The probability of two outcomes co-occurring is the product of the probabilities of each outcome happening separately. For example, in a six-sided die, there is a 1/6 chance (0.1667 probability) of rolling a six and a 5/6 chance (0.8333 probability) of not rolling a six. So if you roll the dice twice, the probability of rolling a six twice is 0.16672=0.0278, the probability of rolling a six then not rolling a six is 0.1667*0.8333=0.1389, the probability of not rolling a six then rolling a six is 0.8333*0.1667=0.1389, and the probability of not rolling a six twice is 0.83332 = 0.6943. What is the sum of all of the probabilities for the four possible combinations of dice rolls listed above? Will you always get the same answer when you add all of the possible combinations of dice rolls? Why?

A First Course in Probability (10th Edition)
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ISBN:9780134753119
Author:Sheldon Ross
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Chapter1: Combinatorial Analysis
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Problem 1.1P: a. How many different 7-place license plates are possible if the first 2 places are for letters and...
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The probability of two outcomes co-occurring is the product of the probabilities of each outcome happening separately. For example, in a six-sided die, there is a 1/6 chance (0.1667 probability) of rolling a six and a 5/6 chance (0.8333 probability) of not rolling a six. So if you roll the dice twice, the probability of rolling a six twice is 0.16672=0.0278, the probability of rolling a six then not rolling a six is 0.1667*0.8333=0.1389, the probability of not rolling a six then rolling a six is 0.8333*0.1667=0.1389, and the probability of not rolling a six twice is 0.83332 = 0.6943.

What is the sum of all of the probabilities for the four possible combinations of dice rolls listed above? Will you always get the same answer when you add all of the possible combinations of dice rolls? Why?

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