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Brums [2.3K]
3 years ago
7

I can you solve this?

Mathematics
2 answers:
andreev551 [17]3 years ago
7 0
5xy^5 because 10/2=5 then remove the y^8 then collect like terms which leaves u with 5xy^5
vagabundo [1.1K]3 years ago
5 0
Would it be easier if you looked at it like this:
\frac{10}{2} *  \frac{ x^{2} }{x} *  \frac{ y^{5} }{ y^{8} }

In division exponents subtract:
\frac{10}{2} * \frac{ x^{2} }{x} * \frac{ y^{5} }{ y^{8} } = 5 * x *  \frac{1}{ y^{3} }

5 * x *  \frac{1}{ y^{3} } =  \frac{5x}{ y^{3} }

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Can someone please help me with this question 23 over 12 =
SSSSS [86.1K]
23/12 = 1 and 11/12

Hope this helps!
8 0
3 years ago
Read 2 more answers
Change 26 out of 40 to a percentage
GenaCL600 [577]

Answer:

65

Step-by-step explanation:

26 divided by 40 then multiply by a hundred

6 0
3 years ago
The nth term of a sequence can be determined by the function f (n)=20 (1/4)^n-1 Which choice is a term of the sequence?​
Wewaii [24]

Answer: I think it c or d but more c

Step-by-step explanation:

5 0
3 years ago
When Adam got a new locker at the gym, he had to choose a password. For this locker, a password consists of
joja [24]

Given:

Adam's locker has a password that consists of 4 non-repeated letters from A - Z.

To find:

The number of different passwords.

Solution:

Total number of letters from A - Z is 26.

So, the number of selecting a letter for first place is 26.

The passwords consists non-repeated letters. So, the remaining numbers is 26-1=25.

The number of selecting a letter for second place is 25.

Similarly,

The number of selecting a letter for third place is 24.

The number of selecting a letter for fourth place is 23.

The total number of possible different passwords is:

26\times 25\times 24\times 23=358800

Therefore, the total number of different passwords is 358800.

4 0
3 years ago
Give a # that makes 10 - x < 5 true.
yaroslaw [1]
40 or literally any number greater than 10.
3 0
3 years ago
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