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Hardy- Weinberg Equation questions with answers.

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Hardy- Weinberg Equation questions with answers.What is the equation? The equation is p2 + 2pq + q2 = 1 What does this principle mean? This principle means that the combined frequencies of all alleles for a gene in a population must equal 1. The hardy principle tells us that something other than the reshuffling processes of sexual reproduction is required to change allele frequencies in a population Name and explain 3 applications for this principle. -Very large population: the smaller the population, the more likely that allele frequencies will fluctuate by chance from one generation to the next. -No gene flow between parents: When individuals move into or out of populations, they add or remove alleles, altering the gene pool. - No mutations: By changing alleles or deleting or duplicating genes, mutations modify the gene pool How does this play a role in what we have learned about evolution and populations? We learned how to estimate the amount of people that carry alleles for a certain disease. We can calculate the frequencies of alleles in populations and we can also estimate what frequencies will be in the next generation. What can it do? It can determine whether population is devolving; they can also track diseases in population What do the components of the equation stand for? Frequency of homozygous dominants + frequency of heterozygotes + Frequency of homozygous recessive =

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Hardy- Weinberg Equation
What is the equation? - Answer The equation is p2 + 2pq + q2 = 1

What does this principle mean? - Answer This principle means that the combined
frequencies of all alleles for a gene in a population must equal 1. The hardy principle
tells us that something other than the reshuffling processes of sexual reproduction is
required to change allele frequencies in a population

Name and explain 3 applications for this principle. - Answer -Very large population: the
smaller the population, the more likely that allele frequencies will fluctuate by chance
from one generation to the next.
-No gene flow between parents: When individuals move into or out of populations, they
add or remove alleles, altering the gene pool.
- No mutations: By changing alleles or deleting or duplicating genes, mutations modify
the gene pool

How does this play a role in what we have learned about evolution and populations? -
Answer We learned how to estimate the amount of people that carry alleles for a certain
disease. We can calculate the frequencies of alleles in populations and we can also
estimate what frequencies will be in the next generation.

What can it do? - Answer It can determine whether population is devolving; they can
also track diseases in population

What do the components of the equation stand for? - Answer Frequency of
homozygous dominants + frequency of heterozygotes + Frequency of homozygous
recessive =

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