An erg is a CGS energy unit.
Ergs to Electronvolts Converter — erg to eV
Convert Erg (erg) to Electronvolt (eV) using the exact conversion factor (1 erg = 624,150,907,400 electronvolt). See the formula, worked examples, conversion table, and common uses.
Ergs to Electronvolts converter
Converter
Scientific Units Converter
Convert SI derived units, scientific notation-friendly units, atomic units, and lab measurements.
An electronvolt is the energy gained by an electron across one volt.
Result = input x 1e-7 / 1.60217663e-19.
Energy units are compatible.
Reserved above the conversion cards and below the converter.
About Converting Ergs to Electronvolts
Erg and Electronvolt are both scientific-measurement units, spanning everything from atomic and laboratory scales to astronomical distances — the kind of conversion that comes up constantly in physics, chemistry, and astronomy when a result needs to move between conventions used in different subfields. Specifically: An erg is a CGS energy unit, and an electronvolt is the energy gained by an electron across one volt.
Formula
electronvolts = ergs × 624150907446
This factor comes from each unit's defined relationship to the category's base unit: 1 erg equals 1e-7 base units, and 1 electronvolt equals 1.602177e-19 base units, so dividing one by the other gives the direct erg-to-electronvolt factor of 624150907446.
Simple example
1 erg × 624150907400 = 624,150,907,400 eV
1 erg = 624,150,907,400 electronvolts.
Real-world example
10 erg × 624150907400 = 6.241509e+12 eV
10 ergs = 6.241509e+12 electronvolts.
Conversion table
| Erg (erg) | Electronvolt (eV) |
|---|---|
| 0.001 erg | 624,150,907.4 eV |
| 0.01 erg | 6,241,509,074 eV |
| 1 erg | 624,150,907,400 eV |
| 10 erg | 6.241509e+12 eV |
| 100 erg | 6.241509e+13 eV |
| 1,000 erg | 6.241509e+14 eV |
Reverse conversion: Electronvolt to Erg
1 eV × 1.602177e-12 = 1.602177e-12 erg
1 electronvolt = 1.602177e-12 ergs.
ergs = electronvolts × 1.602177e-12
For a page dedicated to this direction, see Electronvolt to Erg.
Understanding the Erg (erg)
An erg is a CGS energy unit.
Understanding the Electronvolt
Electronvolt (eV) measures energy. The energy gained by a single electron accelerated through an electric potential difference of one volt — a very small amount of energy, exactly 1.602176634 × 10⁻¹⁹ joules. It is classified as a non-SI unit accepted for use with the SI, common in physics.
Where it's used: Standard unit throughout particle physics, atomic physics, and chemistry worldwide
Uses of the Electronvolt today
- Particle physics (particle accelerator energies are often quoted in GeV or TeV)
- Atomic and molecular energy levels
- Semiconductor band-gap energies
Electronvolt — sources
- BIPM SI Brochure, 9th edition — Electronvolt listed as a non-SI unit accepted for use with the SI, with its exact value fixed via the elementary charge.
Reserved between the cards and the FAQ so the page stays balanced.
Frequently asked questions
How many electronvolts are in 1 erg?
1 erg equals 624,150,907,400 electronvolts, using the exact defined conversion factor rather than an estimate.
How do I convert erg to electronvolt?
Multiply the erg value by 624150907400. The converter above does this instantly to whatever precision you set.
How do I convert electronvolt back to erg?
Use the reverse factor: 1 electronvolt equals 1.602177e-12 ergs. You can also use the swap control in the converter above to flip the direction instantly.
What is a erg?
Erg (erg) is a unit of scientific units.
What is a electronvolt?
Electronvolt (eV) measures energy. The energy gained by a single electron accelerated through an electric potential difference of one volt — a very small amount of energy, exactly 1.602176634 × 10⁻¹⁹ joules. It is classified as a non-SI unit accepted for use with the SI, common in physics.
Is the erg to electronvolt conversion exact?
Yes. The energy gained by a single electron accelerated through an electric potential difference of one volt — a very small amount of energy, exactly 1.602176634 × 10⁻¹⁹ joules. That fixed definition is what the converter above uses, so any rounding you see is a display choice, not a limitation of the math.
Why does this category span everything from atomic to astronomical scales?
Scientific work spans an enormous range of physical scales, from atomic distances (measured in angstroms or atomic mass units) to interstellar distances (measured in astronomical units or parsecs), so this category groups SI-derived and scale-specific units that researchers commonly need to convert between within their field.