(a) From Martina's results, compute the experimental probability of landing on black. (b) Assuming that the spinner is fair, compute the theoretical probability of landing on black. (c) Assuming that the spinner is fair, choose the statement bèlow that is true: The larger the number of spins, the greater the likelihood that the experimental probability will be close to the theoretical probability. The experimental probability will never be very close to the theoretical probability, no matter the number of spins.

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TTEFGQ
O PROBABILITY
Experimental and theoretical probability
The spinner below shows 5 equally sized slices. Martina spun the dial 500 times and got the following results.
Outcome
Grey White Black
Number of Spins
182
215
103
Fill in the table below. Round your answers to the nearest thousandths.
(a) From Martina's results, compute the experimental probability of landing on black.
(b) Assuming that the spinner is fair, compute the theoretical probability of landing on black.
(c) Assuming that the spinner is fair, choose the statement below that is true:
The larger the number of spins, the greater the likelihood that the experimental probability
will be close to the theoretical probability.
Explanation
Check
Transcribed Image Text:TTEFGQ O PROBABILITY Experimental and theoretical probability The spinner below shows 5 equally sized slices. Martina spun the dial 500 times and got the following results. Outcome Grey White Black Number of Spins 182 215 103 Fill in the table below. Round your answers to the nearest thousandths. (a) From Martina's results, compute the experimental probability of landing on black. (b) Assuming that the spinner is fair, compute the theoretical probability of landing on black. (c) Assuming that the spinner is fair, choose the statement below that is true: The larger the number of spins, the greater the likelihood that the experimental probability will be close to the theoretical probability. Explanation Check
Fill in the table below. Round your answers to the nearest thousandths.
(a) From Martina's results, compute the experimental probability of landing on black.
(b) Assuming that the spinner is fair, compute the theoretical probability of landing on black.
(c) Assuming that the spinner is fair, choose the statement bělow that is true:
The larger the number of spins, the greater the likelihood that the experimental probability
will be close to the theoretical probability.
The experimental probability will never be very close to the theoretical probability, no matter
the number of spins.
The smaller the number of spins, the greater the likelihood that the experimental probability
will be close to the theoretical probability.
Explanation
Check
© 2021 McGraw-Hil
Transcribed Image Text:Fill in the table below. Round your answers to the nearest thousandths. (a) From Martina's results, compute the experimental probability of landing on black. (b) Assuming that the spinner is fair, compute the theoretical probability of landing on black. (c) Assuming that the spinner is fair, choose the statement bělow that is true: The larger the number of spins, the greater the likelihood that the experimental probability will be close to the theoretical probability. The experimental probability will never be very close to the theoretical probability, no matter the number of spins. The smaller the number of spins, the greater the likelihood that the experimental probability will be close to the theoretical probability. Explanation Check © 2021 McGraw-Hil
Expert Solution
Step 1

Provided data is, the spinner below shows 5 equally sized slices. Martina spin the dial 500 times, obtained output is:

Outcome

Grey

White

Black

Number of Spins

182

215

103

 

PBlack=number of times black obtainedtotal number of spins=103500=0.206

 

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