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Einstein Field Equations And Heisenberg’s Principle Of Uncertainly The Consummation Of GTR And Uncertainty Principle

机译:Einstein场方程和Heisenberg的GTR不确定性原理和不确定性原理

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The?Einstein field equations?(EFE) or?Einstein's equations?are a set of 10?equations?in?Albert Einstein's?general theory of relativity, which describe the?fundamental interaction (e&eb)?of?gravitation?as a result of?spacetime?being?curved?by?matter?and?energy.?First published by Einstein in 1915?as a?tensor equation, the EFE equate spacetime?curvature?(expressed by the?Einstein tensor) with (=) the energy and?momentum tensor?within that spacetime (expressed by the?stress–energy tensor).Both space time curvature tensor and energy and momentum tensor is classified in to various groups based on which objects they are attributed to. It is to be noted that the total amount of energy and mass in the Universe is zero. But as is said in different context, it is like the Bank Credits and Debits, with the individual debits and Credits being conserved, holistically, the conservation and preservation of Debits and Credits occur, and manifest in the form of General Ledger. Transformations of energy also take place individually in the same form and if all such transformations are classified and written as a Transfer Scroll, it should tally with the total, universalistic transformation. This is a very important factor to be borne in mind. Like accounts are classifiable based on rate of interest, balance standing or the age, we can classify the factors and parameters in the Universe, be it age, interaction ability, mass, energy content. Even virtual particles could be classified based on the effects it produces. These aspects are of paramount importance in the study. When we write A+b+5, it means that we are adding A to B or B to A until we reach 5. Similarly, if we write A-B=0, it means we are taking away B from A and there may be time lag until we reach zero. There may also be cases in which instantaneous results are reached, which however do not affect the classification. By means of such a classification we obtain the values of Einstein Tensor and Momentum Energy Tensor, which are in fact the solutions to the Einstein’s Field Equation. Terms “e” and “eb” are used for better comprehension of the lay reader. It has no other attribution or ascription whatsoever in the context of the paper. For the sake of simplicity, we shall take the equality case of Heisenberg’s Principle Of Uncertainty for easy consolidation and consubstantiation process. The “greater than” case can be attended to in a similar manner, with the symbolof”greater than” incorporated in the paper series .
机译:爱因斯坦场方程(EFE)或爱因斯坦方程是阿尔伯特·爱因斯坦相对论一般理论中的一组10个方程,描述了引力的基本相互作用(e&eb)。 “时空被物质和能量弯曲”。爱因斯坦于1915年首次以张量方程形式发表了论文,EFE将时空曲率(由爱因斯坦张量表示)等于(=)能量时空曲率张量与能量和动量张量根据时空归因对象分为不同的组。要注意的是,宇宙中的能量和质量的总量为零。但是,正如在不同情况下所说的那样,就像银行的贷方和借方一样,个人的借方和贷方得到保护,从整体上讲,借方和贷方的保存和保存以总帐形式出现。能量的转换也以相同的形式单独发生,如果所有这些转换都被分类并写入了“转移卷轴”,则它应与总体的普遍转换相符。这是要记住的一个非常重要的因素。就像可以根据利率,资产负债状况或年龄来对帐户进行分类一样,我们可以对宇宙中的因素和参数进行分类,例如年龄,互动能力,质量,能量含量。甚至可以根据虚拟粒子产生的效果对其进行分类。这些方面在研究中至关重要。当我们写A + b + 5时,这意味着我们将A添加到B或将B添加到A,直到达到5。类似地,如果我们写AB = 0,则意味着我们要从A取走B,并且可能会有时间直到我们达到零为止。在某些情况下,可能会达到瞬时结果,但是不会影响分类。通过这种分类,我们获得了爱因斯坦张量和动量能张量的值,它们实际上是爱因斯坦场方程的解。术语“ e”和“ eb”用于更好地理解外行读者。在本文的上下文中,它没有任何其他归因或归属。为简单起见,我们将以海森堡的不确定性原则为例,以便进行合并和证实。可以用类似的方式处理“大于”案件,并在纸系列中加入“大于”符号。

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