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15,000 RPM to g

15,000 RPM at common rotor radii

Rotor radiusForce
5 cm12,577 × g
6 cm15,093 × g
7 cm17,609 × g
8 cm20,124 × g
8.5 cm21,382 × g
9 cm22,639 × g
10 cm25,155 × g
12 cm30,186 × g
15 cm37,733 × g
20 cm50,310 × g

How to find the × g of 15,000 RPM

  1. Find the radius of your rotor in cm, from the centre of the rotor to the bottom of the tube. It is printed on the rotor or in its manual. Enter it above; 15,000 RPM is already filled in.
  2. The force in × g is shown as you type. The table below gives it for common radii.
  3. Compare it with the × g your protocol asks for, and adjust the speed if needed.

Frequently asked questions

How many g is 15,000 RPM?

It depends on the rotor. At an 8.5 cm radius, typical for a microcentrifuge, 15,000 RPM is about 21,382 × g; at 10 cm it is about 25,155 × g. The formula is RCF = 1.118 × 10⁻⁵ × r × RPM², with r in cm.

Why do protocols give × g rather than RPM?

The same RPM gives a different force in every rotor, while × g is the force on the sample itself, so a protocol in × g works on any centrifuge.

What happens at twice the speed?

Force rises with the square of the speed: NaN RPM gives four times the force of 15,000 RPM, about 85,527 × g in an 8.5 cm rotor.

Common centrifuge speeds

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