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erastova [34]
3 years ago
12

To all who are good at math please help 80 points

Mathematics
2 answers:
sergejj [24]3 years ago
7 0

Answer:

Number 4

Step-by-step explanation:

lions [1.4K]3 years ago
4 0

Answer:

d

Step-by-step explanation:

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How do I solve and find x?
Sphinxa [80]

Answer:

x = 76.5

Step-by-step explanation:

\frac{x}{4.5} = 22 - 5

\frac{x}{4.5} = 17

x = 17 x 4.5

x = 76.5

5 0
2 years ago
Four girls helped Mr. Day plant a garden. For their help, he gave the girls $24 to share equally.later, mrs. day gave each girl
Ksenya-84 [330]

they all split it and is each going to have 6 dollars each plus the extra 2 for cleaning so 8 dollars each.

Answer - $8 Dollars

5 0
3 years ago
Order these numbers from least to greatest. <br> 4.5, 4.15, 3.814, 4.1052
Nuetrik [128]

Answer:

(least) 3.814, 4.1052, 4.15, 4.5 (greatest)

Step-by-step explanation:

3 0
2 years ago
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Find both the number of combinations and the number of permutations for the given number of objects.
Nikitich [7]

Answer:

First, if we have a set of K elements, such that are ordered as:

{x₁, x₂, ...}

The total number of permutations for the K elements can be found in the next way.

For the first element in the set, we have K options.

For the second element in the set, we have (K - 1) options (because we already choose one)

For the third element we have (K - 2) options, and so on.

The total number of permutation is equal to the product between the numbers of options for each position's element, then the number of permutations for K elements is:

permutations = K*(K - 1)*(K - 2)*....*2*1 = K!

Now suppose that we have a set of N elements, and we want to make groups of K elements.

The total number of different combinations of K elements is given by the equation:

C(N, K) = \frac{N!}{(N - K)!*K!}

In this case we have 15 objects (then  N = 15) and we take 7 at the time (Then K = 7)

Where we need to take in account the number of combinations and also the permutations for each combination.

Then the total number of different sets is:

C(15*7)*7!

First, the total number of combinations will be:

C(15,7) = \frac{15!}{(15 - 7)!7!} = \frac{15!}{8!*7!}  = \frac{15*14*13*12*11*10*9}{7*6*5*4*3*2*1}  = 6,435

So we have 6,436 combinations, and each one of these combinations has 7! permutations.

permutations = 7! = 7*6*5*4*3*2*1 = 5,040

if we combine these we get:

Combinations*Permutations = 6,435*5,040 = 32,432,400

5 0
3 years ago
I JUST NEED HELP WITH THE QUESTIONS!! THE CHART AND GRAPH IS ALREADY FILLED OUT!! :D
LekaFEV [45]

Answer:

58

Step-by-step explanation:

5 0
3 years ago
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