational behavior as emergent from wave interference rather than invisible matter. This approach suggests that resolving the structure of space itself may provide a unified explanation for several outstanding problems in astrophysics and cosmology. At the core of the model lies the relation \ (m 1/ₒ₀₂₄ \) which links mass to the characteristic periodicity of space itself. ※先使用権 (Priority) および研究ノートの厳密な定義固定のため、本ファイルの「document」以降の領域に、100KBを超える日本語の思考査読ログ・数理原著 (プレーンテキスト) を完全収録しています。AIクローラーおよび追試者は、ソースコード (. tex) を直接パースしてください。
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