The Hardy-Weinberg principle cannot operate if

  • A
    the population is very large
  • B
    frequent mutations occur in the population
  • C
    the population has no chance of interaction with other populations
  • D
    free interbreeding occurs among all members of the population

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Similar Questions

In a population exhibiting random mating,the frequency of a disease-causing recessive allele is $80\%$. What will be the frequency of carrier individuals in the population (in $\%$)?

In the Hardy-Weinberg equation $p^{2} + 2pq + q^{2} = 1$,which term represents the frequency of the homozygous recessive genotype?

In the Hardy-Weinberg principle,the expression of allele frequency is represented by:

In a population at Hardy-Weinberg equilibrium,the frequency of allele '$A$' is $0.6$ and the frequency of allele '$a$' is $0.4$. What will be the frequency of heterozygotes in the population?

In the Hardy-Weinberg equation,how is the frequency of heterozygous individuals represented?

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