The Changing Dynamics of a Universe in Transition

D. Koehler
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Abstract

It is shown in this paper that the distorted space model of matter can describe a universe transitioning between conception and an open-ended finality. We use the verbiage “distorted” to communicate the concept of “energetic-manifold-warping” and to distinguish “spatial-warping” from “classical matter-warping”, although the concept of “matter” is in fact, in the present “distorted-geometry” context, the “geometric distortion energy” of the spatial manifold itself without a classical “matter stress-energy source”. An energy conserving alternative to black-body radiation-emission structural-modeling is manifest as an energetically unstable Universe (an originally stable but subsequently collapsing state, followed by an explosive expansion, thereby exhibiting an energy-creation process of one day!). The energy transition dynamics are described for a spherical, gravitational, and electromagnetic, geometrically-based mimic of matter existing at quantitative measures of a size challenging observation, that is, at a calculated Universe (gravitational body) [Formula: see text] m and [Formula: see text] J. The Universe (electromagnetic body) radius is calculated [Formula: see text] m. We have modeled the structure with a composite, two-component, geometric-coupling_constant and initial structural conditions representing Friedmann’s critical density, [Formula: see text]_critical energy-density (8.898[Formula: see text] J/m3) for the gravitational energy-density and [Formula: see text]_electron (8.7[Formula: see text] J/m3) [Formula: see text] the [Formula: see text]_critical energy-density for the geometric-electromagnetic extremum; the geometric extrema are curvature and energy-density extrema. A collapsing initial-phase-1 state, posited as a Friedmann-defined, distorted-geometry (DG) configuration with two equal-energy species or energy-density states, transitions electromagnetically, via an intermediate “mediator or force carrier” state (a W-boson structure in beta-decay), to a final 3-component state (ala a mimic of the beta decay transition process).
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过渡中的宇宙的动态变化
本文证明了物质的扭曲空间模型可以描述一个从概念到开放式终局的过渡的宇宙。我们使用“扭曲”这个词来传达“能量流形扭曲”的概念,并区分“空间扭曲”与“经典物质扭曲”,尽管“物质”的概念实际上在当前的“扭曲几何”语境中是空间流形本身的“几何扭曲能量”,而没有经典的“物质应力-能量源”。一种替代黑体辐射发射结构模型的节能方法被证明是一个能量不稳定的宇宙(最初稳定但随后崩溃的状态,随后是爆炸性膨胀,从而显示出一天的能量创造过程!)。能量转换动力学描述了一个球形的、引力的、电磁的、基于几何的模拟物质存在于一个具有挑战性的观测大小的定量测量中,即在一个计算的宇宙(引力体)中[公式:见文]m和[公式:见文]j。宇宙(电磁体)半径计算[公式:m.我们用复合的、双分量的、几何耦合常数和初始结构条件来模拟结构,表示弗里德曼的临界密度,[公式:见文]临界能量密度(8.898[公式:见文]J/m3)表示重力能量密度,[公式:见文]电子(8.7[公式:见文]J/m3)[公式:见文]几何电磁极值的临界能量密度;几何极值是曲率和能量密度极值。坍塌的初始第一相状态,假设为弗里德曼定义的,具有两个等能种或能量密度态的扭曲几何(DG)构型,通过中间的“介质或力载体”状态(β衰变中的w -玻色子结构)以电磁方式过渡到最终的3组分状态(模拟β衰变过渡过程)。
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来源期刊
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0.00%
发文量
18
审稿时长
3 weeks
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