CalculatorBoom

Convert Newtons/Coulomb to Volts/Meter

Newton/Coulomb (N/C) to Volt/Meter (V/m) electric field strength 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 Newton/Coulomb = 1 Volts/Meter

1 Volt/Meter = 1 Newtons/Coulomb

1 N/C in every supported unit

Conversion chart: Newton/Coulomb to Volts/Meter

Conversion table

Newton/Coulomb (N/C) Volt/Meter (V/m)
0.01 N/C 0.01 V/m
0.1 N/C 0.1 V/m
1 N/C 1 V/m
2 N/C 2 V/m
3 N/C 3 V/m
5 N/C 5 V/m
10 N/C 10 V/m
20 N/C 20 V/m
50 N/C 50 V/m
100 N/C 100 V/m
1000 N/C 1000 V/m

Newton/Coulomb (N/C)

Definition: The electric field strength expressed through its most fundamental physical definition — the force in newtons that the field exerts on a charge, divided by the size of that charge in coulombs — numerically and dimensionally identical to the volt per meter.

History: It comes directly from the Lorentz force law, F = qE, which defines the electric field E as force per unit charge; this is typically the very first definition of electric field strength taught in introductory physics, before students encounter the volt-per-meter form derived from potential.

Current use: Used interchangeably with volt/meter throughout physics, particularly in contexts — like textbook derivations of the Lorentz force or Coulomb's law — that build up electric field strength directly from force and charge rather than from electric potential.

Volt/Meter (V/m)

Definition: The SI derived unit of electric field strength — the rate at which electric potential changes over a given distance, or equivalently the force in newtons that the field exerts on a one-coulomb charge divided by that charge's magnitude.

History: It emerges directly from combining the volt and the meter once Maxwell's field theory in the 19th century needed a way to express an electric field's intensity as a rate of potential change over distance, rather than describing potential and distance separately.

Current use: The standard unit for describing the electric field strength between capacitor plates, the dielectric breakdown rating of insulating materials, the field intensity near overhead power lines, and antenna field-strength specifications in radio engineering.

Supported Units

Unit Symbol In Volt/Meter
Volt/Meter V/m 1 V/m
Kilovolt/Meter kV/m 1000 V/m
Kilovolt/Centimeter kV/cm 100000 V/m
Volt/Centimeter V/cm 100 V/m
Millivolt/Meter mV/m 0.001 V/m
Microvolt/Meter µV/m 1E-06 V/m
Kilovolt/Inch kV/in 39370.079 V/m
Volt/Inch V/in 39.370079 V/m
Volt/Mil V/mil 39370.079 V/m
Abvolt/Centimeter abV/cm 1E-06 V/m
Statvolt/Centimeter stV/cm 29979.2 V/m
Statvolt/Inch stV/in 11802.835 V/m
Newton/Coulomb N/C 1 V/m

About These Parameters

Value
The electric field strength value you want to convert, expressed in the "From" unit. Accepts decimals, and can represent anything from a weak ambient field measured in microvolts per meter to a dielectric breakdown rating measured in kilovolts per centimeter.
From Unit
The unit your input value is currently measured in — a metric volt/meter or kilovolt/meter reading, an imperial volt/mil insulation rating, or a historical figure quoted in statvolt/centimeter or another CGS-Gaussian field-strength unit.
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 metric field-strength figure into an imperial volt/mil rating or vice versa.

How Electric Field Strength Conversion Works

The Formula

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

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

For Newton/Coulomb → Volt/Meter: multiply by 1. For example, 1 N/C × 1 = 1 V/m.

Two Ways to Define the Same Quantity

Electric field strength can be arrived at from two different directions that land on the exact same unit. The first is via electric potential: a field strength in volts per meter is simply how quickly potential changes as you move through space, so a 12-volt potential difference spread evenly across 1 meter is a 12 V/m field. The second is via force: the Lorentz force law, F = qE, defines the field E directly as the force it exerts on a charge divided by that charge's size, giving the equivalent unit newton per coulomb (N/C). Both routes describe the identical physical quantity, which is why volt/meter and newton/coulomb carry a conversion factor of exactly 1 on this page — physics textbooks introduce the force-based N/C definition first, then show the potential-based V/m form once students have covered electric potential.

Why Volt/Mil Matters in the Insulation Industry

A "mil" is one-thousandth of an inch, and volt/mil became the standard unit for dielectric strength in North American wire and cable manufacturing because insulation and coating thicknesses are conventionally specified in mils. Rating a material's breakdown strength directly in volts per mil lets an engineer compare it straight against a coating's thickness spec without converting units first — a wire insulation rated at 500 V/mil, for instance, can withstand about 500 volts for every mil (0.001 inch) of coating thickness before the material breaks down electrically. Because it is numerically equal to kilovolt/inch (both describe 1,000 volts across an inch of material, just grouped differently), the two units are often used interchangeably in engineering specifications.

