This mathematics problem involves applying core mathematical principles and formulas. Below you will find a complete step-by-step solution with detailed explanations for each step, helping you understand not just the answer but the method behind it.

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Here are the formulas for the Hardy-Weinberg principle:
The Hardy-Weinberg principle describes the genetic equilibrium of a population, assuming no evolutionary influences. It consists of two main equations:
Allele Frequency Equation: This equation describes the frequencies of the dominant and recessive alleles in a population. Where: • = frequency of the dominant allele • = frequency of the recessive allele
Genotype Frequency Equation: This equation describes the frequencies of the three possible genotypes (homozygous dominant, heterozygous, and homozygous recessive) in a population. Where: • = frequency of the homozygous dominant genotype • = frequency of the heterozygous genotype • = frequency of the homozygous recessive genotype
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The Hardy-Weinberg principle describes the genetic equilibrium of a population, assuming no evolutionary influences.
This mathematics problem involves applying core mathematical principles and formulas. Below you will find a complete step-by-step solution with detailed explanations for each step, helping you understand not just the answer but the method behind it.