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Furkat [3]
3 years ago
8

Combine and simplify these radicals. square root of 3 times the square root of 16

Mathematics
2 answers:
Fed [463]3 years ago
4 0

Answer:

\sqrt{3} * /sqrt{16} = 4\sqrt{3}

Step-by-step explanation:


White raven [17]3 years ago
3 0

Answer:

Step-by-step explanation:

square root of 3 times the square root of 16 looks like this

\sqrt{3} .\sqrt{16}

we try to break the numbers inside the radical to there prime factors

so

\sqrt{3} .\sqrt{2.2.2.2}

the prime factors which are in pair , comes out of the radical so

\sqrt{3} .2.2

which simplifies to

4\sqrt{3}

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sergij07 [2.7K]

For this case we have the following arithmetic sequence:

a_ {n} = 15 + 5 (n-1)

To write in function form, we apply distributive property to the terms within parentheses:

f (n) = 15 + 5n-5

Different signs are subtracted and the major sign is placed.

We simplify:

f (n) = 5n + 10

Answer:

f (n) = 5n + 10

Option C

4 0
3 years ago
ANSWER ASAPPPP FORR BRAINLIEST
miv72 [106K]

Answer: the first one

Step-by-step explanation:

4 0
3 years ago
3.) A 24 pack of soda costs $6.48.<br> What is the unit rate of cost per can?
Dmitry [639]

Answer:

$0.27

Step-by-step explanation:

The unit rate of cost per can would equal total costs divide by total can

= $6.48 / 24

= $0.27

Hope this helped :3

4 0
3 years ago
A person places $686 in an investment account earning an annual rate of 3.8%, compounded continuously. Using the formula V = Pe^
kykrilka [37]

Answer:

V = $1213.03

Step-by-step explanation:

We can determine the amount of money after 15 years with the given formula:

V = Pe^{rt}   (1)

Where:

V: is the value of the account in t years =?

P: is the principal initially invested = $686                

r: is the rate of interest = 3.8% = 3.8/100 = 0.038

t: is the time = 15 years

By substituting the above values into equation (1) we have:

V = Pe^{rt} = 686*e^{(0.038*15)} = 1213.03  

               

Therefore, the amount of money is $1213.03.

I hope it helps you!  

6 0
3 years ago
what is the term used to describe the distance of a complex number from the origin in a complex plane
True [87]
The term that would best define the distance <span>of a complex number from the origin in a complex plane would be modulus. The other name for the modulus of a complex number would be the complex norm in which when its designated value is raised to the power of 2, it becomes an absolute square. </span>
6 0
4 years ago
Read 2 more answers
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