Example

An electric field strength of 1 N/C equals 1 V/m. For scale, the electric field near the Earth's surface on a fair-weather day is roughly 100-150 volts per meter, the field inside a typical parallel-plate capacitor can reach several kilovolts per centimeter, and dry air begins to electrically break down (arc) at around 3 million volts per meter (3 kV/mm).

Frequently Asked Questions

How many Volts/Meter are in 1 Newton/Coulomb?

1 Newton/Coulomb (N/C) equals exactly 1 Volts/Meter (V/m).

What is the difference between volt/meter and volt/centimeter?

Volt/centimeter is 100 times larger than volt/meter, since a centimeter is one-hundredth of a meter — spreading the same voltage over a shorter distance produces a stronger field. Volt/centimeter is the more natural unit for lab-scale measurements like gel electrophoresis, while volt/meter is the SI-coherent unit used in most physics and engineering formulas.

Why are volt/mil and kilovolt/inch the same value?

A mil is one-thousandth of an inch, so one volt per mil describes the same field concentration as 1,000 volts spread across a full inch — which is exactly what one kilovolt per inch means. The two units describe the identical physical field strength using different but numerically equivalent groupings of volts and distance.

Is newton/coulomb really the same as volt/meter?

Yes — both are the SI-coherent definition of electric field strength, just arrived at from different starting points. Newton/coulomb comes from the Lorentz force law (force per unit charge), while volt/meter comes from potential divided by distance. They are dimensionally identical and carry a conversion factor of exactly 1.

Why is statvolt/centimeter so much larger than volt/meter?

Statvolt/centimeter comes from the CGS electrostatic (Gaussian) unit system, built directly from Coulomb's law rather than the SI's ampere-based conventions. The roughly 30,000x size gap between statvolt/centimeter and volt/meter traces back to the speed of light, which relates the electrostatic and electromagnetic CGS unit families to each other and to the SI.

