If the population has the following number of individuals: AA=3 Aa=2 aa=0 What is the frequency of each genotype? What is the frequency of each allele?
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If the population has the following number of individuals: AA=3 Aa=2 aa=0 What is the frequency of each genotype? What is the frequency of each allele?
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- A population is made up of individuals where 77 have the A1A1 genotype, 65 have the A1A2 genotype, and 123 have the A2A2 genotype. What is the allele frequency of A1? Answer to 2 decimal places.A hypothethical population of 10,000 humans has 6,840 individuals with the blood type AA, 2,860 individuals with blood type AB and 300 individuals with the blood type BB. What is the frequency of each genotype in this population? AA = AB = BB = What is the frequency of the A allele? What is the frequency of the B allele?If a population has the following number of individuals: AA=3 Aa=2 aa=0. What is the (observed) frequency of each genotype? What is the (observed) frequency of each allele?
- If 12 individuals have the genotype AA and there are 100 total individuals in the population what is the frequency of AA?There are 5 individuals in a population. Blue is dominant to orange and there is 1 homozygous dominant, 1 heterozygote, and 3 homozygous recessive individuals. What is the observed allele frequency of the orange allele?60 individuals have the genotype AA28 individuals have the genotype Aa12 individuals have the genotype aaWhat is the frequency of the A allele?Think of how many alleles in total?hint: add up the number of A alleles in this population: AA= 60+60 and Aa= 28.Add those together and divide by the total number of alleles.
- What are the frequencies of allele A and allele a in a population that has individuals with the following genotypes? AA= 81 Aa= 18 aa= 1A given autosomal locus has three possible alleles (A1, A2, and A3). Assuming that the numbers of individuals with the six possible genotypes are as follows, what would be the frequency of the A1 allele in the population? A1A1 = 30 A1A2 = 27 A2A2 = 12 A1A3 = 17 A2A3 = 10 A3A3 = 4 What would be the frequency of the A1A3 genotype? Assume the population is under Hardy-Weinberg equilibrium. A. 0.317 B. 0.182 C. 0.03 D. 0.09 E. 0.27 F. 0.107A hypothethical population of 10,000 humans has 6,840 individuals with the blood type AA, 2,860 individuals with blood type AB and 300 individuals with the blood type BB. What is the frequency of each genotype in this population? AA = AB = BB = What is the frequency of the A allele? What is the frequency of the B allele? If the next generation contained 25,000 individuals, how many individuals would have blood type BB, assuming the population is in Hardy-Weinberg equlibrium?
- A given autosomal locus has three possible alleles (A1, A2, and A3). Assuming that the numbers of individuals with the six possible genotypes are as follows, what would be the frequency of the A1 allele in the population? A1A1 = 30 A1A2 = 27 A2A2 = 12 A1A3 = 17 A2A3 = 10 A3A3 = 4 What is the frequency of A2 allele in the population? A. 0.74 B. 0.175 C. 0.375 D. 0.52 E. 0.305A population of cats can be either black or white; the black allele (B) has complete dominance over the white allele. Given a population of 1,000 cats, 720 black and 280 white, determine the allele frequency, the frequency of individuals per genotype, and a number of individuals per genotype.There are three alleles at a gene determining eye color in a population of wild cats, the B allele (brown eyes) is dominant to both the G allele (green eyes) and the Y allele (yellow eyes). The G allele is dominant to the Y allele. In a population of 1000, there are 100 yellow-eyed cats, 400 green-eyed cats, and 500 brown-eyed cats. What is the expected frequency of the Y allele? 0.10 0.01 0.55 0.32 0.71