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McFarland Unified Cyclic Existence Framework

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Zenodo2026-04-12 更新2026-05-26 收录
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This document introduces MUCEFMoE v4, a compact cosmological framework that derives the principal observables of the universe — including the CMB temperature, the Hubble parameter across epochs, the BAO scale, the observable radius, and redshift limits — from directly measured quantities associated with the universe. The model operates with effectively zero adjustable parameters. At its core is a single dimensionless master parameter that governs the evolution of temperature, expansion rate, time dilation, and redshift through the migration of matter and energy between regions of the system. A central relation unifies the Hubble constant and temperature, demonstrating that apparent discrepancies in H₀ measurements reflect sampling of different epochs rather than any fundamental conflict.The framework reframes the observable universe as a finite, self-contained, cyclic system whose distant observations consist primarily of photonic records of its own past states. This perspective naturally accounts for a wide range of observed phenomena without invoking undiscovered particle species or exponential early-universe expansion phases. The model emphasizes strict physical finitude, rejecting true infinities and absolute zeros as ontological realities, and treats fluctuations as an intrinsic protective feature of existence.A detailed precision table computes observables across hundreds of incremental steps, enabling bidirectional mapping between any single measured quantity and the full set of cosmological predictions. Quantitative comparisons with supernova datasets, high-redshift temperature measurements, and large-scale structure features are included, along with explicit falsification criteria.This private Zenodo deposit establishes priority for the MUCEFMoE v4 framework as of April 12, 2026. All theoretical content, concepts, and derivations remain the original intellectual property of James Michael McFarland "Mickey" and MECAWAKEN LLC. © 2026. Unauthorized reproduction or commercial use is prohibited.

本文介绍了MUCEFMoE v4——一种紧凑宇宙学框架,其基于宇宙的直接可测量量,推演出宇宙的核心可观测物理量:包括宇宙微波背景(Cosmic Microwave Background, CMB)温度、不同宇宙纪元的哈勃参数、重子声学振荡(Baryon Acoustic Oscillations, BAO)尺度、可观测半径以及红移极限。该模型本质上无可调参数,其核心仅设一个无量纲主参数,该参数通过系统各区域间的物质与能量迁移,支配温度、宇宙膨胀速率、时间膨胀以及红移的演化进程。一条核心关系式统一了哈勃常数与温度,表明H₀测量值间的表观差异实则源于对不同宇宙纪元的采样,而非理论层面的本质冲突。该框架将可观测宇宙重新界定为有限、自洽且循环的系统,其遥远观测结果本质上是自身过往状态的光子记录。这一视角无需引入未被发现的粒子种类或早期宇宙指数膨胀阶段,便可自然解释诸多观测现象。该模型秉持严格的物理有限性原则,摒弃将绝对无穷与绝对零值视为本体论实在的观点,并将涨落视作存在的内在保护性特征。配套的高精度详细表格可通过数百个递进步长计算各类可观测物理量,实现任意单一可测量量与全套宇宙学预言间的双向映射。文中还包含了与超新星数据集、高红移温度测量结果以及大尺度结构特征的定量对比,并给出了明确的证伪标准。本私有Zenodo存档于2026年4月12日确立了MUCEFMoE v4框架的优先权属。所有理论内容、概念与推导均为詹姆斯·迈克尔·麦克法兰(昵称“米奇”)与MECAWAKEN LLC的原创知识产权。© 2026。未经授权的复制或商业使用均属禁止行为。

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2026-04-12
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