Examples of using The two objects in English and their translations into Bulgarian
{-}
-
Colloquial
-
Official
-
Medicine
-
Ecclesiastic
-
Ecclesiastic
-
Computer
The two objects merge.
Where r is distance between the two objects.
One of the two objects will always be out-of-focus.
Therefore, the two objects appear the same size in our sky.
F is the gravitational force between the two objects, measured in Newtons.
The two objects are locked in a death spiral, orbiting closer and closer until BOOM!
M1 and m2 are the masses of the two objects, while r is the distance between them.
Which diagram would produce the greatest gravitational force between the two objects?
This means that the two objects appear to be the same size in the sky.
It makes use ofan electromagnetic field in order to transfer the energy between the two objects.
However, in the distance you can see the two objects- is the Earth and its moon.
Metonymic transference of names is based upon the principle of conti guity of the two objects.
If Access cannot determine how to link the two objects, the Subreport Wizard appears.
In this way the two objects receive the same address in dynamic memory and hence the same value.
This means, in every interaction,there is a pair of forces acting on the two objects within it.
If Access can determine how to link the two objects, Access adds a subreport control to the report.
Without this information, the team cannot calculate the masses of the two objects that merged.
The two objects str and thirdStr have equal values, but are different objects, located at separate addresses in the memory.
You might be surprised to find out that the two objects hit the ground at almost the same time.
And in it, he theorizes that the forces between objects nowit's a vector quantity, it's always going to attract the two objects to each other.
If to avoid going into the wilds of mathematical theories, it can be argued that two black holes will be linked by a sufficiently large wormhole in space-time through which the quantum state of the two objects will be united.
So Newton's Law of Gravity says that the force between two masses, and that's the gravitational force,is equal to the gravitational constant G times the mass of the first object times the mass of the second object divided by the distance between the two objects squared.
Difference of two meanings ortransfer by contrast when the two objects are opposed- E.g.: You are so punctual!
But it's important to realize that the distance between the two objects, especially when we're talking about the universal law of gravitation, is the distance between their center of masses.
Suppose that these accelerations are non-zero,so that the forces between the two objects are non-zero.