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This module is from Elementary Algebra by Denny Burzynski and Wade Ellis, Jr. This chapter contains many examples of arithmetic techniques that are used directly or indirectly in algebra. Since the chapter is intended as a review, the problem-solving techniques are presented without being developed. Therefore, no work space is provided, nor does the chapter contain all of the pedagogical features of the text. As a review, this chapter can be assigned at the discretion of the instructor and can also be a valuable reference tool for the student.

Overview

  • Prime And Composite Numbers
  • The Fundamental Principle Of Arithmetic
  • The Prime Factorization Of A Whole Number

Prime and composite numbers

Notice that the only factors of 7 are 1 and 7 itself, and that the only factors of 23 are 1 and 23 itself.

Prime number

A whole number greater than 1 whose only whole number factors are itself and 1 is called a prime number.

The first seven prime numbers are

2, 3, 5, 7, 11, 13, and 17

The number 1 is not considered to be a prime number, and the number 2 is the first and only even prime number.
Many numbers have factors other than themselves and 1. For example, the factors of 28 are 1, 2, 4, 7, 14, and 28 (since each of these whole numbers and only these whole numbers divide into 28 without a remainder).

Composite numbers

A whole number that is composed of factors other than itself and 1 is called a composite number. Composite numbers are not prime numbers.

Some composite numbers are 4, 6, 8, 10, 12, and 15.

The fundamental principle of arithmetic

Prime numbers are very important in the study of mathematics. We will use them soon in our study of fractions. We will now, however, be introduced to an important mathematical principle.

The fundamental principle of arithmetic

Except for the order of the factors, every whole number, other than 1, can be factored in one and only one way as a product of prime numbers.

Prime factorization

When a number is factored so that all its factors are prime numbers, the factorization is called the prime factorization of the number.

Sample set a

Find the prime factorization of 10.

10 = 2 · 5

Both 2 and 5 are prime numbers. Thus, 2 · 5 is the prime factorization of 10.

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Find the prime factorization of 60.

60 = 2 · 30 30 is not prime . 30 = 2 · 15 = 2 · 2 · 15 15  is not prime . 15 = 3 · 5 = 2 · 2 · 3 · 5 We'll use exponents .  2 · 2 = 2 2 = 2 2 · 3 · 5

The numbers 2, 3, and 5 are all primes. Thus, 2 2 · 3 · 5 is the prime factorization of 60.

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Find the prime factorization of 11.

11 is a prime number. Prime factorization applies only to composite numbers.

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The prime factorization of a whole number

The following method provides a way of finding the prime factorization of a whole number. The examples that follow will use the method and make it more clear.

  1. Divide the number repeatedly by the smallest prime number that will divide into the number without a remainder.
  2. When the prime number used in step 1 no longer divides into the given number without a remainder, repeat the process with the next largest prime number.
  3. Continue this process until the quotient is 1.
  4. The prime factorization of the given number is the product of all these prime divisors.

Sample set b

Find the prime factorization of 60.

Since 60 is an even number, it is divisible by 2. We will repeatedly divide by 2 until we no longer can (when we start getting a remainder). We shall divide in the following way.

The prime factorization of sixty. See the longdesc for a full description.    30 is divisible by 2 again . 15 is not divisible by 2, but is divisible by 3, the next largest prime . 5 is not divisible by 3, but is divisible by 5, the next largest prime . The quotient is 1 so we stop the division process .

The prime factorization of 60 is the product of all these divisors.

60 = 2 · 2 · 3 · 5 We will use exponents when possible . 60 = 2 2 · 3 · 5

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Find the prime factorization of 441.

Since 441 is an odd number, it is not divisible by 2. We’ll try 3, the next largest prime.

The prime factorization of four hundred forty-one. See the longdesc for a full description.    147 is divisible by 3 . 49 is not divisible by 3 nor by 5 ,  but by 7 . 7 is divisible by 7 . The quotient is 1 so we stop the division process .

The prime factorization of 441 is the product of all the divisors.

441 = 3 · 3 · 7 · 7 We will use exponents when possible . 441 = 3 2 · 7 2

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Exercises

For the following problems, determine which whole numbers are prime and which are composite.

For the following problems, find the prime factorization of each whole number. Use exponents on repeated factors.

819

3 2 · 7 · 13

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148,225

5 2 · 7 2 · 11 2

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Questions & Answers

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cheten Reply
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Astronomy (from Ancient Greek ἀστρονομία (astronomía) 'science that studies the laws of the stars') is a natural science that studies celestial objects and phenomena. It uses mathematics, physics, and chemistry in order to explain their origin and evolution.
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the big bang theory is a theory which states that all matter was compressed together in one place the matter got so unstable it exploded releasing All its contents in the form of hydrogen
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solar Univers
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bigbang is the beginning of the universe
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but thats just a theory
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these are Rocky substances between mars and jupiter
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Comets are cosmic snowballs of frozen gases , rock and dust that orbit the sun. They are mostly found between the orbits of Venus and Mercury.
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why the moon is always appear in an elliptical shape
Gatjuol Reply
Because when astroid hit the Earth then a piece of elliptical shape of the earth was separated which is now called moon.
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Did you mean eye sight or sea level
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according to the theory of astronomers why the moon is always appear in an elliptical orbit?
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we're all stars and galaxies a part of sun. how can science prove thx with respect old ancient times picture or books..or anything with respect to present time .but we r a part of that universe
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there many theory to born universe but what is the reality of big bang theory to born universe
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there are many theories regarding this it's on you believe any theory that you think is true ex. eternal inflation theory, oscillation model theory, multiple universe theory the big bang theory etc.
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I think it couldn't possible on earth
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is that so. the question was in the end of this chapter
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in theory, you could see them all from the equator (though over the course of a year, not at pne time). stars are measured in "declination", which is how far N or S of the equator (90* to -90*). Polaris is the North star, and is ALMOST 90* (+89*). So it would just barely creep over the horizon.
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Source:  OpenStax, Elementary algebra. OpenStax CNX. May 08, 2009 Download for free at http://cnx.org/content/col10614/1.3
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