A rat breeder has hired you as a genetic consultant to predict and provide advice on breeding desirable traits (fancy rats). One of these traits is curly fur and is controlled by a single gene. Fortunately, this gene displays incomplete dominance with the wild-type allele and therefore you can count the number of animals with each phenotype. 12 animals do not have curly hair, 25 have mildly curly hair, and 15 have extra curly hair. Is this population in Hardy-Weinberg equilibrium? Use chi-squared analysis to test this. X² = (-e)² 1.X² Value: type your answer... 2. Degrees of Freedom: type your answer... 3. p-value: type your answer... Table 11.5 Chi-Square Probabilities Probabilities df 0.95 0.90 0.70 0.30 0.30 0.20 0.10 0.05 0.01 0.001 1 0.004 0.016 0.15 0.46 1.07 1.64 2.71 3.84 6.64 10.83 2 0.10 0.21 0.71 1.39 2.41 3.22 4.61 5.99 9.21 13.82 3 0.35 0.58 1.42 2.37 3.67 4.64 6.25 7.82 11.35 16.27 + 0.71 1.06 2.20 3.36 4.88 5.99 7.78 9.49 13.28 18.47 4. Determination: YES these are in equilibrium, NO they are not type your answer... 5 1.15 1.61 3.00 4.35 6.06 7.29 9.24 11.07 15.09 20.52 6 1.64 2.20 3.83 5.35 7.23 8.56 10.65 12.59 16.81 22.46

Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
Section: Chapter Questions
Problem 1RQ: The correct sequence of levels forming the structural hierarchy is A. (a) organ, organ system,...
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A rat breeder has hired you as a genetic consultant to predict and provide advice on breeding desirable traits (fancy rats). One of these traits is curly fur and is controlled by a
single gene. Fortunately, this gene displays incomplete dominance with the wild-type allele and therefore you can count the number of animals with each phenotype. 12
animals do not have curly hair, 25 have mildly curly hair, and 15 have extra curly hair.
Is this population in Hardy-Weinberg equilibrium? Use chi-squared analysis to test this. X² = (-e)²
1.X² Value: type your answer...
2. Degrees of Freedom: type your answer...
3. p-value: type your answer...
Table 11.5 Chi-Square Probabilities
Probabilities
df
0.95
0.90
0.70
0.30
0.30
0.20
0.10
0.05
0.01
0.001
1
0.004
0.016
0.15
0.46
1.07
1.64
2.71
3.84
6.64
10.83
2
0.10
0.21
0.71
1.39
2.41
3.22
4.61
5.99
9.21
13.82
3
0.35
0.58
1.42
2.37
3.67
4.64
6.25
7.82
11.35
16.27
+
0.71
1.06
2.20
3.36
4.88
5.99
7.78
9.49
13.28
18.47
4. Determination: YES these are in equilibrium, NO they are not
type your answer...
5
1.15
1.61
3.00
4.35
6.06
7.29
9.24
11.07
15.09
20.52
6
1.64
2.20
3.83
5.35
7.23
8.56
10.65
12.59
16.81
22.46
Transcribed Image Text:A rat breeder has hired you as a genetic consultant to predict and provide advice on breeding desirable traits (fancy rats). One of these traits is curly fur and is controlled by a single gene. Fortunately, this gene displays incomplete dominance with the wild-type allele and therefore you can count the number of animals with each phenotype. 12 animals do not have curly hair, 25 have mildly curly hair, and 15 have extra curly hair. Is this population in Hardy-Weinberg equilibrium? Use chi-squared analysis to test this. X² = (-e)² 1.X² Value: type your answer... 2. Degrees of Freedom: type your answer... 3. p-value: type your answer... Table 11.5 Chi-Square Probabilities Probabilities df 0.95 0.90 0.70 0.30 0.30 0.20 0.10 0.05 0.01 0.001 1 0.004 0.016 0.15 0.46 1.07 1.64 2.71 3.84 6.64 10.83 2 0.10 0.21 0.71 1.39 2.41 3.22 4.61 5.99 9.21 13.82 3 0.35 0.58 1.42 2.37 3.67 4.64 6.25 7.82 11.35 16.27 + 0.71 1.06 2.20 3.36 4.88 5.99 7.78 9.49 13.28 18.47 4. Determination: YES these are in equilibrium, NO they are not type your answer... 5 1.15 1.61 3.00 4.35 6.06 7.29 9.24 11.07 15.09 20.52 6 1.64 2.20 3.83 5.35 7.23 8.56 10.65 12.59 16.81 22.46
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