The table summarizes results from 979 pedestrian deaths that were caused by automobile accidents. | Driver Intoxicated? | Pedestrian Intoxicated? | | | |----------------------|--------------------------|---|---| | | Yes | No| | | Yes | 64 | 82| | | No | 250 | 583| | If one of the pedestrian deaths is randomly selected, find the probability that the pedestrian was intoxicated or the driver was not intoxicated. Report the answer as a percent rounded to one decimal place accuracy. You need not enter the "%" symbol. *prob = [Answer Box] %* There are also two videos linked for further question help: - Video 1 - Video 2 A "Submit Question" button is available for submitting your answer.
The table summarizes results from 979 pedestrian deaths that were caused by automobile accidents. | Driver Intoxicated? | Pedestrian Intoxicated? | | | |----------------------|--------------------------|---|---| | | Yes | No| | | Yes | 64 | 82| | | No | 250 | 583| | If one of the pedestrian deaths is randomly selected, find the probability that the pedestrian was intoxicated or the driver was not intoxicated. Report the answer as a percent rounded to one decimal place accuracy. You need not enter the "%" symbol. *prob = [Answer Box] %* There are also two videos linked for further question help: - Video 1 - Video 2 A "Submit Question" button is available for submitting your answer.
A First Course in Probability (10th Edition)
10th Edition
ISBN:9780134753119
Author:Sheldon Ross
Publisher:Sheldon Ross
Chapter1: Combinatorial Analysis
Section: Chapter Questions
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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Total Number of pedestrian intoxicated = 64 + 250 = 314
Total number of driver not intoxicated = 250 + 583 = 833
Total Number of pedestrian intoxicated and driver not intoxicated = 250
total = n = 979
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