Примери за използване на Field equations на Английски и техните преводи на Български
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However, the scope of Einstein's Field Equations is the entire Universe!
The funny thing is when some physicists look for solutions to Einstein's Field Equations.
He found solutions to Einstein 's field equations in the absence of matter.
George Lemaître, a contemporary Belgian physicist, interpreted data from Hubble and others as evidence of an expanding universe,a possibility permitted by Einstein's recently published field equations of general relativity.
The solutions of the field equations are the components of the metric tensor of spacetime.
The mechanism I propose does not change Einstein's field equations," said Lombrizer.
The solutions of the field equations are the components of the metric tensor of spacetime.
Jeffrey also worked on general relativity andproduced exact solutions to Einstein 's field equations in certain special cases.
Actually, the first reason why Einstein's field equations are not correct from the point of view of physics lies in the answer to the question.
In the twist of irony, physicists reintroduce the cosmological constant in Einstein's field equations to take into account dark energy.
The second reason why Einstein's field equations are not correct from the point of view of physics refers to the fundamental physical constants.
In a twist of irony, physicists once again reintroduced the cosmological constant into Einstein's field equations to account for dark energy.
And the search for mathematical solutions of Einstein's field equations is only a demonstration of mathematical skills, but they have no physical interpretation.
In a twist of irony, physicists once again reintroduced the cosmological constant into Einstein's field equations to account for dark energy.
Therefore, the Einstein's field equations are not correct regarding the unchangeability of the units of measurement within the scope of the equations. .
However, there are two considerable reasons why Einstein's field equations are not correct from the point of view of physics.
Einstein discovered the field equations of general relativity, which relate the presence of matter and the curvature of spacetime and are named after him.
Let us make a brief analysis(description)of the modified form of Einstein's field equations(tensor record of these equations): .
Einstein's field equations for gravity and his mathematical solutions for black holes suggested a geometric interpretation that looked like two black holes connected by a throat or tunnel called an Einstein-Rosen bridge, more commonly known now as a wormhole.
Therefore, our conclusion about the Einstein's field equations is that they express only a great, genius“idea”!
Kaluza is remembered for this in Kaluza-Klein(named after the mathematician Oskar Klein) field theory,which involved field equations in five-dimensional space.
As a result of that“awareness” follows the logical conclusion that the field equations of the General relativity cannot be valid in the scope of the entire Universe.
The story of the cosmological constant begins more than a century ago when Einstein presented a set of equations, now known as Einstein field equations, which became the framework of his theory of general relativity.
In 1916, Karl Schwarzschild obtained the exact solution to Einstein's field equations for the gravitational field outside a non-rotating, spherically symmetric body with mass M{\displaystyle M}(see Schwarzschild metric).
Self-taught English electrical engineer, mathematician, and physicist who adapted complex numbers to the study of electrical circuits, invented mathematical techniques to the solution of differential equations, reformulated Maxwell's field equations in terms of electric and magnetic forces and energy flux, and independently co-formulated vector analysis.
In 1916, the Austrian physicist Ludwig Flamm,while looking over Karl Schwarzschild's solution to Einstein's field equations, which describes a particular form of black hole known as a Schwarzschild black hole, noticed that another solution was also possible, which described a phenomenon which later came to be known as a“white hole”.
It turns out that some of the solutions that can be worked out for the Einstein field equations allow us to move space itself faster than light.
The theory is based on the mathematical equations, known as the field equations, of the general theory of relativity set forth in 1915 by Albert Einstein.
Although the special relativity theory does not correspond to physical reality, although the field equations of Einstein are not correct from the point of view of physics.
In 1916, Karl Schwarzschild obtained the exact solution to Einstein's field equations for the gravitational field outside a non-rotating, spherically symmetric body(see Schwarzschild metric).