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This module is from Elementary Algebra by Denny Burzynski and Wade Ellis, Jr. The symbols, notations, and properties of numbers that form the basis of algebra, as well as exponents and the rules of exponents, are introduced in this chapter. Each property of real numbers and the rules of exponents are expressed both symbolically and literally. Literal explanations are included because symbolic explanations alone may be difficult for a student to interpret.This module contains the exercise supplement for the chapter "Basic Properties of Real Numbers".

Exercise supplement

Symbols and notations ( [link] )

For the following problems, simplify the expressions.

9 ( 4 2 ) + 6 ( 8 + 2 ) 3 ( 1 + 4 )

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6 [ 1 + 8 ( 7 + 2 ) ]

438

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( 4 + 17 + 1 ) + 4 14 1

2

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( 4 + 5 ) ( 4 + 6 ) ( 4 + 7 )

79

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8 ( 2 12 ÷ 13 ) + 2 5 11 [ 1 + 4 ( 1 + 2 ) ]

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3 4 + 1 12 ( 3 4 1 2 )

37 48

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88 11 + 99 9 + 1 54 9 22 11

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8 6 2 + 9 9 3 10 4 5

43

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For the following problems, write the appropriate relation symbol ( = , < , > ) in place of the .

9 [ 4 + 3 ( 8 ) ] 6 [ 1 + 8 ( 5 ) ]

252 > 246

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3 ( 1.06 + 2.11 ) 4 ( 11.01 9.06 )

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For the following problems, state whether the letters or symbols are the same or different.

Represent the sum of c and d two different ways.

c + d ; d + c

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For the following problems, use algebraic notataion.

62 divided by f

62 f or 62 ÷ f

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6 times x , minus 2

6 x 2

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x + 1 divided by x 3

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y + 11 divided by y + 10 , minus 12

( y + 11 ) ÷ ( y + 10 ) 12 or y + 11 y + 10 12

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The real number line and the real numbers ( [link] )

Is every natural number a whole number?

yes

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Is every rational number a real number?

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For the following problems, locate the numbers on a number line by placing a point at their (approximate) position.

Draw a number line that extends from 10 to 20. Place a point at all odd integers.

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Draw a number line that extends from 10 to 10 . Place a point at all negative odd integers and at all even positive integers.

A number line with arrows on each end, labeled from negative ten to ten in increments of two. There are closed circles at negative nine, negative seven, negative five, negative three, negative one, two, four, six, eight, and ten.

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Draw a number line that extends from 5 to 10 . Place a point at all integers that are greater then or equal to 2 but strictly less than 5.

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Draw a number line that extends from 10 to 10 . Place a point at all real numbers that are strictly greater than 8 but less than or equal to 7.

A number line with arrows on each end, labeled from negative ten to ten in increments of two. There is a closed circle at seven and an open circle at negative eight, with a black shaded line connecting the two circles.

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Draw a number line that extends from 10 to 10 . Place a point at all real numbers between and including 6 and 4.

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For the following problems, write the appropriate relation symbol ( = , < , > ).

8 5

8 < 5

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Is there a smallest two digit integer? If so, what is it?

yes, 99

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Is there a smallest two digit real number? If so, what is it?

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For the following problems, what integers can replace x so that the statements are true?

4 x 7

4 , 5 , 6 , or 7

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3 < x 2

2 , 1 , 0 , 1 , or 2

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The temperature today in Los Angeles was eighty-two degrees. Represent this temperature by real number.

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The temperature today in Marbelhead was six degrees below zero. Represent this temperature by real number.

6 °

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On the number line, how many units between 3 and 2?

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On the number line, how many units between 4 and 0?

4

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Properties of the real numbers ( [link] )

a + b = b + a is an illustration of the property of addition.

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s t = t s is an illustration of the __________ property of __________.

commutative, multiplication

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Use the commutative properties of addition and multiplication to write equivalent expressions for the following problems.

2 ( a 1 )

( a 1 ) 2

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( 6 ) ( 9 ) ( 2 )

( 9 ) ( 6 ) ( 2 ) or  ( 9 ) ( 2 ) ( 6 ) or ( 6 ) ( 2 ) ( 9 ) or ( 2 ) ( 9 ) ( 6 )

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Simplify the following problems using the commutative property of multiplication. You need not use the distributive property.

3 ( x + 2 ) 5 ( x 1 ) 0 ( x + 6 )

0

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8 b ( a 6 ) 9 a ( a 4 )

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For the following problems, use the distributive property to expand the expressions.

2 g ( 4 h + 2 k )

8 g h + 4 g k

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3 y ( 2 x + 4 z + 5 w )

6 x y + 12 y z + 15 w y

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( x + y ) ( 4 a + 3 b )

4 a x + 3 b x + 4 a y + 3 b y

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Exponents ( [link] )

For the following problems, write the expressions using exponential notation.

( a + 2 b ) squared minus ( a + 3 b ) to the fourth.

