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  • https://stats.libretexts.org/Workbench/Learning_Statistics_with_SPSS_-_A_Tutorial_for_Psychology_Students_and_Other_Beginners/09%3A_Categorical_Data_Analysis/9.02%3A_The_2_Test_of_Independence_(or_Association)
    If robots and humans are responding in the same way to the question, it means that the probability that “a robot says puppy” is the same as the probability that “a human says puppy”, and so on for the...If robots and humans are responding in the same way to the question, it means that the probability that “a robot says puppy” is the same as the probability that “a human says puppy”, and so on for the other two possibilities. And actually, since the null hypothesis is claiming that the true choice probabilities don’t depend on the species of the person making the choice, we can let P i refer to this probability: e.g., P 1 is the true probability of choosing the puppy.
  • https://stats.libretexts.org/Courses/Cerritos_College/Introduction_to_Statistics_with_R/10%3A_Categorical_Data_Analysis/10.02%3A_The_2_test_of_independence_(or_association)
    If robots and humans are responding in the same way to the question, it means that the probability that “a robot says puppy” is the same as the probability that “a human says puppy”, and so on for the...If robots and humans are responding in the same way to the question, it means that the probability that “a robot says puppy” is the same as the probability that “a human says puppy”, and so on for the other two possibilities. And actually, since the null hypothesis is claiming that the true choice probabilities don’t depend on the species of the person making the choice, we can let P i refer to this probability: e.g., P 1 is the true probability of choosing the puppy.

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