P Critical Values of the x2 Distribution 0.995 0.975 0.9 0.5 0.1 0.455 2.706 1.386 .000 .000 0.016 0.010 0.051 0.211 0.072 0.216 0.584 0.207 0.484 1.064 2.366 3.357 0.412 0.831 1.610 4.351 0.05 0.025 0.01 3.841 5.024 6.635 7.378 9.210 4.605 5.991 6.251 7.815 9.348 11.345 7.779 9.488 11.143 13.277 12.832 15.086 9.236 11.070 0.005 df 7.879 1 10.597 2 12.838 3 14.860 4 16.750 5 18.548 6 0.676 1.237 2.204 5.348 10.645 12.592 14.449 16.812 0.989 1.690 2.833 6.346 12.017 14.067 16.013 18.475 20.278 7 1.344 2.180 3.490 7.344 13.362 15.507 17.535 20.090 21.955 8 1.735 2.700 4.168 8.343 14.684 16.919 19.023 21.666 23.589 9 2.156 3.247 4.865 9.342 15.987 18.307 20.483 23.209 25.188 10 2.603 3.816 5.578 10.341 17.275 19.675 21.920 24.725 26.757 11 3.074 4.404 6.304 11.340 18.549 21.026 23.337 26.217 28.300 12 3.565 5.009 7.042 12.340 19.812 22.362 24.736 27.688 29.819 13 4.075 5.629 7.790 13.339 21.064 23.685 26.119 29.141 31.319 14 4.601 6.262 8.547 14.339 22.307 24.996 27.488 30.578 32.803 15

BIOLOGY:CONCEPTS+APPL.(LOOSELEAF)
10th Edition
ISBN:9781305967359
Author:STARR
Publisher:STARR
Chapter13: Patterns In Inherited Traits
Section: Chapter Questions
Problem 6GP: In sweet pea plant, an allele for purple flowers (P) is dominant when paired with a recessive allele...
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df
12345
67890
10
11
12
13
14
15
p
Chi-Square Table
Table 5-2
Critical Values of the x2 Distribution
0.995
0.975 0.9
0.1
0.01
0.005 df
0.5
0.05 0.025
,000 .000 0.016 0.455 2.706 3.841 5.024 6.635 7.879 1
0.010 0.051 0.211 1.386 4.605
5.991 7.378 9.210 10.597 2
0.072 0.216 0.584 2.366 6.251 7.815 9.348 11.345 12.838 3
0.207 0.484 1.064 3.357 7.779 9.488 11.143 13.277 14.860 4
0.412 0.831 1.610 4.351 9.236 11.070 12.832 15.086 16.750 5
0.676 1.237 2,204
0.989 1.690 2.833
1.344 2.180 3.490
1.735 2.700 4.168
2.156 3.247 4.865
2.603 3.816 5.578
3.074 4.404 6.304
3.565 5.009 7.042
4.075 5.629 7.790
4.601 6.262 8.547
5.348 10.645 12.592 14.449 16.812 18.548 6
6.346 12.017 14.067 16.013 18.475 20.278 7
7.344 13.362 15.507 17.535 20.090 21.955 8
8.343 14.684 16.919 19.023 21.666 23.589 9
9.342 15.987 18.307 20.483 23.209 25.188 10
10.341 17.275 19.675 21.920 24.725 26.757 11
11.340 18.549 21.026 23.337 26.217 28.300 12
12.340 19.812 22.362 24.736 27.688 29.819 13
13.339 21.064 23.685 26.119 29.141 31.319 14
14.339 22.307 24.996 27.488 30.578 32.803 15
Transcribed Image Text:df 12345 67890 10 11 12 13 14 15 p Chi-Square Table Table 5-2 Critical Values of the x2 Distribution 0.995 0.975 0.9 0.1 0.01 0.005 df 0.5 0.05 0.025 ,000 .000 0.016 0.455 2.706 3.841 5.024 6.635 7.879 1 0.010 0.051 0.211 1.386 4.605 5.991 7.378 9.210 10.597 2 0.072 0.216 0.584 2.366 6.251 7.815 9.348 11.345 12.838 3 0.207 0.484 1.064 3.357 7.779 9.488 11.143 13.277 14.860 4 0.412 0.831 1.610 4.351 9.236 11.070 12.832 15.086 16.750 5 0.676 1.237 2,204 0.989 1.690 2.833 1.344 2.180 3.490 1.735 2.700 4.168 2.156 3.247 4.865 2.603 3.816 5.578 3.074 4.404 6.304 3.565 5.009 7.042 4.075 5.629 7.790 4.601 6.262 8.547 5.348 10.645 12.592 14.449 16.812 18.548 6 6.346 12.017 14.067 16.013 18.475 20.278 7 7.344 13.362 15.507 17.535 20.090 21.955 8 8.343 14.684 16.919 19.023 21.666 23.589 9 9.342 15.987 18.307 20.483 23.209 25.188 10 10.341 17.275 19.675 21.920 24.725 26.757 11 11.340 18.549 21.026 23.337 26.217 28.300 12 12.340 19.812 22.362 24.736 27.688 29.819 13 13.339 21.064 23.685 26.119 29.141 31.319 14 14.339 22.307 24.996 27.488 30.578 32.803 15
In this alien population a parental alien that was true breeding horned and could fly was crossed
with hornless flightless to produce the F1 generation of horned and could fly. These F1 offspring
were then test crossed with hornless flightless to produce the following progeny.
Horned Flight
Hornless flightless
Horned flightless
Hornless Flight
573
425
73
62
I
1. What are your expected ratios?
2. Using Chi-Square analysis analyze whether your expected ratios were reflected in the
offspring.
3. Provide an explanation for your conclusions.
Transcribed Image Text:In this alien population a parental alien that was true breeding horned and could fly was crossed with hornless flightless to produce the F1 generation of horned and could fly. These F1 offspring were then test crossed with hornless flightless to produce the following progeny. Horned Flight Hornless flightless Horned flightless Hornless Flight 573 425 73 62 I 1. What are your expected ratios? 2. Using Chi-Square analysis analyze whether your expected ratios were reflected in the offspring. 3. Provide an explanation for your conclusions.
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