首页> 外文期刊>Journal of Modern Physics >Electromagnetic Radiation Causes Weight Loss and Weight Destabilization of Objects with Presumed Elevated Levels of KELEA (Kinetic Energy Limiting Electrostatic Attraction), Relevance to Human Health and to Global Warming
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Electromagnetic Radiation Causes Weight Loss and Weight Destabilization of Objects with Presumed Elevated Levels of KELEA (Kinetic Energy Limiting Electrostatic Attraction), Relevance to Human Health and to Global Warming

机译:电磁辐射会导致物体的重量减轻和重量不稳定,其推定的KELEA(动能限制静电引力)水平升高,与人体健康和全球变暖相关

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A natural force has been proposed, which is required to prevent the fusion and disappearance of the discrete electrical charges that are present on electrostatically attached opposing electrical charges. This force may also explain the repulsion between objects with either matching positive or negative electrical charges. The energy of this force is referred to as KELEA (kinetic energy limiting electrostatic attraction). KELEA is especially attracted to dipolar compounds and to other materials with spatially separated opposite electrical charges. These compounds can be used to increase the level of KELEA in water. KELEA activated water can become an added source of KELEA for objects that are placed in close proximity to the water. It is generally held that the weight of an object is solely determined by its mass in relation to that of the earth. Yet, it was previously reported that the measured weight of certain KELEA attracting objects can undergo considerable variability over time. This observation is consistent with the concept that KELEA can contribute to the measured weight of certain objects. The present study strengthens this concept by demonstrating that the weight of cellulose containing materials, including paper, cotton fabrics, and wood, is increased if the materials are placed close to containers of KELEA activated water. It is further shown that electromagnetic radiation can significantly reduce the added weight of the KELEA exposed cellulose containing materials. Moreover, the previously added weight of the materials can be regained by replacing the materials back into the KELEA enhanced environment. It is proposed that the electrical charges that accompany electromagnetic radiation are able to competitively withdraw some of the KELEA from certain KELEA-enhanced objects. This effect can be reliably demonstrated using single sheets of writing paper, which are primarily composed of mechanically-bonded, branched cellulose fibers. There can be considerable fluctuations of the weight of the materials exposed to electromagnetic radiation after having been placed nearby to KELEA activated water. The weight instability is interpreted as being due to the electromagnetic radiation also triggering a dynamic process of rapid additions and removals of significant quantities of KELEA to and from objects. These observations are relevant to the further understanding of KELEA and to the potential health and climate consequences of manmade electromagnetic radiation causing a reduction in the environmental levels of KELEA.
机译:已经提出了自然力,这是必需的,以防止存在于静电附着的相反电荷上的离散电荷的融合和消失。此力还可以解释具有匹配的正电荷或负电荷的对象之间的排斥。该力的能量称为KELEA(限制动能的动能)。 KELEA特别被偶极化合物和其他具有空间分隔的相反电荷的材料所吸引。这些化合物可用于增加水中的KELEA含量。 KELEA活化水可以成为放置在紧邻水的物体的KELEA的附加来源。通常认为,物体的重量完全由其相对于地球的质量决定。但是,以前有报道说,某些吸引KELEA物体的重量可能会随时间变化。该观察结果与KELEA可以有助于某些物体的测量重量相一致。本研究通过证明含纤维素材料(包括纸,棉织物和木材)的重量会增加(如果将其放置在靠近KELEA活化水的容器附近),从而增强了这一概念。进一步表明,电磁辐射可以显着降低暴露于KELEA的含纤维素材料的重量。此外,可以通过将材料替换回KELEA增强环境中来恢复以前增加的材料重量。提出了伴随电磁辐射的电荷能够竞争性地从某些增强了KELEA的物体上撤出某些KELEA。使用单张书写纸可以可靠地证明这种效果,单张书写纸主要由机械粘合的支化纤维素纤维组成。将材料置于KELEA活化水附近后,暴露于电磁辐射的材料的重量可能会有很大的波动。重量不稳定性被解释为是由于电磁辐射还触发了动态过程,该过程会快速添加和移除大量KELEA到对象或从对象中移除。这些观察结果与对KELEA的进一步了解以及与导致KELEA环境水平降低的人造电磁辐射对健康和气候的潜在影响有关。

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