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Tuesday, September 23, 2008

Pre Algebra Period 2 (Monday)

Properties of Numbers 2-1
WHAT ARE PROPERTIES? (Why are they your friends?)
You can count on properties. They always work. There are no COUNTEREXAMPLES!

COUNTEREXAMPLE = an example that shows that something does not work
(counters what you have said)

An example from Math: You can't switch the order of subtraction because it's not the same value.
10 - 8 DOES NOT EQUAL 8 - 10
That's a COUNTEREXAMPLE to saying that you can switch subtraction
(We'll say that it's a COUNTEREXAMPLE to the existence of a
COMMUTATIVE PROPERTY OF SUBTRACTION
so that property does not exist!)

An example from Math: You switch the order of addition to make the adding easier.
20 + 547 + 80 = 20 + 80 + 547
(both equal 647, but the right side is much easier!)
What allowed you to switch the order?
A property called the Commutative Property of Addition says you can!
You'll always get the same value!

Now Aunt Sally doesn't like some of the properties because they allow us to do things that are exception to the Order of Operations!

Commutative Property
You can switch the order of all addition or all multiplication
a + b = b + a
ab = ba
3 + 5 = 5 + 3
3 (5) = 5 (3)
(you can HEAR the change in order!)
Aunt Sally says that you always need to go left to right, but Commutative says not necessary if
you have all multiplication or all addition.

Associative Property
You can group all addition or all multiplication any way you want
a + b + c = a + (b + c)
abc = a(bc)
(3 + 2) + 8 = 3 + (2 + 8)
(Why would you want to? Sometimes it's easier!)
[57 x 5] (2) = (57) [ 5 (2) ]
(you can't hear this property! but you can SEE it!)
Aunt Sally says you must always do parentheses first, but Associative says that you can actually take the parentheses away, put parentheses in, or change where the parentheses are if
you have all multiplication or all addition.
These properties give you a choice when it's all multiplication OR all addition
There are no counterexamples for these two operations.

BUT THEY DO NOT WORK FOR SUBTRACTION OR DIVISION
(lots of counterexamples! 10 - 2 does not equal 2 - 10
15 ÷ 5 does not equal 5 ÷ 15)

SO WHY SHOULD YOU CARE????
Because it makes the math easier sometimes!
Which would you rather multiply:
(2)(543)(5) OR (2)(5)(543) ???
Commutative allows you to choose!

ANOTHER EXAMPLE: [(543)(5)](2)
Aunt Sally would say you must do the 543 by the 5 first since it's in [ ]
But our friend the Associative Property allows us to simply move the [ ]
[(543)(5)](2) = (543)[(5)(2)] which is so much easier to multiply in your head!!!

TWO MORE FRIENDS:
THE IDENTITY PROPERTIES
OF ADDITION AND MULTIPLICATION

For addition, we know that adding zero to anything will not change the IDENTITY of what you started with: a + 0 = a (what you started with)
0 is known as the ADDITIVE IDENTITY.

For multiplication, we know that multiplying 1 by anything will not change the IDENTITY of what you started with: (1)(a) = a (what you started with)
1 is known as the MULTIPLICATIVE IDENTITY.

Sometimes 1 is "incognito" (disguised!)
We use this concept all the time to get EQUIVALENT FRACTIONS.
Say we have 3/4 but we want the denominator to be 12
We multiply both the numerator and the denominator by 3 and get 9/12
We actually used the MULTIPLICATIVE IDENTITY of 1, but it was disguised as 3/3
ANYTHING OVER ITSELF = 1 (except zero because dividing by zero is UNDEFINED!)
a + b - c/a + b - c = 1


We also use this property to SIMPLIFY fractions.
We "simplify" all the parts on the top (the numerator) and the bottom (the denominator) that equal 1
(your parents would say that we are reducing the fraction)
6abc/10a =3bc/5 since both the numerator and denominator can be divided by
2a/2a



WE LOVE PROPERTIES BECAUSE THEY MAKE OUR LIFE EASIER!
AUNT SALLY HATES THEM BECAUSE THEY ALLOW US TO BREAK HER RULES!!!

