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,Application of Sof ‘Fair Trial’ Safeguards,m law to law, there is a common characteristic shared by most of them: they are all derivable from a principle of stationary action. Let us begin by examining this principle in the context of the oldest established laws of physics: the laws of motion. We consider the simple example of a point partic
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,Natur als Produkt und Produktivität,the gravitational effects near (and within) a massive object. The idea here is that the presence of a massive object in a bounded region of space generates non-Euclidean effects of spacetime geometry which die out as we go away from the object. Thus, far away from the object the spacetime is that of
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Themenhefte Schwerpunktprogramm Umweltuniverse on the basis of astronomical observations which cover very distant regions, of the order of billions of light years (1 light year = distance travelled by light in one year ≅ 9.460 × 10. cm). This picture suggests that although local inhomogeneities like stars, galaxies, and clusters of gala
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Nicolas Guéguen,Sébastien Meineris to describe quantum field theory in the curved spacetime of general relativity. The discussions of the early universe in Chapter 9 and 10 showed how the dynamics of the universe can be affected by such events as particle creation and phase transition. These discussions took us very close to the si
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Karl Marx — Natur und Werttheorie geometrodynamics. In the present chapter we shall first examine how . can be formulated with the help of Feynman’s path integral formalism. The sketchy survey of other approaches to quantum gravity in the previous chapter will have convinced the reader that the problem is not simple, whatever means
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