Примери за използване на Acceleration of gravity на Английски и техните преводи на Български
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Acceleration of gravity gal.
What is the acceleration of gravity?
Acceleration of gravity, m/s2.
G= 9.81 m·s- 2 acceleration of gravity.
Acceleration of gravity on the surface.
Where g= 9.81 m/s is the acceleration of gravity.
G= acceleration of gravity, m/s2.
And 9.8 meters per second for the acceleration of gravity… 35%.
What is Acceleration of Gravity?
We can divide both sides by the mass of Sal, and we have the acceleration of gravity.
The acceleration of gravity is 9.8.
Stopping in a tenth of a second means feeling about 32 times the acceleration of gravity, which is survivable, but not unlike getting hit by a car.
G= Acceleration of gravity= 9.8066 m/s2.
Particles attached to the body hairs are catapulted at nearly 1,000 times the acceleration of gravity, far faster than the fly can move its limbs.
Acceleration of gravity(at sea level).
That's the density times the height-- we don't know what the height is, that's going to be in meters-- times the acceleration of gravity, which is 9.8 meters per second squared.
The acceleration of gravity on the moon is 1.67 m/s/s.
So we know the gravitational force is 9.81 times the mass of Sal, andwe also know that that's the same thing as the acceleration of gravity times the mass of Sal.
Where g is acceleration of gravity on the earth's surface.
The topic was motivated by his description of the motion of a ball rolling down a ramp,by which he measured the numerical value for the acceleration of gravity near the surface of the Earth.
Plus the acceleration of gravity times time squared over 2.
So if we wanted a quick way of knowing what the gravitational potential is at any point without having to care about the mass,we divide by the mass, and it would be the acceleration of gravity times height.
Well it's just the acceleration of gravity, 9.8 meters per second squared.
The time of propagation from the source t is proportional to the distance X divided by the wave period T. In deep water it is t= 4 π X/( g T){\displaystyle t=4\pi X/(gT)}where g is the acceleration of gravity.
The acceleration of gravity on the moon's surface is 1.6 meters per second2.
And we have just shown that, at least based on the numbers that they have given in Wikipedia, the acceleration of gravity on the surface of the Earth is almost exactly what we have been using in all the projectile motion problems.
Acceleration of gravity is the acceleration on an object caused by gravity. .
If, furthermore, the acceleration of the space ship was made equal to the acceleration of gravity on the surface of the Earth, the people inside could well believe that their ship was still standing on its launching pad.
The acceleration of gravity at the surface of the moon is approximately one-sixth the acceleration of gravity at the surface of the earth.
So this right here, we can view that as the gravitational field at the surface of Earth.It's also the same thing as the acceleration of gravity at the surface of the Earth, and this, and once again I'm just going to round it for the sake.