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13,000 × g to RPM

13,000 × g at common rotor radii

Rotor radiusSpeed to set
5 cm15,250 RPM
6 cm13,921 RPM
7 cm12,888 RPM
8 cm12,056 RPM
8.5 cm11,696 RPM
9 cm11,367 RPM
10 cm10,783 RPM
12 cm9,844 RPM
15 cm8,805 RPM
20 cm7,625 RPM

How to set a centrifuge to 13,000 × g

  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; 13,000 × g is already filled in.
  2. The RPM to set is shown as you type. The table below gives it for common radii.
  3. Set the centrifuge to that RPM, or enter the × g directly if it has an RCF mode.

Frequently asked questions

How many RPM is 13,000 × g?

It depends on the rotor. At an 8.5 cm radius, typical for a microcentrifuge, 13,000 × g is about 11,696 RPM; at 10 cm it is about 10,783 RPM. The formula is RPM = √(RCF ÷ (1.118 × 10⁻⁵ × r)), with r in cm.

Is 13,000 g the same as 13,000 RCF?

Yes. RCF, relative centrifugal force, is written as a multiple of g, so 13,000 × g, 13,000 RCF and 13,000 g all mean the same force.

Why does a bigger rotor need fewer RPM?

Force grows in proportion to the radius, so a rotor twice the size reaches 13,000 × g at 8,270 RPM of the speed (1 ÷ √2, about 71%).

Common centrifuge speeds

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