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Celine surveyed 1414 students at her school about their favorite professional sports. Of the students surveyed, 66 said tennis was their favorite sport. What is the experimental probability that the next student Celine talks to will pick tennis? Simplify your answer and write it as a fraction or whole number.\newlineP(tennis)=__P(\text{tennis}) = \_\_

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Q. Celine surveyed 1414 students at her school about their favorite professional sports. Of the students surveyed, 66 said tennis was their favorite sport. What is the experimental probability that the next student Celine talks to will pick tennis? Simplify your answer and write it as a fraction or whole number.\newlineP(tennis)=__P(\text{tennis}) = \_\_
  1. Calculate Experimental Probability: The experimental probability is calculated by dividing the number of times an event occurs by the total number of trials. In this case, the event is a student picking tennis as their favorite sport, and the number of trials is the total number of students surveyed.
  2. Survey Results: Celine surveyed 1414 students, and 66 of them said tennis was their favorite sport. To find the experimental probability that the next student will pick tennis, we divide the number of students who picked tennis by the total number of students surveyed.
  3. Calculation for Experimental Probability: The calculation for the experimental probability is as follows:\newlineP(tennis) = Number of students who picked tennis / Total number of students surveyed\newlineP(tennis) = 614\frac{6}{14}
  4. Simplify Fraction: To simplify the fraction, we look for the greatest common divisor of 66 and 1414, which is 22. We then divide both the numerator and the denominator by 22.
  5. Final Experimental Probability: After simplifying, we get:\newlineP(tennis)=62/142P(\text{tennis}) = \frac{6}{2} / \frac{14}{2}\newlineP(tennis)=37P(\text{tennis}) = \frac{3}{7}

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