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3 or 7 - depending on whether you count a transposed array as different. 1*64

2*32

4*16

8*8

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13y ago

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What arrays can you make with the number 52?

You can create several arrays with the number 52 by using its factors. The factors of 52 are 1, 2, 4, 13, 26, and 52, allowing for arrays like 1x52, 2x26, 4x13, and 13x4. Each of these pairs represents a different arrangement of items, demonstrating how 52 can be organized in various rectangular configurations.


How many arrays can you make with the number 16?

The number of arrays you can make with the number 16 depends on how you define "arrays." If you're referring to the factors of 16, they are 1, 2, 4, 8, and 16, which can form rectangular arrays of various dimensions (e.g., 1x16, 2x8, 4x4). In terms of combinations or arrangements of the number 16 in an array (like in permutations), the possibilities would be significantly greater, depending on the context and constraints you apply.


How many different arrays can you make out of 7?

Oh, isn't that a happy little question! With 7 elements, you can create many arrays by arranging them in different orders. The number of different arrays you can make out of 7 elements is 5040. Just imagine all the beautiful possibilities waiting to be painted on your canvas of creativity!


How many arrays can you make out of 48?

You can make five arrays from the number 48


How many arrays can you make with 24 counters?

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.


How many arrays can you make with the number 7?

The number of arrays that can be made with the number 7 depends on the context. If you're referring to the number of ways to arrange the number 7 in different combinations or sequences, it could be infinite since you can create arrays of any length, including single-element arrays. If you are asking about distinct arrays of a fixed size using the number 7, then it would depend on the specific constraints, such as the size of the array and whether repetitions are allowed.


How many arrays can you make with the number 42?

4 (or eight if you count transposed arrays as being different).


How many different arrays can you make with 18?

Oh, dude, there are like a bazillion different arrays you can make with 18. Okay, maybe not a bazillion, but definitely a lot. You can have arrays like [1, 2, 3, 4, 5, 6], [18], [9, 9], or even [2, 9, 7]. The possibilities are endless... well, not really, but you get the point.


WHAT arrays can 24 make?

The number 24 can form several arrays, specifically those that are factors of 24. The possible arrays include: 1x24, 2x12, 3x8, and 4x6. Each of these combinations represents a different way to arrange 24 items into rows and columns, demonstrating the concept of factors and multiplication.


How many rectangular arrays can be formed with 24 tiles?

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!


How many different arrays can you make with 20 buttons?

2


How many different solids can you make if the number of cubes is prime?

The answer depends on the number. Note that the question does not require the solids to be in the form of cubiods (rectangular prisms).