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ELECTROMAGNETISM EXPLAINED BY THE THEORY OF INFORMATONS

机译:信息论解释的电磁学

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The phenomenon that material bodies can influence one another "at a distance" provokes the idea that they, in one way or another, must exchange data about their presence in spacetime. In an earlier article we have developed this idea to explain the gravito-electromagnetic description of gravitation. Now we will do the same in order to explain electromagnetism: we will show that the electromagnetic phenomena and interactions can be understood by the hypothesis that "information" is the substance of electromagnetic fields. The constituent element of that substance is called an "informaton". The theory starts from the idea that any material object manifests itself in space by the emission - at a rate proportional to its rest mass - of informatons: granular mass and energy less entities rushing away with the speed of light and carrying - in addition to gravitational information -information about the electrical status of their emitter: about its charge and position ("e-information) and about its velocity ("b-information"). In this article the electromagnetic field at a point is characterized as the macroscopic manifestation of the presence of a cloud of informatons near that point. Maxwell's laws are mathematically deduced from the kinematics of the informatons. The electromagnetic interactions are explained as the effect of the tendency of an electrically charged object to accelerate in order to become blind for flows of e-information generated by other charged objects and photons are identified as informatons carrying a quantum of energy, which allows us to understand the dual nature of light.
机译:物质体可以“远距离”相互影响的现象引发了这样一种观念,即它们必须以一种或另一种方式交换时空中存在的数据。在较早的文章中,我们已经提出了这个想法,以解释重力的重力电磁描述。现在,我们将做同样的事情来解释电磁:我们将证明“信息”是电磁场的实质,可以理解电磁现象和相互作用。该物质的组成元素称为“信息”。该理论的出发点是,任何物质都通过信息的发射(以与其静止质量成比例的速率)在太空中显现出来:除了引力之外,颗粒质量和能量较少的实体会以光速和携带的速度冲走有关其发射器电状态的信息:有关其电荷和位置(“ e信息”)以及有关其速度(“ b信息”)的信息在本文中,某一点的电磁场被表征为电磁场的宏观表现。在该点附近存在信息云。麦克斯韦定律是从信息运动学中数学推导得到的;电磁相互作用被解释为带电物体加速趋势的影响,从而对e的流动变得盲目-其他带电物体和光子产生的信息被识别为携带能量量子的信息,这使我们能够理解光的双重性质。

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