Examples of using Potential difference in English and their translations into Malay
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The SI unit for electrical potential difference is the volt.
Potential difference has the abbreviation V and the unit of measurement is the Volt symbol V.
In thermal systems the potential difference is the temperature.
Thus, it is also the amount of excess charge on a capacitor of one farad charged to a potential difference of one volt.
The electrical potential difference between two points in a circuit.
Moving a small element of charge dq from one plate to the other against the potential difference V= q/C requires the work dW.
In fluid systems the potential difference is the difference in pressure.
One coulomb is also the amount of excess charge on a capacitor of one farad charged to a potential difference of one volt.
The unit for potential difference is the volt, the symbol is V.
One coulomb is also the amount of excess charge on the positive side of a capacitor of one farad charged to a potential difference of one volt.
Gravitational potential difference between two points on Earth is related to the energy needed to move a unit mass from one point to the other against the Earth's gravitational field.
And that's worthy of an entire video. But the idea is that you start having a huge potential difference between the clouds and the ground.
In terms of electromagnetism, one watt is the rate at which electrical work is performed when acurrent of one ampere(A) flows across an electrical potential difference of one volt(V.
It was invented by American physicist Robert J. Van de Graaff during 1929.[1] The potential difference achieved by modern Van de Graaff generators can be as much as 5 megavolts.
One watt(W) is the rate at which work is done when one ampere(A)of current flows through an electrical potential difference of one volt(V.
Ohm's law states that electric current flowing through the conductor is directly proportional to the potential difference between its two ends when the temperature and other physical parameters of the conductor remain unchanged.
The work required to move an electric charge of one coulomb through an electrical potential difference of one volt, or one coulomb-volt(C? V.
The ohm is defined as an electrical resistance between two points of a conductor when a constant potential difference of one volt, applied to these points, produces in the conductor a current of one ampere, the conductor not being the seat of any electromotive force.[1.
Where 1 Joule is the work required to move an electric charge of one coulomb through an electrical potential difference of one volt; or one coulomb volt, with the symbol C·V.
Ohm's Law states that the current I, passing through a conductor is directly proportional to the potential difference, V between its ends provided that the physical conditions and temperature of the conductor remain constant.
Ohm's law states that the current that passes through an ohmic conductoris directly proportional to the potential difference across it if the temperature and other physical condictions are constant.
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