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23 March 2024
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N 09:53 | Definition:Hardy-Weinberg Equilibrium 2 changes history +925 [Prime.mover (2×)] | |||
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09:53 (cur | prev) +11 Prime.mover talk contribs | |||
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09:33 (cur | prev) +914 Prime.mover talk contribs (Created page with "== Definition == <onlyinclude> Let $A$ and $a$ be alleles. Let $A$ and $a$ occur in a population in proportions $p$ and $q = 1 - p$. Then the genotypes $AA$, $Aa$ and $aa$ are in Hardy-Weinberg equilibrium when their proportions $p^2$, $2 p q$ and $q^2$. </onlyinclude> == Also see == {{Link-to-category|...") |
N 09:49 | Hardy-Weinberg Principle diffhist +65 Prime.mover talk contribs (Redirected page to Hardy-Weinberg Law) |
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N 09:46 | Hardy-Weinberg Law 3 changes history +1,065 [Prime.mover (3×)] | |||
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09:46 (cur | prev) +96 Prime.mover talk contribs | ||||
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09:18 (cur | prev) +3 Prime.mover talk contribs | |||
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09:17 (cur | prev) +966 Prime.mover talk contribs (Created page with "== Theorem == <onlyinclude> Let $A$ and $a$ be alleles. Let $A$ and $a$ occur in a population in poportions $p$ and $q = 1 - p$. Then after one generation of random mating, the genotypes $AA$, $Aa$ and $aa$ are in poportions $p^2$, 2 p q$ and $q^2$. </onlyinclude> == Proof == {{ProofWanted}} == Also see == * Definition:Hardy-Weinberg Equili...") |
N 08:32 | Category:Named Theorems/Weinberg diffhist +33 Prime.mover talk contribs (Created page with "{{NameCategory|Wilhelm Weinberg}}") |
N 08:32 | Category:Definitions/Named Definitions/Weinberg diffhist +36 Prime.mover talk contribs (Created page with "{{NameCategoryDef|Wilhelm Weinberg}}") |
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08:27 | Mathematician:Godfrey Harold Hardy 2 changes history +11 [Prime.mover (2×)] | |||
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08:27 (cur | prev) +7 Prime.mover talk contribs | ||||
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00:42 (cur | prev) +4 Prime.mover talk contribs |