If the frequency of the '$A$' allele is $0.4$,find the frequency of the '$B$' allele and the heterozygous genotype in a random mating population at equilibrium.

  • A
    $0.6$ and $0.24$
  • B
    $0.6$ and $0.96$
  • C
    $0.6$ and $0.48$
  • D
    $0.6$ and $0.50$

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Which of the following factors can cause a change in the frequency of genes or alleles in future generations?

$A$ population consists of $1000$ individuals. $480$ individuals are $Aa$ and $160$ individuals are $aa$. Based on the given information,what is the frequency of allele $A$?

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According to the Hardy-Weinberg principle,a difference in the values of measured and expected allelic frequencies indicates all of the following,except:

According to the Hardy-Weinberg principle,allele and genotype frequencies in a population will remain constant from generation to generation in the absence of other evolutionary influences. It makes several assumptions which are given below:
$i.$ Random Mating
$ii.$ Sexual Reproduction
$iii.$ Non-overlapping Generations
$iv.$ Occurrence of Natural Selection
$v.$ Small size of population
Identify two assumptions which do not meet the criteria for a population to reach Hardy-Weinberg Equilibrium.

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