## ››Convert teranewton to micronewton

 teranewton micronewton

How many teranewton in 1 micronewton? The answer is 1.0E-18.
We assume you are converting between teranewton and micronewton.
You can view more details on each measurement unit:
teranewton or micronewton
The SI derived unit for force is the newton.
1 newton is equal to 1.0E-12 teranewton, or 1000000 micronewton.
Note that rounding errors may occur, so always check the results.
Use this page to learn how to convert between teranewtons and micronewtons.
Type in your own numbers in the form to convert the units!

## ››Quick conversion chart of teranewton to micronewton

1 teranewton to micronewton = 1.0E+18 micronewton

2 teranewton to micronewton = 2.0E+18 micronewton

3 teranewton to micronewton = 3.0E+18 micronewton

4 teranewton to micronewton = 4.0E+18 micronewton

5 teranewton to micronewton = 5.0E+18 micronewton

6 teranewton to micronewton = 6.0E+18 micronewton

7 teranewton to micronewton = 7.0E+18 micronewton

8 teranewton to micronewton = 8.0E+18 micronewton

9 teranewton to micronewton = 9.0E+18 micronewton

10 teranewton to micronewton = 1.0E+19 micronewton

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You can do the reverse unit conversion from micronewton to teranewton, or enter any two units below:

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## ››Definition: Teranewton

The SI prefix "tera" represents a factor of 1012, or in exponential notation, 1E12.

So 1 teranewton = 1012 newtons.

The definition of a newton is as follows:

In physics, the newton (symbol: N) is the SI unit of force, named after Sir Isaac Newton in recognition of his work on classical mechanics. It was first used around 1904, but not until 1948 was it officially adopted by the General Conference on Weights and Measures (CGPM) as the name for the mks unit of force.

## ››Definition: Micronewton

The SI prefix "micro" represents a factor of 10-6, or in exponential notation, 1E-6.

So 1 micronewton = 10-6 newtons.

The definition of a newton is as follows:

In physics, the newton (symbol: N) is the SI unit of force, named after Sir Isaac Newton in recognition of his work on classical mechanics. It was first used around 1904, but not until 1948 was it officially adopted by the General Conference on Weights and Measures (CGPM) as the name for the mks unit of force.

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