In a popular online role playing game, players can create detailed designs for their character's "costumes," or appearance. Aaron sets up a website where players can buy and sell these costumes online. Information about the number of people who visited the website and the number of costumes purchased in a single day is listed below.38 visitors purchased no costume.239 visitors purchased exactly one costume.12 visitors purchased more than one costume.Based on these results, express the probability that the next person will purchase no costume as a decimal to the nearest hundredth.
Question
In a popular online role playing game, players can create detailed designs for their character's "costumes," or appearance. Aaron sets up a website where players can buy and sell these costumes online. Information about the number of people who visited the website and the number of costumes purchased in a single day is listed below.38 visitors purchased no costume.239 visitors purchased exactly one costume.12 visitors purchased more than one costume.Based on these results, express the probability that the next person will purchase no costume as a decimal to the nearest hundredth.
Solution
To solve this problem, we first need to find the total number of visitors. We do this by adding the number of visitors who purchased no costume, exactly one costume, and more than one costume.
So, the total number of visitors is 38 (no costume) + 239 (one costume) + 12 (more than one costume) = 289 visitors.
The probability that the next person will purchase no costume is the number of visitors who purchased no costume divided by the total number of visitors.
So, the probability is 38 (no costume) / 289 (total visitors) = 0.1314868804664723.
Rounding this to the nearest hundredth, we get 0.13.
So, the probability that the next person will purchase no costume is 0.13.
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