Примери за използване на Schwarzschild radius на Английски и техните преводи на Български
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nearly spherical body can be reasonably approximated using the Schwarzschild radius as follows.
we can substitute c(the speed of light) for Vesc and find the Schwarzschild radius, R.
known as the Schwarzschild radius.
well inside the Schwarzschild radius of 30,000 km.
non-charged mass that is smaller than its Schwarzschild radius forms a black hole.
known as the Schwarzschild radius.
If the sun was replaced with a black hole that had the same mass as the sun, the Schwarzschild radius would be 3 km(compared to the sun's radius of nearly 700,000 km).
because the size of a sugar cube is its Schwarzschild radius.
although it took until 1933 for Georges Lemaître to realize that this meant the singularity at the Schwarzschild radius was an unphysical coordinate singularity.[7].
although it took until 1933 for Georges Lemaître to realize that this meant the singularity at the Schwarzschild radius was a non-physical coordinate singularity.
The mean density inside the Schwarzschild radius decreases as the mass of the black hole increases, so while an earth-mass black
Bigger objects have bigger Schwarzschild radii.
Smaller objects have smaller Schwarzschild radii.
The Schwarzschild radius.
The Schwarzschild radius.
Parameters[edit] The Schwarzschild radius of an object is proportional to the mass.
Because not even light can escape from within the Schwarzschild radius, a classical black hole would truly appear black.
So, my job in convincing you that there is a black hole is to show that there is some object that's confined to within its Schwarzschild radius.
The average density of a SMBH(defined as the mass of the black hole divided by the volume within its Schwarzschild radius) can be less than the density of water in the case of some SMBHs.
The Schwarzschild radius can be calculated using the equation for escape speed.