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Science

Hardy-Weinberg Carrier Frequency Calculator

Allele frequencies, carrier frequency and genotype proportions from the frequency of the recessive phenotype.

Results

Carriers in the population 32.0000 %
Recessive allele frequency (q) 0.200000
Dominant allele frequency (p) 0.800000
Homozygous dominant 64.0000 %
One carrier in every 3.13

What this tool does

The counter-intuitive result of the Hardy-Weinberg principle is how many unaffected carriers a rare recessive condition implies. If one person in twenty-five shows the recessive trait, one in three carries the allele without knowing it — and the rarer the condition, the larger the ratio of carriers to affected people becomes. Enter the frequency of the recessive phenotype as a decimal, so 1 in 2500 is 0.0004.

Formula

p + q = 1 ; p² + 2pq + q² = 1

Variables

SymbolMeaningUnit
q2Frequency of the recessive phenotype
CACarriers in the population%
QQRecessive allele frequency (q)
PPDominant allele frequency (p)
HDHomozygous dominant%
CROne carrier in every

Worked example

  • Frequency of the recessive phenotype0.04
  • Carriers in the population32.0000 %
  • Recessive allele frequency (q)0.200000
  • Dominant allele frequency (p)0.800000
  • Homozygous dominant64.0000 %
  • One carrier in every3.13

Limitations

  • The formula assumes ideal conditions: no friction losses, no air resistance and no efficiency losses unless you enter them.
  • This tool is informational only. It does not diagnose, treat or replace a qualified health professional. Speak to a doctor before making decisions about your health.

Frequently asked questions

What assumptions does this rely on?

Five: a large population, random mating, no migration in or out, no new mutation, and no selection for or against either allele. Real populations break at least one of these, and the deviation is precisely what population geneticists measure. The equilibrium is best used as the null hypothesis to test against, not as a description of reality.