the options i can see are: 1111111111 111111112 11111122 1111222 112222 22222 there are 6 combinations but i will need to reformulate to work out how many permutations of these 6 combinations there are
There are 29 ways.
720
20
you can make 6
6 ways
12 Combinations.
the options i can see are: 1111111111 111111112 11111122 1111222 112222 22222 there are 6 combinations but i will need to reformulate to work out how many permutations of these 6 combinations there are
There are 29 ways.
720
20
you can make 6
We select 1 shirt out of 6 shirts in (6 choose 1) ways or 6 ways. Then, we select 1 out of 3 pairs of shorts in (3 choose 1) or 3 ways. Therefore, the possible combinations of a shirt and a pair of shorts is 6 * 3 = 18 possible combinations.
6 ways: 931,913,139,193,391,319
From 4 letters, you can create three-letter combinations by selecting any 3 letters from the 4 and arranging them. The number of ways to choose 3 letters from 4 is given by the combination formula ( \binom{4}{3} = 4 ). Each of these combinations can be arranged in ( 3! = 6 ) ways. Therefore, the total number of three-letter combinations is ( 4 \times 6 = 24 ).
The answer is 6^6, or 46656.
To determine how many ways you can make 8, we need to specify the context, such as using numbers, coins, or other elements. For example, if considering combinations of whole numbers that add up to 8, there are several ways, such as (8), (7+1), (6+2), and so on. If you mean using coins, the combinations would vary based on the denominations available. Please provide more details for a specific answer!