Examples of using Surface gravity in English and their translations into Bulgarian
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Neptune 's Surface Gravity.
Surface gravity is incredibly strong.
I have waited months for this… a surface gravity two-thirds less than Earth's.
Its surface gravity is 90% of the surface gravity of the Earth.
Gravitational acceleration remained,allowing for measurements of surface gravity.
Making its surface gravity almost 3 times stronger.
It has the same density androughly the same surface gravity.
Neptune's Surface Gravity is almost like the earth.
Venus is rocky andhas roughly 82% the mass and 90% the surface gravity of Earth.
Neptune's surface gravity is only 17% stronger than the earth.
Venus is rocky and has roughly 82% the mass and 90% the surface gravity of Earth.
The surface gravity is tens of thousands times stronger than Earth's.
The planet itself is neither too big nor too small for the proper surface, gravity and atmosphere.
The surface gravity on Mars is 38% of that on Earth.
The centrifugal effect of this slow rotation is 18 million times weaker than the surface gravity at the Sun's equator.
The surface gravity on Venus is about 91% of the surface gravity on Earth.
They pinned down its diameter to the now-accepted figure of 2,390 kilometres(roughly two-thirds of our Moon) and its surface gravity to about 6% that of Earth.
The Sun's surface gravity is 28 times greater than that of the earth.
Of these four planets, Earth also has the highest density,the highest surface gravity, the strongest magnetic field, and fastest rotation.
Their surface gravity would be significantly greater than it is on our home planet.
The timescale of turbulence and vibration at a star's surface, based on its brightness variations,tells you its surface gravity, say the researchers.
Jupiter's surface gravity is 2.4 times that of the Earth's gravity. .
The denser air andthick clouds would keep the surface in a perpetual murky red twilight, and its large mass means that surface gravity would be around double that on Earth.".
That means the surface gravity on this planet would be significantly higher than on our planet.
A team led by Thomas Kallinger used data from the Kepler space telescope,which is searching for other worlds like the Earth- to show that variations in the brightness of distant stars can give more accurate measurements of surface gravity.
Surface gravity is the intensity of the force that pulls everything on the surface of a star or celestial body towards the centre.
The neutron star's density also gives it very high surface gravity, with typical values ranging from 1012 to 1013 m/s2(more than 1011 times that of Earth).
Since surface gravity depends on the star's mass and radius, the method should also help astronomers work out the masses and sizes of distant stars- and any planets circulating around them.
These three favorable planets- Venus, Earth, andMars- all likely had a reasonable level of surface gravity, thin atmospheres, liquid water on their surfaces, and these biochemical precursor molecules.
The neutron star's density also gives it very high surface gravity, up to~ 1013 m/s2 with typical values of a few×1012 m/s2(that is more than 1011 times of that of Earth).