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How many different ways can you arrange 36 cans?

1 time


How many different ways could 4 marbles be arranged without having the same arrangement twice?

24


What are some different ways to classify marbles?

u could classy do it by


How many ways can you select 3 marbles from a jar containing 10 different colored marbles?

To select 3 marbles from a jar containing 10 different colored marbles, you can use the combination formula ( C(n, r) = \frac{n!}{r!(n-r)!} ). Here, ( n = 10 ) and ( r = 3 ). Thus, the number of ways to select the marbles is ( C(10, 3) = \frac{10!}{3!(10-3)!} = \frac{10 \times 9 \times 8}{3 \times 2 \times 1} = 120 ). Therefore, there are 120 different ways to select 3 marbles.


How many ways can five differently colored marbles be arrange in a row?

They can be arranged 5! or 120 ways.


If you have six marbles and you take two in how many ways can you take two?

3


A grocery manager wants to display 45 cans of peas in an array. How many different ways can he display the cans?

To calculate the number of ways the grocery manager can display the 45 cans of peas in an array, we can use combinatorial mathematics. The number of ways to display the cans can be calculated using the formula for combinations, which is nCr = n! / (r!(n-r)!), where n is the total number of cans (45) and r is the number of cans to be displayed in each row. Since the cans are being displayed in an array, we need to consider different possible arrangements, such as rows and columns. The specific number of ways will depend on the arrangement chosen (e.g., rows of 5 cans, columns of 9 cans, etc.).


How many ways can you arrange 3 marbles from a group of 5 marbles?

To find the number of ways to arrange 3 marbles from a group of 5 marbles, you can use the permutation formula ( P(n, r) = \frac{n!}{(n - r)!} ). Here, ( n = 5 ) and ( r = 3 ). Thus, the calculation is ( P(5, 3) = \frac{5!}{(5 - 3)!} = \frac{5!}{2!} = \frac{120}{2} = 60 ). Therefore, there are 60 different arrangements.


If you have 25 cans show all the ways you can arrange these cans into arrays?

To arrange 25 cans into arrays, you can form different rectangular configurations based on the factors of 25. The pairs of factors are (1, 25), (5, 5), and (25, 1). This means you can have 1 row of 25 cans, 25 rows of 1 can, or a square array of 5 rows and 5 columns. These are the only distinct ways to arrange 25 cans into arrays.


A boy has 4 red and 4 yellow and 5 green marbles In how many ways can the boy arrange the marbles in a line if all marbles of the same color are indistinguishable?

4+4+5=12 so you figure this out by 12! which is 12x11x10x9x8x7x6x5x4x3x2 and then divide by 4! 4! 5! and you get you answer(:


What are different ways of classifying marbles?

Color, composition, size, and use are different ways of classifying marbles. The object in question may be multi-colored or plain; of agate, clay, glass, clay, or steel; big or small; or a collectible, game piece, or toy.


In a bag of marbles there are 10 blue marbles and 6 red marbles you pick one marble out of the bag and then without replacing the first marble you pick another marble out of the bag. how many way you?

To determine the number of ways to pick two marbles from the bag without replacement, consider the first pick and second pick separately. You have 16 total marbles (10 blue and 6 red). For the first pick, you have 16 options, and for the second pick, since one marble is already removed, you have 15 options left. Thus, the total number of ways to pick two marbles is (16 \times 15 = 240).