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Convert Faradays to Nanocoulombs

Faraday (F) to Nanocoulomb (nC) charge conversion — enter any value below to get an instant result, or use the table for common values.

Results from this calculator are estimates provided for general informational purposes only, based on formulas, rates, and standards commonly accepted as of 2026. Figures may differ slightly from other calculators or professional sources due to rounding methods, differing assumptions, or regional regulations, and rules may change over time. Always consult a qualified professional — such as a financial advisor, healthcare provider, or other relevant specialist — before making decisions based on these results.

The numeric value you want to convert. Decimals are accepted.

Result

1 Faraday = 9.64853E+13 Nanocoulombs

1 Nanocoulomb = 1.03643E-14 Faradays

1 F in every supported unit

Conversion chart: Faraday to Nanocoulombs

Conversion table

Faraday (F) Nanocoulomb (nC)
0.01 F 9.64853E+11 nC
0.1 F 9.64853E+12 nC
1 F 9.64853E+13 nC
2 F 1.92971E+14 nC
3 F 2.89456E+14 nC
5 F 4.82427E+14 nC
10 F 9.64853E+14 nC
20 F 1.92971E+15 nC
50 F 4.82427E+15 nC
100 F 9.64853E+15 nC
1000 F 9.64853E+16 nC

Faraday (F)

Definition: The charge carried by one mole of elementary charges (electrons or protons), equal to the Faraday constant — Avogadro's number multiplied by the elementary charge, approximately 96,485.3 coulombs per mole.

History: Named after Michael Faraday, whose laws of electrolysis in the 1830s established the precise relationship between the amount of charge passed through an electrolytic cell and the amount of substance deposited or liberated at its electrodes.

Current use: The standard unit in electrochemistry for calculating the charge required to electroplate, refine, or electrolyze a given amount of material — chemists multiply moles of electrons transferred by the Faraday constant to get total charge.

Nanocoulomb (nC)

Definition: An SI-prefixed submultiple equal to one billionth of a coulomb, sized for the small but measurable charge outputs of sensitive electronic sensors.

History: A standard SI submultiple that became a practical laboratory unit once instrumentation grew sensitive enough to resolve sub-microcoulomb charge quantities reliably.

Current use: Used to report the charge output of piezoelectric sensors and accelerometers, and in small-scale electrostatics experiments where microcoulomb figures would read as inconveniently large.

Supported Units

Unit Symbol In Coulomb
Megacoulomb MC 1000000 C
Kilocoulomb kC 1000 C
Coulomb C 1 C
Millicoulomb mC 0.001 C
Microcoulomb µC 1E-06 C
Nanocoulomb nC 1E-09 C
Picocoulomb pC 1E-12 C
Abcoulomb abC 10 C
EMU of Charge EMU 10 C
Statcoulomb statC 3.33564E-10 C
ESU of Charge ESU 3.33564E-10 C
Franklin Fr 3.33564E-10 C
Ampere-Hour A·h 3600 C
Ampere-Minute A·min 60 C
Ampere-Second A·s 1 C
Faraday F 96485.309 C
Elementary Charge e 1.60218E-19 C

About These Parameters

Value
The amount of electric charge you want to convert, expressed in the "From" unit. Accepts decimals, and can represent anything from a single elementary charge to a battery's full ampere-hour rating.
From Unit
The unit your input value is currently measured in — a battery datasheet's ampere-hour rating, an electrochemistry problem's faradays, or an older physics text's abcoulomb or statcoulomb figure.
To Unit
The unit you want the result converted into. Use the swap button to flip From and To instantly, which is handy when translating a historical CGS-system figure into the modern SI coulomb or vice versa.

How Charge Conversion Works

The Formula

Every unit here is defined by a fixed multiplier relative to the coulomb. To convert a value from one unit to another:

result = value × (factor of "From" unit ÷ factor of "To" unit)

For Faraday → Nanocoulomb: multiply by 9.64853E+13. For example, 1 F × 9.64853E+13 = 9.64853E+13 nC.

From CGS Charge Units to the SI Coulomb

Before the SI system unified electricity around the ampere and coulomb, 19th-century physicists working in the centimeter-gram-second (CGS) system built two competing "natural" families of electrical units: the electrostatic (ESU) family, whose charge unit is the statcoulomb (also called the franklin, honoring Benjamin Franklin), defined so that two one-statcoulomb charges one centimeter apart repel with exactly one dyne of force; and the electromagnetic (EMU) family, whose charge unit is the abcoulomb, equal to a much larger 10 coulombs. Both systems made Maxwell's equations take a cleaner mathematical form than SI does, which is why some theoretical-physics and plasma-physics literature still uses Gaussian (CGS) units today — this converter lets you move any of those historical figures straight into the modern coulomb.