Convert Newton/Coulomb to Other Electric Field Strength Units

Possible Electric Field Strength Conversions

Newton/Coulomb to Kilovolts/Meter Microvolt/Meter to Millivolts/Meter Abvolt/Centimeter to Microvolts/Meter Kilovolt/Meter to Millivolts/Meter Statvolt/Centimeter to Microvolts/Meter Kilovolt/Centimeter to Microvolts/Meter Statvolt/Inch to Volts/Centimeter Volt/Mil to Statvolts/Centimeter Volt/Meter to Abvolts/Centimeter Millivolt/Meter to Volts/Meter Volt/Inch to Millivolts/Meter Volt/Centimeter to Statvolts/Centimeter Abvolt/Centimeter to Volts/Centimeter Abvolt/Centimeter to Millivolts/Meter Microvolt/Meter to Volts/Meter Kilovolt/Meter to Statvolts/Centimeter Kilovolt/Meter to Newtons/Coulomb Volt/Inch to Microvolts/Meter Abvolt/Centimeter to Newtons/Coulomb Kilovolt/Inch to Volts/Inch Kilovolt/Meter to Microvolts/Meter Millivolt/Meter to Microvolts/Meter Millivolt/Meter to Kilovolts/Centimeter Kilovolt/Inch to Volts/Mil Volt/Meter to Volts/Centimeter Newton/Coulomb to Kilovolts/Centimeter Volt/Meter to Statvolts/Inch Statvolt/Centimeter to Kilovolts/Inch Newton/Coulomb to Abvolts/Centimeter Kilovolt/Inch to Volts/Centimeter Volt/Meter to Kilovolts/Inch Volt/Inch to Newtons/Coulomb Statvolt/Inch to Volts/Meter Microvolt/Meter to Kilovolts/Meter Statvolt/Centimeter to Newtons/Coulomb Volt/Centimeter to Newtons/Coulomb Millivolt/Meter to Volts/Centimeter Kilovolt/Inch to Statvolts/Centimeter Volt/Mil to Abvolts/Centimeter Volt/Centimeter to Volts/Mil Statvolt/Inch to Statvolts/Centimeter Millivolt/Meter to Kilovolts/Meter Newton/Coulomb to Statvolts/Centimeter Millivolt/Meter to Newtons/Coulomb Kilovolt/Inch to Statvolts/Inch Volt/Centimeter to Microvolts/Meter Kilovolt/Centimeter to Volts/Inch Kilovolt/Meter to Volts/Mil Kilovolt/Centimeter to Newtons/Coulomb Newton/Coulomb to Volts/Centimeter Volt/Inch to Volts/Centimeter Millivolt/Meter to Volts/Mil Abvolt/Centimeter to Kilovolts/Meter Statvolt/Centimeter to Millivolts/Meter Volt/Centimeter to Kilovolts/Meter Volt/Inch to Statvolts/Centimeter Microvolt/Meter to Statvolts/Centimeter Volt/Inch to Volts/Meter Kilovolt/Meter to Kilovolts/Centimeter Millivolt/Meter to Kilovolts/Inch Statvolt/Inch to Kilovolts/Meter Volt/Mil to Microvolts/Meter Newton/Coulomb to Statvolts/Inch Abvolt/Centimeter to Kilovolts/Inch Volt/Meter to Kilovolts/Centimeter Volt/Inch to Kilovolts/Centimeter Statvolt/Inch to Abvolts/Centimeter Volt/Inch to Abvolts/Centimeter Abvolt/Centimeter to Volts/Mil Abvolt/Centimeter to Kilovolts/Centimeter Kilovolt/Centimeter to Volts/Centimeter Millivolt/Meter to Abvolts/Centimeter Kilovolt/Inch to Abvolts/Centimeter Microvolt/Meter to Abvolts/Centimeter Volt/Meter to Volts/Inch Newton/Coulomb to Kilovolts/Inch Statvolt/Centimeter to Statvolts/Inch Volt/Mil to Volts/Meter Kilovolt/Centimeter to Millivolts/Meter Kilovolt/Inch to Millivolts/Meter Volt/Centimeter to Millivolts/Meter Volt/Meter to Millivolts/Meter Kilovolt/Centimeter to Statvolts/Inch Kilovolt/Inch to Newtons/Coulomb Abvolt/Centimeter to Volts/Meter Abvolt/Centimeter to Statvolts/Centimeter Newton/Coulomb to Volts/Inch Statvolt/Inch to Kilovolts/Centimeter Volt/Centimeter to Statvolts/Inch Volt/Mil to Newtons/Coulomb Volt/Inch to Kilovolts/Meter Abvolt/Centimeter to Statvolts/Inch Newton/Coulomb to Microvolts/Meter Statvolt/Inch to Microvolts/Meter Statvolt/Centimeter to Volts/Inch Microvolt/Meter to Kilovolts/Inch Statvolt/Centimeter to Abvolts/Centimeter Volt/Mil to Volts/Inch Microvolt/Meter to Statvolts/Inch Volt/Meter to Newtons/Coulomb Volt/Centimeter to Abvolts/Centimeter Kilovolt/Meter to Statvolts/Inch Newton/Coulomb to Millivolts/Meter Volt/Mil to Millivolts/Meter Volt/Inch to Statvolts/Inch Kilovolt/Inch to Microvolts/Meter Kilovolt/Meter to Abvolts/Centimeter Microvolt/Meter to Volts/Mil Volt/Centimeter to Kilovolts/Centimeter Millivolt/Meter to Volts/Inch Volt/Centimeter to Volts/Meter Kilovolt/Centimeter to Kilovolts/Inch Volt/Mil to Volts/Centimeter Statvolt/Centimeter to Volts/Meter Volt/Meter to Statvolts/Centimeter Millivolt/Meter to Statvolts/Centimeter Kilovolt/Meter to Volts/Centimeter Statvolt/Inch to Volts/Inch Newton/Coulomb to Volts/Mil Volt/Mil to Statvolts/Inch Abvolt/Centimeter to Volts/Inch Kilovolt/Meter to Kilovolts/Inch Kilovolt/Centimeter to Volts/Mil Statvolt/Inch to Volts/Mil Volt/Mil to Kilovolts/Meter Microvolt/Meter to Kilovolts/Centimeter Statvolt/Centimeter to Volts/Mil Statvolt/Centimeter to Kilovolts/Meter Microvolt/Meter to Newtons/Coulomb Volt/Meter to Kilovolts/Meter Kilovolt/Meter to Volts/Inch Kilovolt/Centimeter to Kilovolts/Meter Volt/Centimeter to Volts/Inch Volt/Inch to Kilovolts/Inch Volt/Mil to Kilovolts/Inch Volt/Mil to Kilovolts/Centimeter Kilovolt/Centimeter to Statvolts/Centimeter Kilovolt/Inch to Volts/Meter Kilovolt/Meter to Volts/Meter Volt/Centimeter to Kilovolts/Inch Millivolt/Meter to Statvolts/Inch Volt/Inch to Volts/Mil Kilovolt/Centimeter to Abvolts/Centimeter Kilovolt/Centimeter to Volts/Meter Statvolt/Inch to Newtons/Coulomb Statvolt/Inch to Kilovolts/Inch Microvolt/Meter to Volts/Centimeter Kilovolt/Inch to Kilovolts/Centimeter Statvolt/Inch to Millivolts/Meter Statvolt/Centimeter to Volts/Centimeter Statvolt/Centimeter to Kilovolts/Centimeter Volt/Meter to Microvolts/Meter Volt/Meter to Volts/Mil Microvolt/Meter to Volts/Inch Newton/Coulomb to Volts/Meter Kilovolt/Inch to Kilovolts/Meter

See also