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Hello everyone, let's get started.
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So the question is about hardy -weenberg principle or hardy -weenberg equilibrium.
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So this last states that the allele and genotype frequencies, allele and genotype frequencies in a population will remain constant from generation to generation in the absence of other evolutionary influences.
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These evolutionary influences includes genetic drift, mate choice, assortative mating, natural selection, sexual selection, mutation, gene flow, meotic drive, population bottleneck, fonder effect in breeding and outbreeding depression.
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In the simplest case of a single locus with two values, way denoted as let's say capital a and small a.
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These are the alleles with frequencies of having, let's say, frequency of a will be p and frequency of small a will be q.
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So these, the expected g notary frequencies under random mating are g0.
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F frequencies will be p square for a homozygous, q squared.
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Whereas for a heterozygous to pq.
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So in the absence of selection, mutation, genetic refer the other forces, allil frequencies, that is, p and q are constant between generation.
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So equilibrium is reached.
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So the principle is named after the scientist hardy william weinberg, who first demonstrated it mathematically.
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Hardy's paper was focused on debunking the view that the dominant allude automatically tend to increase in...