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The gravitational potential for a moving observer, the perihelionshift of Mercury, and photon deflection

机译:移动的观察者的引力,水星的近日点偏移和光子偏转

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Acceptance of Einstein's second postulate, combined with the Principle of Equivalence, requires the introduction of space-time curvature in the presence of massive objects. In this paper, it has been demonstrated that the radiation continuum model (RCM) of light results in a modification to Newton's static gravitational potential. Applying this modified potential to the case of Mercury's anomalous perihelion advance accounts for the entire 43" per century, and provides a form equivalent to that of GRT. Thus, this model will work equally well for any system to which it is applied, all without resorting to the space-time curvature of GRT. The same potential, applied to the problem of a solar grazing photon, gives a solution identical in form and content to that of GRT as well. Such results lead to the conclusion that these effects are not attributable to massive objects curving space-time
机译:接受爱因斯坦的第二个假设并结合等效原理,需要在存在大物体的情况下引入时空曲率。在本文中,已证明光的辐射连续体模型(RCM)导致牛顿静态引力的修正。将这种改进的潜力应用于水星异常近日点推进的情况下,可以解释每世纪整个43英寸的情况,并提供了与GRT相当的形式。因此,该模型对于任何应用了它的系统都将同样有效,而无需借助GRT的时空曲率,将相同的电势应用于太阳掠射光子问题,可提供与GRT形式和内容相同的解决方案,这些结果得出的结论是,这些效应并非归因于大型物体弯曲时空

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