Why Batteries, Chemistry, and Physics Each Use a Different Unit

Battery engineers rate capacity in ampere-hours because that's literally how a battery is specified and discharged — a steady current for a certain duration. Electrochemists use the faraday because Faraday's laws of electrolysis relate charge passed directly to moles of substance deposited or liberated at an electrode, so working in "moles of charge" (faradays) keeps the chemistry intuitive. Particle physicists use the elementary charge because it's the smallest indivisible unit of free charge in nature, making it the natural yardstick for counting electrons, protons, or ionization events one at a time. All three units describe exactly the same physical quantity — they just scale it to whatever a given field actually measures day to day.

Example

A charge of 1 F equals 9.64853E+13 nC. For scale, a typical smartphone battery stores roughly 3,000-5,000 milliampere-hours (around 10,000-18,000 coulombs), a car battery is rated around 50-100 ampere-hours (180,000-360,000 coulombs), and a single lightning strike transfers on the order of 15-30 coulombs to the ground in well under a second.

Frequently Asked Questions

How many Nanocoulombs are in 1 Faraday?

1 Faraday (F) equals exactly 9.64853E+13 Nanocoulombs (nC).

What's the difference between a coulomb and an ampere-hour?

Both measure electric charge, but on very different scales. A coulomb is the charge moved by one ampere in one second; an ampere-hour is the charge moved by one ampere over a full hour, which is 3,600 times larger. Batteries are rated in ampere-hours (or milliampere-hours) because that matches how they're actually discharged, while raw coulombs are more common in circuit-level physics calculations.

Why are abcoulomb and EMU of charge the same value?

"EMU of charge" is simply the generic name for the CGS electromagnetic system's charge unit, and "abcoulomb" is that same unit's specific name — they're not two different quantities, just two names for one unit, both equal to 10 coulombs. The same relationship holds for statcoulomb, ESU of charge, and franklin, which are three names for the same CGS electrostatic charge unit.

How is the faraday related to the elementary charge?

The faraday is the charge of one full mole of elementary charges — multiply Avogadro's number (about 6.022×10²³) by the elementary charge (about 1.602×10⁻¹⁹ coulomb) and you get the Faraday constant, roughly 96,485 coulombs per mole. It's the bridge electrochemists use between "how many electrons were transferred" and "how much charge passed through the circuit."

Is the elementary charge the smallest possible amount of charge?

For any freely existing particle, yes — every electron and proton carries exactly one elementary charge (with opposite sign), and no isolated particle has ever been observed with a smaller fraction of it. Quarks carry fractional charges of ±1/3 or ±2/3 of the elementary charge, but they're never observed in isolation, only bound inside composite particles whose overall charge is always a whole multiple of the elementary charge.

