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In such a body, the gravitational acceleration is towards the center.
It is actually equal to the gravitational acceleration at that point.
"Well, that would mean there was a big gravitational acceleration.
They could be avoided only if the gravitational acceleration were the same everywhere.
This is equivalent to a gravitational acceleration of 9.81158 m/s.
Tables of the gravitational acceleration at different locations can be found on the web.
This equation should be used whenever there is a significant difference in the gravitational acceleration during the fall.
Then he hit bottom for a second time, this time with all the force of gravitational acceleration.
It depends upon the value of the gravitational acceleration, which varies with location.
The measurement of a person's normal weight incorporates this gravitational acceleration.
All objects on Earth are subject to a gravitational acceleration of approximately 9.8 m/s.
Pendulums can also be used to determine gravitational acceleration at a particular location.
This analysis will take into consideration the effect of gravitational acceleration on flow and heat transfer.
Gravitational accelerations are more my field, if you'll pardon the pun.
Its gravitational acceleration is 3.71 meters per second squared, or just over one-third of Earth's.
The barycentric gravitational acceleration at a point in space is given by:
So, if you move far enough away from the surface of the earth, your gravitational acceleration toward the earth will diminish.
The primary issue to be considered in off-Earth reproduction is the lack of gravitational acceleration.
This model represents the "far-field" gravitational acceleration associated with a massive body.
In physics, E means energy and G is the symbol of gravitational acceleration.
The negative sign indicates that it acts in the opposite direction to the gravitational acceleration g.
The period of a pendulum is a function of g, the local gravitational acceleration.
The gradient of this potential also provides a model of the gravitational acceleration.
At the equator, the effective gravitational acceleration is 9.7805 m/s2.
They shot up in the air like soap bubbles, returning to the ground in gravitational acceleration.