This lab exercise requires that we count certain Mendelian traits among students lab. Your professor will explain each trait being addressed and will then ask students to identify if they are dominant or recessive for that specific trait. The collected traits will then be plugged into the Hardy-Weinberg Equilibrium formula in order to calculate frequency of Homozygous dominant, Heterozygous and Homozygous recessive individuals in the same. 19 4 Trait Q observe d Ear wax 2 Widows peak 3 Hair whirl Ear lobe p2 + 2pq+q2 = 100 Homozygous dominant [p2] 12 3 Heterozygous [2pq] 18 Homozygous recessive [92] 7 16 Number of responder S 19 19 19

Human Heredity: Principles and Issues (MindTap Course List)
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Chapter19: Population Genetics And Human Evolution
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Problem 9QP: Using the HardyWeinberg Law in Human Genetics Suppose you are monitoring the allelic and genotypic...
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19 individuals total please plug into the hardy weinberg equilibrium formula p2 + 2pq + q2 = 100 to calculate frequency thank you! 1).ear wax: 1 dominant 18 recessive 2).widows peak : 12 dominant 7 recessive 3). ear lobe: 3 dominant 16 recessive
This lab exercise requires that we count certain Mendelian traits among students
lab. Your professor will explain each trait being addressed and will then ask students to identify
if they are dominant or recessive for that specific trait. The collected traits will then be plugged
into the Hardy-Weinberg Equilibrium formula in order to calculate frequency of Homozygous
dominant, Heterozygous and Homozygous recessive individuals in the same.
19
4
Trait
Q observe
d
Ear wax
2 Widows
peak
3 Hair
whirl
Ear lobe
p2 + 2pq+q2 = 100
Homozygous
dominant [p2]
12
3
Heterozygous
[2pq]
18
Homozygous
recessive [92]
7
16
Number of
responder
S
19
19
19
Transcribed Image Text:This lab exercise requires that we count certain Mendelian traits among students lab. Your professor will explain each trait being addressed and will then ask students to identify if they are dominant or recessive for that specific trait. The collected traits will then be plugged into the Hardy-Weinberg Equilibrium formula in order to calculate frequency of Homozygous dominant, Heterozygous and Homozygous recessive individuals in the same. 19 4 Trait Q observe d Ear wax 2 Widows peak 3 Hair whirl Ear lobe p2 + 2pq+q2 = 100 Homozygous dominant [p2] 12 3 Heterozygous [2pq] 18 Homozygous recessive [92] 7 16 Number of responder S 19 19 19
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