Understanding the Ultimate Structure of Matters and Some Scientific Doubts of Nature through Simple Hypotheses

B. Zong
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Abstract

There are numerous unanswered scientific doubts/phenomena in Nature which still perplex scientific researchers currently. To solve these puzzles, unveiling the ultimate structure of matters, which make up the Nature world, is essential. Here four hypotheses, namely the fundamental matter component (basic particle) and its property, construction process of the basic particles into other particles/matters, repulsion of particles of the same type, and direct relationship between matter and energy, are proposed. These simple hypotheses can well explain some natural phenomena, such as the existence of huge atom energy and various particles/matters of different properties, and conversion balance between matters and energy. Due to the existence of diverse infinite fine particles and repulsion of particles of the same types, matters and the Nature world are submerged in a sea of particles and there is not a real vacuum space (without any particle) in the Nature world. This in turn reveals Thermal Laws, the component of dark energy/matter, as well as a minimum temperature of ~3K that exists in the deep Universe. The suggested relationships between particles and/or matters also shed light on the mechanisms of interaction forces of same or different polarity particles, and intermedia of gravitational, electrical and magnetic fields.
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从简单的假设认识物质的终极结构和对自然的一些科学疑问
《自然》中有许多尚未解决的科学疑问/现象,目前仍困扰着科学研究人员。要解开这些谜题,揭开构成自然界的物质的终极结构至关重要。本文提出了基本物质成分(基本粒子)及其性质、基本粒子形成其他粒子/物质的过程、同类型粒子的斥力、物质与能量的直接关系等四个假设。这些简单的假设可以很好地解释一些自然现象,如巨大的原子能量和各种不同性质的粒子/物质的存在,以及物质与能量之间的转换平衡。由于各种无限细粒子的存在和同类型粒子的排斥,物质和自然界都淹没在粒子的海洋中,自然界中没有真正的真空空间(没有粒子)。这反过来揭示了热定律,暗能量/物质的组成部分,以及存在于宇宙深处的~3K的最低温度。粒子与物质之间的关系也揭示了相同或不同极性粒子相互作用的机制,以及引力场、电场和磁场的介质。
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