Instant · Precise · Universal
47 units available
6 categories total
To mL: divide by 1,000. To liters: multiply by 10⁻⁶. To nanoliters: multiply by 1,000.
1 µL = 10⁻⁶ L = 10⁻³ mL = 1 mm³ = 1,000 nL. One milliliter = 1,000 µL.
For example, 1 Microliter (µL) = 1000 Nanoliter (nL).
| Microliter (µL) | Nanoliter (nL) |
|---|---|
| 0.1 | 100 |
| 0.5 | 500 |
| 1 | 1000 |
| 2 | 2000 |
| 5 | 5000 |
| 10 | 10000 |
| 25 | 25000 |
| 50 | 50000 |
| 100 | 100000 |
| 500 | 500000 |
| 1000 | 1000000 |
The microliter is a unit of volume equal to 10⁻⁶ liters, or one millionth of a liter, equivalent to one cubic millimeter.
1 µL = 10⁻⁶ L = 10⁻³ mL = 1 mm³ = 1,000 nL. One milliliter = 1,000 µL.
To mL: divide by 1,000. To liters: multiply by 10⁻⁶. To nanoliters: multiply by 1,000.
Pipetting in labs, blood glucose monitor samples (~0.3–1 µL), PCR reactions (10–50 µL), and HPLC injection volumes.
A modern blood glucose meter needs only about 0.3 µL of blood — less than a small pinprick. Older models required 10+ µL.
Confusing µL with mL — 1 mL = 1,000 µL. Pipetting errors at this scale significantly affect experimental results.
A microliter is a cube 1 mm on each side. A micro-pipette labeled 'P20' dispenses 2–20 µL — a staple in every biology lab.
The nanoliter is a unit of volume equal to 10⁻⁹ liters, or one billionth of a liter.
1 nL = 10⁻⁹ L = 10⁻⁶ mL = 1,000 pL = 10⁻³ µL. One microliter = 1,000 nL.
To microliters: divide by 1,000. To picoliters: multiply by 1,000. To liters: multiply by 10⁻⁹.
Micro-dosing drug compounds, DNA micro-array printing, micro-fluidic diagnostic chips, and nano-dispensing robots.
Some advanced liquid handlers can dispense volumes as small as 2.5 nL with high accuracy, enabling drug discovery at microscale.
Confusing nL with mL — there are one million nL in a single mL. Always double-check prefix meanings.
Nanoliter = one millionth of a mL. Think of it as a tiny drop invisible to the eye — about the volume of a cube 100 µm on each side.



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