Comprehensive Dataset for the \anh Initialization Framework: Geometric Core Validation across 300+ Entities (Subatomic to Galactic Scales)
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This dataset provides the foundational empirical evidence for the \anh (Anadihilo) Initialization Framework, containing over 300 observational entries spanning 32 orders of magnitude—from subatomic particles to galactic bulges. The data validates the existence of a universal geometric blueprint governed by two primary systemic multipliers derived from the Axiom of Normalization (\anh + n = 0_U) and the Universal Grid Constant (i = 0.0001): The Compressive Factor (\Phi_\mu = 0.8): Governs nuclear bounds, subatomic particles, and extreme gravity states. Specifically for the 118 periodic elements, this factor successfully defines exact geometric core boundaries within their quantum probability clouds, bridging standard probability models with precise structural geometry. The Expansion Factor (\Phi_G = 1.25): Governs macro-scale stabilization and exact physical boundaries (e.g., stellar cores, planetary bodies, and galactic bulges). The dataset proves the Unitary Symmetry Law (0.8 \times 1.25 = 1.0), demonstrating that space is a discrete informational grid and mass is an emergent systemic friction, not an intrinsic property. Crucially, no curve-fitting techniques were applied. All calculations rely on pure mathematical geometric derivations compared 1:1 against officially recognized standard limits from NASA, CODATA, and IAU. Files included in this repository: Anadihilo_118_Elements_Complete_Names.csv: Atomic radii (probability cloud boundaries) and calculated exact \anh core limits for all 118 elements. Anadihilo_Subatomic_Particles_Analysis.csv: Geometric structural limits of protons, neutrons, quarks, and bosons. Anadihilo_Galaxy_BlackHole_Analysis.csv: Validation of the 1.25 expansion factor across major galaxies (Milky Way, Andromeda, M87) and hyper-vortices. Anadihilo_High_Accuracy_Match.csv: Physical core radius match data for major solar system bodies, exoplanets, and primary stars. Anadihilo_Universal_Fixed_100_Objects.csv: Mass stability and Schwarzschild boundary tests for planetary and stellar bodies. For full theoretical derivations, please refer to the associated Anadihilo research papers (anadihilo.org).
本数据集为Anadihilo初始化框架(Anadihilo Initialization Framework)提供了奠基性的实证依据,共包含超300条观测条目,覆盖32个数量级的尺度范围——从亚原子粒子至星系核球。 该数据验证了普适几何蓝图的存在性,该蓝图由两个核心系统性乘数所支配,二者分别源自归一化公理(anh + n = 0_U)与普适网格常数(i = 0.0001): 压缩因子(Phi_mu = 0.8):支配核束缚态、亚原子粒子与极端引力状态。针对118种周期表元素,该因子可精准定义其量子概率云内的精确几何核心边界,将标准概率模型与精确结构几何相衔接。 膨胀因子(Phi_G = 1.25):支配宏观尺度的稳定性与精确物理边界(例如恒星核心、行星天体与星系核球)。 本数据集证实了幺正对称定律(0.8 × 1.25 = 1.0),表明空间是离散的信息网格,而质量是涌现的系统性摩擦效应,并非内禀属性。尤为关键的是,本研究未采用任何曲线拟合技术,所有计算均基于纯数学几何推导,并与NASA、CODATA及IAU官方认可的标准限值进行1:1比对验证。 本仓库包含以下文件: Anadihilo_118_Elements_Complete_Names.csv:包含118种元素的原子半径(量子概率云边界)与计算得到的精确anh核心限值。 Anadihilo_Subatomic_Particles_Analysis.csv:质子、中子、夸克与玻色子的几何结构限值分析数据。 Anadihilo_Galaxy_BlackHole_Analysis.csv:针对主要星系(银河系、仙女座星系、M87星系)及超旋涡的1.25膨胀因子验证数据。 Anadihilo_High_Accuracy_Match.csv:主要太阳系天体、系外行星与主恒星的物理核心半径匹配数据。 Anadihilo_Universal_Fixed_100_Objects.csv:行星与恒星天体的质量稳定性及史瓦西边界测试数据。 如需完整理论推导,请参阅关联的Anadihilo研究论文(anadihilo.org)。



