Suppose that we have a population of fungal spores which clearly fall into two size categories, large and small. We incubate these spores on agar and count the number of spores that germinate by producing a single outgrowth or multiple outgrowths. The null hypothesis is that spore size and outgrowth are independent of each other. Based on the actual data shown below what is the expected number of small spores with mutliple outgrowths (give answer to 1 decimal place)? Use this handy_chi-squared calculator 2 . Small Spore Large Spore Single Outgrowth 11 14 Multiple Outgrowths 23 18

Linear Algebra: A Modern Introduction
4th Edition
ISBN:9781285463247
Author:David Poole
Publisher:David Poole
Chapter7: Distance And Approximation
Section7.3: Least Squares Approximation
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Suppose that we have a population of fungal spores which clearly fall into two size categories, large and small. We
incubate these spores on agar and count the number of spores that germinate by producing a single outgrowth or
multiple outgrowths. The null hypothesis is that spore size and outgrowth are independent of each other.
Based on the actual data shown below what is the expected number of small spores with mutliple outgrowths (give
answer to 1 decimal place)?
Use this handy chi-squared calculator 2.
Small Spore
Large Spore
Single Outgrowth
11
14
Multiple Outgrowths
23
18
Transcribed Image Text:Suppose that we have a population of fungal spores which clearly fall into two size categories, large and small. We incubate these spores on agar and count the number of spores that germinate by producing a single outgrowth or multiple outgrowths. The null hypothesis is that spore size and outgrowth are independent of each other. Based on the actual data shown below what is the expected number of small spores with mutliple outgrowths (give answer to 1 decimal place)? Use this handy chi-squared calculator 2. Small Spore Large Spore Single Outgrowth 11 14 Multiple Outgrowths 23 18
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