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miss Akunina [59]
3 years ago
15

What is the prime factorization of 90?

Mathematics
2 answers:
german3 years ago
6 0
<h3>Answer: 2*3*3*5 which is the same as 2*3^2*5</h3>

====================================================

Explanation:

Divide by the smallest prime 2

90/2 = 45

Then divide by the next smallest prime 3 (since 2 won't go into 45)

45/3 = 15

Repeat the last step

15/3 = 5

We stop because the result is prime.

Note the denominators are 2, 3, 3. The final result is 5 which is prime.

So the prime factors are 2, 3, 3,  and 5

They multiply to 2*3*3*5 = 90.

We can condense it to 2*3^2*5 = 90 because 3*3 = 3^2.

Kisachek [45]3 years ago
5 0

Answer and Step-by-step explanation:

The prime factorization of 90 is 2 × 3 × 3 × 5 or 2 × 32 × 5, where 2, 3, and 5 are the prime numbers. You can find "prime factorization" by following two simple steps. Step 1: Start by dividing the number by the first prime number 2 and continue dividing by 2 until you get a decimal or remainder. Then divide by 3, 5, 7, etc. until the only numbers left are prime numbers. Step 2: Write the number as a product of prime numbers.

<em>Hope you found this helpful! Have a wonderful day! <3 </em>

<em></em>

<em></em>

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Step-by-step explanation:

I did this on plato. It was right!

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4 0
3 years ago
Write a recursive formula and an explicit formula for the following arithmetic sequence. 14,17,20,23,26
Zarrin [17]

The recursive formula is a_{1} = 14;  a_{n} = a_{n-1} + 3

The explicit formula is a_{n}=3n+11

Step-by-step explanation:

The recursive formula of the nth term of the arithmetic sequence is

a_{1} = first term;  a_{n} = a_{n-1} + d, where

  • a_{1} is the first term in the sequence
  • a_{n} is the nth term in the sequence  
  • a_{n-1} is the term before the nth term  
  • n is the term number
  • d is the common difference.

The explicit formula of the nth term of the arithmetic sequence is

a_{n}=a+(n-1)d , where

  • a_{n} is the nth term in the sequence
  • a is the first term
  • n is the term number
  • d is the common difference

∵ The arithmetic sequence is 14, 17, 20, 23, 26

∴ The first term is 14

∵ 17 - 14 = 3

∴ The common difference is 3

∵ The recursive formula is a_{1} = first term;  a_{n} = a_{n-1} + d

∵ a_{1} = 14

∵ d = 3

∴ a_{1} = 14;  a_{n} = a_{n-1} + 3

The recursive formula is a_{1} = 14;  a_{n} = a_{n-1} + 3

∵ The explicit formula is a_{n}=a+(n-1)d

∵ a = 14

∵ d = 3

∴ a_{n}=14+(n-1)3

- Simplify the right hand side

∴ a_{n}=14+3n-3

- Add like terms

∴ a_{n}=3n+11

The explicit formula is a_{n}=3n+11

Learn more:

You can learn more about the sequences in brainly.com/question/7221312

#LearnwithBrainly

5 0
3 years ago
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Answer:

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Just add the angles, then solve for x.

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6 0
4 years ago
Read 2 more answers
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WITCHER [35]
Z^2
You can substitute (a+bi) for z.
z^2 can also be written as z times z (like you multiply z by z)
I hope that makes sense!
6 0
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