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Reevaluating Nuclear Structure and Elemental Stability through MEFI Theory

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Zenodo2025-02-25 更新2026-05-26 收录
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Recent findings challenge the classical assumption of a perfectly spherical nucleus in lead-208 (208Pb), prompting a reconsideration of nuclear structure models. Traditional frameworks attribute nuclear deformation to shell interactions and energy states, but under the Modified Einstein Field Interaction (MEFI) Theory, nuclear shapes are influenced by compression fields, resonance interactions, and Delta Q (∆Q) fluctuations. This paper applies MEFI principles to analyze nuclear structure, fission/fusion efficiency, element stability, and cosmic-scale matter behavior through simulations. Our findings suggest that MEFI resonance fields influence atomic stability, energy production, and high-energy astrophysical events.

近期的研究发现对铅-208(lead-208,²⁰⁸Pb)的原子核完美球形经典假设提出了挑战,推动学界重新审视原子核结构模型。传统理论框架将原子核形变归因于壳层相互作用与能级状态,但在修正爱因斯坦场相互作用(Modified Einstein Field Interaction,MEFI)理论框架下,原子核形状受到压缩场、共振相互作用以及ΔQ(Delta Q)涨落的影响。本文基于MEFI原理,通过模拟分析原子核结构、裂变/聚变效率、元素稳定性以及宇宙尺度的物质行为。本研究结果表明,MEFI共振场会影响原子稳定性、能量产生过程以及高能天体物理事件。

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Zenodo
创建时间:
2025-02-24
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