Convert exavolt to gigavolt


exavolt
GV


More information from the unit converter

How many exavolt in 1 GV? The answer is 1.0E-9. We assume you are converting between exavolt and gigavolt. You can view more details on each measurement unit: exavolt or GV The SI derived unit for voltage is the volt. 1 volt is equal to 1.0E-18 exavolt, or 1.0E-9 GV. Note that rounding errors may occur, so always check the results. Use this page to learn how to convert between exavolts and gigavolts. Type in your own numbers in the form to convert the units!



Quick conversion chart of exavolt to GV

1 exavolt to GV = 1000000000 GV

2 exavolt to GV = 2000000000 GV

3 exavolt to GV = 3000000000 GV

4 exavolt to GV = 4000000000 GV

5 exavolt to GV = 5000000000 GV

6 exavolt to GV = 6000000000 GV

7 exavolt to GV = 7000000000 GV

8 exavolt to GV = 8000000000 GV

9 exavolt to GV = 9000000000 GV

10 exavolt to GV = 10000000000 GV


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Common voltage conversions


Definition: Exavolt

The SI prefix "exa" represents a factor of 1018, or in exponential notation, 1E18.

So 1 exavolt = 1018 volts.

The definition of a volt is as follows:

The volt (symbol: V) is the SI derived unit of electric potential difference or electromotive force, commonly known as voltage. It is named in honor of the Lombard physicist Alessandro Volta (1745–1827), who invented the voltaic pile, the first chemical battery.

The volt is defined as the potential difference across a conductor when a current of one ampere dissipates one watt of power.[3] Hence, it is the base SI representation m2 · kg · s-3 · A-1, which can be equally represented as one joule of energy per coulomb of charge, J/C.


Definition: Gigavolt

The SI prefix "giga" represents a factor of 109, or in exponential notation, 1E9.

So 1 gigavolt = 109 volts.

The definition of a volt is as follows:

The volt (symbol: V) is the SI derived unit of electric potential difference or electromotive force, commonly known as voltage. It is named in honor of the Lombard physicist Alessandro Volta (1745–1827), who invented the voltaic pile, the first chemical battery.

The volt is defined as the potential difference across a conductor when a current of one ampere dissipates one watt of power.[3] Hence, it is the base SI representation m2 · kg · s-3 · A-1, which can be equally represented as one joule of energy per coulomb of charge, J/C.


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