( a + 2 b ) 2 ( a + 3 b ) 4

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x cubed plus 2 times ( y x ) to the seventh.

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( 8 ) ( 8 ) ( 8 ) ( 8 ) x x x y y y y y

( 8 ) 4 x 3 y 5

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( x 9 ) ( x 9 ) + ( 3 x + 1 ) ( 3 x + 1 ) ( 3 x + 1 )

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2 z z y z y y y + 7 z z y z ( a 6 ) 2 ( a 6 )

2 y 4 z 3 + 7 y z 3 ( a 6 ) 3

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For the following problems, expand the terms so that no exponents appear.

( 4 b ) 2

4 b · 4 b

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( 6 a 2 ) 3 ( 5 c 4 ) 2

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( x 3 + 7 ) 2 ( y 2 3 ) 3 ( z + 10 )

( x x x + 7 ) ( x x x + 7 ) ( y y 3 ) ( y y 3 ) ( y y 3 ) ( z + 10 )

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Choose values for a and b to show that

  1. ( a + b ) 2 is not always equal to a 2 + b 2 .
  2. ( a + b ) 2 may be equal to a 2 + b 2 .
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Choose value for x to show that

  1. ( 4 x ) 2 is not always equal to 4 x 2 .
  2. ( 4 x ) 2 may be equal to 4 x 2 .

(a) any value except zero

(b) only zero

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Rules of exponents ( [link] ) - the power rules for exponents ( [link] )

Simplify the following problems.

1 8 + 0 10 + 3 2 ( 4 2 + 2 3 )

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12 2 + 0.3 ( 11 ) 2

180.3

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6 2 + 3 2 2 2 + 1 + ( 1 + 4 ) 2 2 3 1 4 2 5 4 2

10

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4 a 3 b 2 c 8 3 a b 2 c 0

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( 6 x 4 y 10 ) ( x y 3 )

6 x 5 y 13

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( 3 x y z 2 ) ( 2 x 2 y 3 ) ( 4 x 2 y 2 z 4 )

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( 3 4 x 8 y 6 z 0 a 10 b 15 ) 2

9 16 x 16 y 12 a 20 b 30

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14 a 4 b 6 c 7 2 a b 3 c 2

7 a 3 b 3 c 5

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a 3 b 7 a 9 b 6 a 5 b 10

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( x 4 y 6 z 10 ) 4 ( x y 5 z 7 ) 3

x 13 y 9 z 19

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( 2 x 1 ) 13 ( 2 x + 5 ) 5 ( 2 x 1 ) 10 ( 2 x + 5 )

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( 3 x 2 4 y 3 ) 2

9 x 4 16 y 6

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( x + y ) 9 ( x y ) 4 ( x + y ) 3

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6 b 2 n + 7 8 b 5 n + 2

48 b 7 n + 9

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18 x 4 n + 9 2 x 2 n + 1

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( x 5 t y 4 r ) 7

x 35 t y 28 r

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( a 2 n b 3 m c 4 p ) 6 r

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Questions & Answers

if three forces F1.f2 .f3 act at a point on a Cartesian plane in the daigram .....so if the question says write down the x and y components ..... I really don't understand
Syamthanda Reply
hey , can you please explain oxidation reaction & redox ?
Boitumelo Reply
hey , can you please explain oxidation reaction and redox ?
Boitumelo
for grade 12 or grade 11?
Sibulele
the value of V1 and V2
Tumelo Reply
advantages of electrons in a circuit
Rethabile Reply
we're do you find electromagnetism past papers
Ntombifuthi
what a normal force
Tholulwazi Reply
it is the force or component of the force that the surface exert on an object incontact with it and which acts perpendicular to the surface
Sihle
what is physics?
Petrus Reply
what is the half reaction of Potassium and chlorine
Anna Reply
how to calculate coefficient of static friction
Lisa Reply
how to calculate static friction
Lisa
How to calculate a current
Tumelo
how to calculate the magnitude of horizontal component of the applied force
Mogano
How to calculate force
Monambi
a structure of a thermocouple used to measure inner temperature
Anna Reply
a fixed gas of a mass is held at standard pressure temperature of 15 degrees Celsius .Calculate the temperature of the gas in Celsius if the pressure is changed to 2×10 to the power 4
Amahle Reply
How is energy being used in bonding?
Raymond Reply
what is acceleration
Syamthanda Reply
a rate of change in velocity of an object whith respect to time
Khuthadzo
how can we find the moment of torque of a circular object
Kidist
Acceleration is a rate of change in velocity.
Justice
t =r×f
Khuthadzo
how to calculate tension by substitution
Precious Reply
hi
Shongi
hi
Leago
use fnet method. how many obects are being calculated ?
Khuthadzo
khuthadzo hii
Hulisani
how to calculate acceleration and tension force
Lungile Reply
you use Fnet equals ma , newtoms second law formula
Masego
please help me with vectors in two dimensions
Mulaudzi Reply
how to calculate normal force
Mulaudzi
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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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