Trajectories of RNA Virus Mutation Hidden by Evolutionary Alternate Reality Thermodynamic Endpoints in Transformations in Response to Abiotic Habitat Stresses

Farida Hanna Campbell
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Abstract

Viruses ensure the vital redistribution of nutrients to maintain sustainability in an ecosystem. This includes repair and survival, growth and evolution thanks to the efficient nutrient recycling and infectious rates of viruses throughout a stressed-ecosystem. If evolution in space–time can be defined by multiple planes which change position according to the evolution rate of the habitat, then the locations and volumes of returning chronic infectious viruses will appear in a logical predictable fashion based on the lissajous trajectory based on thermodynamic modeling.
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RNA病毒的突变轨迹隐藏在进化交替现实的热力学端点中,以响应非生物栖息地的压力
病毒确保了至关重要的营养物质再分配,以维持生态系统的可持续性。这包括修复和生存、生长和进化,这要归功于整个压力生态系统中有效的营养循环和病毒的传染性。如果时空进化可以由多个平面来定义,这些平面根据栖息地的进化速率变化位置,那么基于热力学建模的lissajous轨迹,返回的慢性传染性病毒的位置和体积将以逻辑可预测的方式出现。
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