8. Describe your experimental set-up, which includes the phenotypes of the parents and the expected proportions in the offspring. You will need to propose which trait is dominant, either the wild-type or the mutant. (Note, many of the fruit fly traits are controlled by multiple factors, so you may not get the expected results.) 9. Complete the table showing your observed and expected results. 10. Use the chi square calculator to analyze your results. Provide a summary that includes whether you support or reject the hypothesis
8. Describe your experimental set-up, which includes the phenotypes of the parents and the expected proportions in the offspring. You will need to propose which trait is dominant, either the wild-type or the mutant. (Note, many of the fruit fly traits are controlled by multiple factors, so you may not get the expected results.) 9. Complete the table showing your observed and expected results. 10. Use the chi square calculator to analyze your results. Provide a summary that includes whether you support or reject the hypothesis
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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pls answer no. 8,9 and 10. thank u in advance!

Transcribed Image Text:Design
Mate
Crosses
Analyze Lab Notes
Copyright © 2019, Robert A. Desharnais, Ph.D.
Virtual Courseware Project, ScienceCourseware.org
Flies to be Mated
Female: +
Source: Design View
Male: CY
Source: Design View
Mate Elies
Parents of Cross #1
Select Cross
Eemale +: N - 1
Male: CY: N-1
Q Select to Mate
Select to Mate
Offspring of Cross #1
Eemale: + N = 261
Male: +; N = 227
Eemale: CY: N = 248
Male: CY: N- 240
Q Select to Mate
Q Select to Mate
Q Select to Mate
Q Select to Mate
Design
Mate
Crosses
Analyze Lab Notes
Copyright © 2019, Robert A. Desharnais, Ph.D.
Virtual Courseware Project, ScienceCourseware.org
Select Cross
Ignore sex of flies
V Include a test of hypothesis
Results for Cross #1
Phenotype
Female: +
Observed
Proportion Hypothesis Probablity
Expected
(0-E)²/E
261
0.2674
244
0.2500
244.00
1.18
Male:+
227
0.2326
244
0.2500
244.00
1.18
Female: CY
248
0.2541
244
0.2500
244.00
0.07
Male: CY
240
0.2459
244
0.2500
244.00
0.07
Total
1.0000
976
976
1.0000
976.00
2.50
New Hypothesis
Chi-squared test statistic: 2.50
Degrees of freedom: 3
Level of significance: 0.4753
Add Results to Lab Notes

Transcribed Image Text:Design another monohybrid cross using any of the wing shape phenotypes
8. Describe your experimental set-up, which includes
the phenotypes of the parents and the expected
proportions in the offspring. You will need to propose
which trait is dominant, either the wild-type or the
mutant. (Note, many of the fruit fly traits are controlled
by multiple factors, so you may not get the expected
results.)
9. Complete the table showing your observed and
expected results.
Obs
Еxp
10. Use the chi square calculator to analyze your
results. Provide a summary that includes whether you
support or reject the hypothesis
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