Convert Faraday to Other Charge Units

Possible Charge Conversions

Faraday to Franklins Faraday to Ampere-Hours ESU of Charge to Megacoulombs Statcoulomb to Kilocoulombs Elementary Charge to Ampere-Hours ESU of Charge to EMU of Charge Franklin to Picocoulombs Franklin to Ampere-Seconds Coulomb to Megacoulombs ESU of Charge to Microcoulombs Abcoulomb to Coulombs Statcoulomb to Ampere-Hours Ampere-Hour to Millicoulombs Microcoulomb to Ampere-Minutes Ampere-Minute to Kilocoulombs Megacoulomb to EMU of Charge Millicoulomb to Ampere-Seconds Ampere-Hour to Nanocoulombs Megacoulomb to Statcoulombs EMU of Charge to Elementary Charges Microcoulomb to Abcoulombs Kilocoulomb to Franklins Megacoulomb to Franklins Ampere-Second to EMU of Charge ESU of Charge to Picocoulombs Ampere-Hour to Faradays Millicoulomb to Picocoulombs Coulomb to Microcoulombs EMU of Charge to Millicoulombs EMU of Charge to Nanocoulombs Millicoulomb to Faradays Abcoulomb to Microcoulombs Picocoulomb to Microcoulombs Abcoulomb to Kilocoulombs Kilocoulomb to Elementary Charges Microcoulomb to Picocoulombs Ampere-Hour to Coulombs Microcoulomb to Coulombs Ampere-Hour to EMU of Charge Ampere-Minute to Statcoulombs Picocoulomb to Ampere-Minutes EMU of Charge to ESU of Charge Coulomb to EMU of Charge Ampere-Second to Microcoulombs Ampere-Hour to Ampere-Minutes Statcoulomb to Abcoulombs Ampere-Hour to Ampere-Seconds Ampere-Hour to Elementary Charges Abcoulomb to EMU of Charge Franklin to Elementary Charges Franklin to Microcoulombs Millicoulomb to Microcoulombs Ampere-Minute to Nanocoulombs Megacoulomb to Ampere-Hours Faraday to Abcoulombs Picocoulomb to Coulombs Coulomb to Ampere-Hours Statcoulomb to Coulombs Ampere-Second to Ampere-Minutes Kilocoulomb to Coulombs ESU of Charge to Coulombs Ampere-Second to Megacoulombs Ampere-Hour to Microcoulombs Franklin to EMU of Charge Faraday to ESU of Charge Elementary Charge to Nanocoulombs Nanocoulomb to Ampere-Minutes Picocoulomb to Ampere-Seconds Statcoulomb to Ampere-Seconds Millicoulomb to Elementary Charges Ampere-Hour to Kilocoulombs Elementary Charge to Statcoulombs Ampere-Minute to Millicoulombs Kilocoulomb to Ampere-Seconds ESU of Charge to Ampere-Seconds Nanocoulomb to Abcoulombs Nanocoulomb to Statcoulombs EMU of Charge to Abcoulombs Nanocoulomb to Ampere-Seconds EMU of Charge to Franklins Abcoulomb to Faradays EMU of Charge to Coulombs Coulomb to Ampere-Minutes Millicoulomb to Kilocoulombs Franklin to Ampere-Hours Faraday to Statcoulombs Kilocoulomb to ESU of Charge Nanocoulomb to Coulombs Picocoulomb to Megacoulombs Franklin to Faradays Nanocoulomb to Elementary Charges Coulomb to Nanocoulombs Ampere-Second to Abcoulombs Coulomb to Faradays Ampere-Second to Statcoulombs Nanocoulomb to EMU of Charge Ampere-Second to Ampere-Hours Elementary Charge to Ampere-Seconds Ampere-Minute to Picocoulombs Franklin to Nanocoulombs Millicoulomb to Ampere-Minutes Ampere-Minute to EMU of Charge ESU of Charge to Ampere-Hours EMU of Charge to Megacoulombs Coulomb to Kilocoulombs Abcoulomb to Megacoulombs EMU of Charge to Picocoulombs Kilocoulomb to Ampere-Hours Ampere-Second to Coulombs Faraday to Coulombs Coulomb to Statcoulombs Elementary Charge to Megacoulombs Megacoulomb to Ampere-Seconds Nanocoulomb to Microcoulombs Kilocoulomb to Microcoulombs ESU of Charge to Kilocoulombs Ampere-Minute to Franklins Franklin to Ampere-Minutes Picocoulomb to Ampere-Hours Picocoulomb to Abcoulombs Picocoulomb to Faradays Kilocoulomb to EMU of Charge Microcoulomb to Ampere-Seconds Faraday to Ampere-Minutes Statcoulomb to Ampere-Minutes Megacoulomb to Faradays Nanocoulomb to Faradays Picocoulomb to Nanocoulombs Microcoulomb to Kilocoulombs Microcoulomb to Franklins Faraday to Millicoulombs Millicoulomb to Nanocoulombs Elementary Charge to Franklins Abcoulomb to Ampere-Seconds Millicoulomb to Ampere-Hours Microcoulomb to Elementary