In order to answer this question, you will need to read and understand the content in Table 1 of the Extension and Appli

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In order to answer this question, you will need to read and understand the content in Table 1 of the Extension and Appli

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In order to answer this question, you will need to read and understand the content in Table 1 of the Extension and Application Information section in the interactive How Do You Know figure. A statistical test of the correlation coefficient (a measure of how correlated two variables are to each other) between the number of pods per plant and the total seeds per plant yields a P-value of 0.000002. This value implies that the observed correlation coefficient: is highly likely to be due to chance alone. has a probability of 0.000002 of being true. is highly unlikely to be due to chance alone. has a probability of 0.000002 of being false.
In order to answer this question, you will need to read and understand the content in Table 1 of the Extension and Application Information section in the interactive How Do You Know figure. Would you expect a positive correlation between the number of pods per plant and the total seeds per plant? Yes, because if each pod has about the same number of seeds, then the more pods on a plant the greater the total number of seeds. No, because in plants with more pods, each individual pod must be smaller and contain fewer seeds than plants with fewer pods. No, because the more energy that goes into producing pods, the less energy is available for producing seeds. Yes, because plants with more pods must be taller.
In order to answer this question, you will need to read and understand the content in Table 1 of the Extension and Application Information section in the interactive How Do You Know figure. The proportion of green seeds varies from plant to plant, from a low of 0.17 to a high of 0.35. What likely accounts for the variation from one plant to the next? The variation is due to relatively small numbers of seeds per plant. Fertilization is more random in some plants than in others. Some plants are more likely to have green seeds than are others. Misclassification of seed color is more likely in some plants than in others.
In order to answer this question, you will need to read and understand the content in Table 1 of the Extension and Application Information section in the interactive How Do You Know figure. Considering the types of progeny produced and their proportions, which seed color is dominant? All of the answer options are correct. Green is recessive because 1/4 of the seeds are green. Yellow is dominant because the ratio of yellow : green is 3:1. Yellow is dominant because 3/4 of the seeds are yellow. Green is recessive because the ratio of yellow : green is 3:1.
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