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The probability that the product is an odd number when you roll four dice and multiply their values together is 0.0416.

4 dice are rolled when we have

6 × 6 × 6 × 6 = 6⁴ = 1296

several potential outcomes Each dice contains six potential results.

Therefore, the likelihood of any certain pattern is 1 ÷ 1296.

To depict the intended outcome of two identical odd integers added together, we must determine how many sequences there are.

Every dice has 3 of the 6 possible outcomes for an odd number.

The patterns for two identical odd numbers when we use two dice are

1 1

3 3

5 5

Therefore, 3 out of 36, which is comparable to 2 equals even integers.

2 2

4 4

6 6

3 out of a total of 36.

This results in 3 3 out of the available 36 36 and 9 out of the available 1296 patterns when combined for a roll of 4 dice.

that means the probability of a particular combination of 2-and-2 dice is 9 ÷ 1296 = 1 ÷ 144 = 0.006944444... but there are 4! ÷ (2! 2!) = 6 possibilities (pick 2 out of 4, where the order of the picked ones does not matter) to choose 2 dice out of 4 and to show the same sequence across the 4 dice, as for the fundamental pattern 1 1 2 2 we can have.

1 1 2 2

1 2 1 2

1 2 2 1

2 1 2 1

2 1 1 2

2 2 1 1

There are 6 different ways these 9 patterns can be combined.

Therefore, to calculate the overall probability, we must multiply each pattern's probability by 6.

(1 ÷ 144) × 6 = 6 ÷ 144 = 1 ÷ 24 = 0.041666666...

Learn more about the probability at

https://brainly.com/question/16896872?referrer=searchResults

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