Charges Millicoulomb to Coulombs Picocoulomb to Franklins Ampere-Minute to Abcoulombs Millicoulomb to ESU of Charge Franklin to Millicoulombs Microcoulomb to EMU of Charge Elementary Charge to Kilocoulombs Kilocoulomb to Abcoulombs Faraday to Elementary Charges Ampere-Minute to Ampere-Seconds EMU of Charge to Faradays Coulomb to Elementary Charges Kilocoulomb to Nanocoulombs Megacoulomb to ESU of Charge Faraday to Ampere-Seconds Coulomb to Ampere-Seconds Elementary Charge to Millicoulombs Abcoulomb to Nanocoulombs Faraday to Microcoulombs EMU of Charge to Statcoulombs Nanocoulomb to ESU of Charge Megacoulomb to Microcoulombs Megacoulomb to Picocoulombs Kilocoulomb to Statcoulombs Millicoulomb to Abcoulombs Faraday to Megacoulombs Picocoulomb to Millicoulombs Elementary Charge to Coulombs Microcoulomb to Ampere-Hours Ampere-Minute to Faradays Statcoulomb to Picocoulombs Ampere-Minute to ESU of Charge Abcoulomb to Millicoulombs Elementary Charge to Ampere-Minutes Statcoulomb to Millicoulombs Faraday to Nanocoulombs Ampere-Second to ESU of Charge Microcoulomb to Statcoulombs Ampere-Minute to Megacoulombs Ampere-Second to Elementary Charges Ampere-Hour to Statcoulombs Faraday to Picocoulombs Kilocoulomb to Ampere-Minutes Statcoulomb to Faradays Coulomb to Abcoulombs Franklin to Coulombs Franklin to Megacoulombs Ampere-Hour to Megacoulombs Megacoulomb to Ampere-Minutes Coulomb to Millicoulombs Megacoulomb to Abcoulombs Nanocoulomb to Megacoulombs ESU of Charge to Franklins Ampere-Second to Millicoulombs Coulomb to Franklins Elementary Charge to ESU of Charge Elementary Charge to Microcoulombs Franklin to ESU of Charge Nanocoulomb to Franklins Abcoulomb to Elementary Charges Kilocoulomb to Picocoulombs Kilocoulomb to Megacoulombs Ampere-Minute to Elementary Charges Coulomb to ESU of Charge Ampere-Hour to Franklins Millicoulomb to Statcoulombs Statcoulomb to Microcoulombs Franklin to Kilocoulombs Elementary Charge to Picocoulombs Megacoulomb to Elementary Charges Ampere-Second to Franklins Elementary Charge to Faradays ESU of Charge to Millicoulombs EMU of Charge to Microcoulombs Picocoulomb to Statcoulombs Statcoulomb to Elementary Charges Megacoulomb to Millicoulombs Faraday to EMU of Charge Abcoulomb to Statcoulombs EMU of Charge to Kilocoulombs Microcoulomb to Megacoulombs Microcoulomb to Nanocoulombs ESU of Charge to Elementary Charges Elementary Charge to Abcoulombs Megacoulomb to Nanocoulombs Nanocoulomb to Kilocoulombs ESU of Charge to Ampere-Minutes Ampere-Hour to Picocoulombs Abcoulomb to Ampere-Minutes Statcoulomb to Franklins Millicoulomb to Franklins Abcoulomb to Franklins Franklin to Abcoulombs Microcoulomb to Millicoulombs Picocoulomb to Kilocoulombs Ampere-Hour to Abcoulombs Coulomb to Picocoulombs Elementary Charge to EMU of Charge Megacoulomb to Kilocoulombs Ampere-Second to Kilocoulombs Kilocoulomb to Millicoulombs Nanocoulomb to Millicoulombs Picocoulomb to ESU of Charge Picocoulomb to Elementary Charges Abcoulomb to Picocoulombs Nanocoulomb to Ampere-Hours ESU of Charge to Faradays Abcoulomb to Ampere-Hours Nanocoulomb to Picocoulombs Ampere-Second to Nanocoulombs Ampere-Minute to Microcoulombs Millicoulomb to Megacoulombs Microcoulomb to Faradays Ampere-Second to Picocoulombs Statcoulomb to EMU of Charge Franklin to Statcoulombs ESU of Charge to Statcoulombs Picocoulomb to EMU of Charge Faraday to Kilocoulombs Ampere-Hour to ESU of Charge EMU of Charge to Ampere-Hours Megacoulomb to Coulombs Ampere-Second to Faradays ESU of Charge to Abcoulombs Statcoulomb to Nanocoulombs Statcoulomb to ESU of Charge Statcoulomb to Megacoulombs Ampere-Minute to Ampere-Hours ESU of Charge to Nanocoulombs Kilocoulomb to Faradays Millicoulomb to EMU of Charge EMU of Charge to Ampere-Minutes Microcoulomb to ESU of Charge Ampere-Minute to Coulombs EMU of Charge to Ampere-Seconds Abcoulomb to ESU of Charge

See also