Suppose the human trait for hair type is controlled by a simple dominant and recessive relationship at one locus. Curly hair, C, is the dominant allele, and straight hair, c, is the recessive allele. In a college genetics class, the professor takes a tally of students who have curly hair and of students with straight hair. In this class of 131 students, 52 have curly hair. Calculate the frequency of the dominant allele, C, and the heterozygous genotype, Cc. Express the frequencies in decimal form rounded to the nearest thousandth. Assume the class is in Hardy-Weinberg equilibrium for this trait.

Human Heredity: Principles and Issues (MindTap Course List)
11th Edition
ISBN:9781305251052
Author:Michael Cummings
Publisher:Michael Cummings
Chapter19: Population Genetics And Human Evolution
Section: Chapter Questions
Problem 12QP
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Suppose the human trait for hair type is controlled by a simple dominant and recessive relationship at one locus. Curly hair,
C, is the dominant allele, and straight hair, c, is the recessive allele.
In a college genetics class, the professor takes a tally of students who have curly hair and of students with straight hair. In
this class of 131 students, 52 have curly hair.
Calculate the frequency of the dominant allele, C, and the heterozygous genotype, Cc. Express the frequencies in decimal
form rounded to the nearest thousandth. Assume the class is in Hardy-Weinberg equilibrium for this trait.
frequency of C: |
frequency of Cc:
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Transcribed Image Text:Suppose the human trait for hair type is controlled by a simple dominant and recessive relationship at one locus. Curly hair, C, is the dominant allele, and straight hair, c, is the recessive allele. In a college genetics class, the professor takes a tally of students who have curly hair and of students with straight hair. In this class of 131 students, 52 have curly hair. Calculate the frequency of the dominant allele, C, and the heterozygous genotype, Cc. Express the frequencies in decimal form rounded to the nearest thousandth. Assume the class is in Hardy-Weinberg equilibrium for this trait. frequency of C: | frequency of Cc: about us careers privacy policy terms of use contact us help
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