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Independent, Dependent, Conditional and Mutually Exclusive

Authored by Robert Koenig

Mathematics

9th - 12th Grade

Used 2+ times

Independent, Dependent, Conditional and Mutually Exclusive
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18 questions

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1.

MATH RESPONSE QUESTION

2 mins • 1 pt

Find the Probability. Enter your answer as a fraction.

From a bag of 5 red and 6 green marbles, a red marble is drawn and not replaced. Then a green marble is drawn.

Mathematical Equivalence

OFF

2.

MATH RESPONSE QUESTION

2 mins • 1 pt

Find the Probability. Enter your answer as a fraction.

In a game, you roll an odd number on a die and then spin a spinner with 6 evenly sized spaces numbered 1 to 6 and get an even number.

Mathematical Equivalence

OFF

3.

MATH RESPONSE QUESTION

2 mins • 1 pt

Find the Probability. Enter your answer as a fraction.

A card is randomly chosen from a standard deck of 52 cards then replaced and a second card is then chosen. What is the probability that the first card is the ace of hearts and the second card is the ace of diamonds?

Mathematical Equivalence

OFF

4.

MATH RESPONSE QUESTION

2 mins • 1 pt

Find the Probability. Enter your answer as a fraction.

A die is tossed. If the number rolled is greater than 2, what is the probability that the number rolled is 3?

Mathematical Equivalence

OFF

5.

MATH RESPONSE QUESTION

2 mins • 1 pt

Find the Probability. Enter your answer as a fraction.

A black shoe is selected at random from a bin of 6 black shoes and 4 brown shoes and not replaced. What is the probability that a second shoe selected will be black?

Mathematical Equivalence

OFF

6.

MATH RESPONSE QUESTION

2 mins • 1 pt

Find the Probability. Enter your answer as a fraction.

A spinner with 12 evenly sized sections and numbered 1 to 12 is spun. What is the probability that the number spun is 12 given that the number is even?

Mathematical Equivalence

OFF

7.

MATH RESPONSE QUESTION

2 mins • 1 pt

Find the Probability. Enter your answer as a fraction.

In a game, a spinner with 8 equally sized sections numbered 1 to 8 is spun and a die is tossed. What is the probability of landing on an odd number on the spinner and rolling an even number on the die?

Mathematical Equivalence

OFF

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