Il uivide the class into three small isolated populations. Follow the Same procedure as Population One, but mating can only occur within your small group. Repeat steps 4-8 until you have data from at least six generations. Graph the allele frequencies. Additional Questions 1) A population of mice may be brown (dominant phenotype) or white (recessive phenotype). Brown mice have the genotype BB or Bb. White mice have the genotype bb. The frequency of the BB genotype is .30. a. What is the frequency of heterozygous mice? b. What is the frequency of the B allele? c. What is the frequency of the b allele? 2) Brown hair (B) is dominant to blond hair (b). If there are 150 brown haired people in a population of 200: a. What is the predicted frequency of heterozygotes? b. What is the predicted frequency of homozygous dominant? c. What is the predicted frequency of homozygous recessive? 3) If 96 out of 200 individuals in a population express the recessive phenotype, what percent of the population are heterozygotes? 4) A hypothetical population of 100,000 humans has 68,240 individuals with the blood type AA, 28,735 individuals with blood type AB and 3025 individuals with the blood type BB. a. What is the frequency of each genotype in this population? b. What is the

Human Anatomy & Physiology (11th Edition)
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Chapter1: The Human Body: An Orientation
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Il uivide the class into three small isolated populations. Follow the
Same procedure as Population One, but mating can only occur within your small group.
Repeat steps 4-8 until you have data from at least six generations. Graph the allele
frequencies.
Additional Questions
1) A population of mice may be brown (dominant phenotype) or white (recessive
phenotype). Brown mice have the genotype BB or Bb. White mice have the
genotype bb. The frequency of the BB genotype is .30.
a. What is the frequency of heterozygous mice?
b. What is the frequency of the B allele?
c. What is the frequency of the b allele?
2) Brown hair (B) is dominant to blond hair (b). If there are 150 brown haired people
in a population of 200:
a. What is the predicted frequency of heterozygotes?
b. What is the predicted frequency of homozygous dominant?
c. What is the predicted frequency of homozygous recessive?
3) If 96 out of 200 individuals in a population express the recessive phenotype, what
percent of the population are heterozygotes?
4) A hypothetical population of 100,000 humans has 68,240 individuals with the
blood type AA, 28,735 individuals with blood type AB and 3025 individuals with
the blood type BB.
a. What is the frequency of each genotype in this population?
b. What is the
Transcribed Image Text:Il uivide the class into three small isolated populations. Follow the Same procedure as Population One, but mating can only occur within your small group. Repeat steps 4-8 until you have data from at least six generations. Graph the allele frequencies. Additional Questions 1) A population of mice may be brown (dominant phenotype) or white (recessive phenotype). Brown mice have the genotype BB or Bb. White mice have the genotype bb. The frequency of the BB genotype is .30. a. What is the frequency of heterozygous mice? b. What is the frequency of the B allele? c. What is the frequency of the b allele? 2) Brown hair (B) is dominant to blond hair (b). If there are 150 brown haired people in a population of 200: a. What is the predicted frequency of heterozygotes? b. What is the predicted frequency of homozygous dominant? c. What is the predicted frequency of homozygous recessive? 3) If 96 out of 200 individuals in a population express the recessive phenotype, what percent of the population are heterozygotes? 4) A hypothetical population of 100,000 humans has 68,240 individuals with the blood type AA, 28,735 individuals with blood type AB and 3025 individuals with the blood type BB. a. What is the frequency of each genotype in this population? b. What is the
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