Online Electron-volts to volts Calculator

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Electron-volts to volts calculator

Enter energy in electron-volts: eV
Select charge unit type:  
Enter elementary charge: e
   
Result in volts: V

Electron-volts (eV) and volts (V) are each devices of electricity, however they may be used to diploma energy on precise scales. An electron-volt is the quantity of power that an electron gains or loses even as it moves through an electric powered functionality difference of 1 volt, even as a volt is the unit of electrical ability distinction or electromotive pressure.To understand the conversion between eV and V, we want to first recognize the concept of strength and electric powered potential distinction. Energy is the functionality to do work, and it can take many distinctive bureaucracy, collectively with mechanical strength, thermal energy, and electric energy. Electric capacity distinction, instead, is the difference in electric powered ability power in keeping with unit fee between factors in an electric powered powered circuit.

The relationship amongst energy and electric powered capability distinction can be expressed mathematically as:

E = qV

in which E is the power, q is the fee, and V is the electrical capacity distinction. The SI unit of power is the joule (J), which is described as the quantity of work completed while a stress of 1 newton is carried out over a distance of 1 meter. The SI unit of electrical functionality distinction is the volt (V), that's described as the amount of capability strength difference in step with unit fee among two factors in an electric powered powered circuit.

An electron-volt (eV) is a unit of electricity this is typically applied in atomic and subatomic physics. It is described as the amount of energy won or misplaced by using an electron at the same time as it movements through an electric powered ability distinction of one volt. One electron-volt is equal to the power that an electron profits or loses at the same time as it moves across a functionality distinction of 1 volt, or approximately 1.6 x 10^-19 joules (J).

V = E/q

wherein V is the electric ability distinction, E is the strength, and q is the price. To convert eV to V, we need to divide the electricity with the aid of the price of an electron, this is approximately identical to at the least one.602 x 10^-19 coulombs (C). Therefore, the components turns into:

V = E/(1.602 x 10^-19)

For instance, permit's assume we have an electricity of 10 eV. To convert this to volts, we are able to use the machine:

V = 10/(1.602 x 10^-19)

V = 6.24 x 10^18 V



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