height (tall or short), flower position (axial or terminal), and seed color (colored or white). Suppose 100 plants are measured, and 34 are tall with axial flowers and colored seeds. Further, suppose a total of 22 plants have white seeds, 5 of them being short and 7 having terminal lowers. There are no short plants with terminal flowers, and the total number of short plants s 10. What is the probability a randomly selected plant will have flowers in the terminal position, out will not have white seeds? Round your answer to three decimal places. Answer:

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Chapter1: Combinatorial Analysis
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In Mendel's genetic experiments many characteristics of the plants were quantified, such as their
height (tall or short), flower position (axial or terminal), and seed color (colored or white).
Suppose 100 plants are measured, and 34 are tall with axial flowers and colored seeds. Further,
suppose a total of 22 plants have white seeds, 5 of them being short and 7 having terminal
flowers. There are no short plants with terminal flowers, and the total number of short plants
is 10. What is the probability a randomly selected plant will have flowers in the terminal position,
but will not have white seeds? Round your answer to three decimal places.
Answer:
Transcribed Image Text:In Mendel's genetic experiments many characteristics of the plants were quantified, such as their height (tall or short), flower position (axial or terminal), and seed color (colored or white). Suppose 100 plants are measured, and 34 are tall with axial flowers and colored seeds. Further, suppose a total of 22 plants have white seeds, 5 of them being short and 7 having terminal flowers. There are no short plants with terminal flowers, and the total number of short plants is 10. What is the probability a randomly selected plant will have flowers in the terminal position, but will not have white seeds? Round your answer to three decimal places. Answer:
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