Examples of using General relativity in English and their translations into Swedish
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Than does string theory. better unites quantum mechanics with general relativity.
And gravity, which is best described at present by general relativity.
This is the most precise test of general relativity outside the Milky Way to date.
General relativity differs from classical mechanics in a number of predictions concerning orbiting bodies.
A principal premise of general relativity is that spacetime can be modeled as a 4-dimensional Lorentzian manifold of signature(3,
Over long periods of time, the dynamics are complicated by general relativity, dark energy,
Under extreme conditions, general relativity and quantum theory allow time to behave like another dimension of space.
So classical four-dimensional general relativity combined with the nuclear forces can explain the relative abundances of all known elements in the universe.
A principal basis of general relativity is that spacetime can be modeled as a 4-dimensional Lorentzian manifold of signature(3, 1) or, equivalently,(1, 3).
General relativity can be understood by examining its similarities with
so on, and general relativity.
we will soon be able to combine general relativity and quantum theory.
My main research interests are general relativity and kinetic theory. In particular I am interested in global properties of solutions of the Einstein-Vlasov system.
Most advanced textbooks on general relativity contain a description of these properties,
That class was the first place that I learned about the paradoxes between quantum mechanics and general relativity.
About Håkan Andreasson My main research interests are general relativity and kinetic theory. In particular I am interested in global properties of solutions of the Einstein-Vlasov system.
Einstein's general relativity predicts that really heavy objects that move will send"waves" in space-time,
According to general relativity, objects in a gravitational field behave similarly to objects within an accelerating enclosure.
And general relativity. The two great pillars of physics are quantum theory, particles, electrons and so on, the laws that govern the very small.
these observations cannot distinguish between general relativity and other theories in which the equivalence principle is valid.