The number of arrays that can be formed with 24 counters depends on how the counters are arranged. An array is typically defined by its dimensions, such as rows and columns, where the product of the two dimensions equals the total number of counters. Since 24 can be factored into pairs of integers (such as 1x24, 2x12, 3x8, 4x6, and their reverses), you can create different rectangular arrays based on these factors. In total, there are 8 unique arrangements (considering both dimensions) for 24 counters.
Well, honey, let me break it down for you. To form a rectangular array, you need to find pairs of factors of 24. So, 1 x 24, 2 x 12, 3 x 8, and 4 x 6. That's a total of 4 rectangular arrays you can make with 24 tiles. Math can be sassy too, you know!
First, calculate the product of 1023 and 24, which is 24,552. To find how many twelves are in 24,552, divide 24,552 by 12. This gives you 2,046, indicating there are 2,046 twelves in the product of 1023 and 24.
There are: (1023*24)/12 = 2046
2406
6
Four
Sir, your question is not clear. If you just want to multiply 3 and 24 then why are you trying to use arrays for such simple calculation.
Well, honey, let me break it down for you. To form a rectangular array, you need to find pairs of factors of 24. So, 1 x 24, 2 x 12, 3 x 8, and 4 x 6. That's a total of 4 rectangular arrays you can make with 24 tiles. Math can be sassy too, you know!
First, calculate the product of 1023 and 24, which is 24,552. To find how many twelves are in 24,552, divide 24,552 by 12. This gives you 2,046, indicating there are 2,046 twelves in the product of 1023 and 24.
There are: (1023*24)/12 = 2046
2406
1 x 24 2 x 12 3 x 8 4 x 6
You can show 24 cans in one row, 12 cans in 2 rows, 8 cans in 3 rows, and 6 cans in 4 rows.
Product is the result of multiplication. 24 and what?
2*2-*2*3 = 24 or as 23*3 = 24
1 x 24 2 x 12 3 x 8 4 x 6