Math 6 H Periods 1, 6 & 7 (Monday)

Writing Mathematical Expressions 2-1

Make sure to glue the 'pink 1/2 sheet' of math word phrases that we associate with each of the four basic operations -- into your spiral notebook (SN)

We can use the same mathematical expression to translate many different word phrases
Five less than a number n
The number n decreased by five
The difference when five is subtracted from a number n

All three of those phrases can be translated into the variable expression

n-5

The quotient of a number y divided by ten becomes y/10. It may look like only a fraction to you-- but if you read y/10 as always " y divided by 10" you have used the proper math language.

Twelve more than three times a number m

Wait-- where are you starting from... in this case you are adding 12 to 3m so you must write

3m + 12


Not all word phrases translate directly into mathematical expressions. Sometimes we need to interpret a situation.. we might need to use relationships between to help create our word phrase.

In writing a variable expression for the number of hours in w workdays, if each workday consists of 8 hours...

First set up a T chart- as discussed in class
put the unknown on the left side of the T chart... The unknown is always the one that reads like " w workdays"

so in this case

w workdays on the left side and under it you put
1
2
3

On the right side put the other variable-- in this case hours
under hours put the corresponding facts you know-- the relationship between workdays and hours as given in this case
hours
8
16
24

all of those would be on the right side of the T chart.

Now look at the relationships and ask yourself--
What do you do to the left side to get the right side?

and in this case

What do you do to 1 to get 8?
What do you do to 2 to get 16?
What do you do to 3 to get 24?

Do you see the pattern?

For each of those the answer is "Multiply by 8" so
what do you do to w-- The answer is Multiply b 8
so the mathematical expression in this case is "8w."

What about writing an expression for
The number of feet in i inches

i inches is the unknown... so that goes on the left side of the T chart... with feet on the right

i inches ___feet
12...............1
24...............2
36...............3

I filled in three known relationships between inches and feet Now, ask your self those questions again...
What do you do to the left side to get the right side?

and in this case

What do you do to 12 to get 1?
What do you do to 24 to get 2?
What do you do to 36 to get 3?

In each of these, the answer is divide by 12
so What do you do to i? the answer is divide by 12
i inches ___feet
12...............1
24...............2
36...............3
i................i/12



and it is written i/12


Some everyday words we use to so relationships with numbers:
consecutive whole numbers are whole numbers that increase by 1 for example 4, 5, 6
A preceding whole number is the whole number that is 1 less and the next whole number is the whole number that is 1 greater.

Math 6 Honors Periods 1, 6 & 7

Order of Operations 1-5
PEMDAS in my math class... PEMDAS in my math class... just follow the song and make sure you use the rules

Always perform the operation enclosed in the inner pair of group symbols ( such as parentheses and bracket [ ]) FIRST.
Then do all the exponents
Do all multiplication and division in order from left to right
Do all addition and subtractions in order from left to right.

A Problem Solving Model 1-6


make sure to glue in the "Plan for Solving Word Problems" into your spiral notebook

Read the problem carefully. Make sure that you understand what it says. You may need to read it more than once... That's okay!! It is great to re read things!!

Use questions like these in planning the solution:
What is asked for?
What facts are given?
Are there enough facts? Are there some unnecessary facts?
Determine which operation or operations can be used to solve the problem

Carry out the operations CAREFULLY!!
Check your results with the facts given in the problem.

Tuesday, September 16, 2008

Math 6 Honors Periods 1, 6 & 7

The Distributive Property 1-4

Distributive Property of Multiplication
(with Respect to Addition)

For any whole numbers a, b, and c,

a x (b + c) = (a x b) + (a x c)
and (b + c ) x a = (b x a ) + (c x a)

or written without the multiplication operator symbol
a(b + c) = ab + ac
(b+c)a = ba + bc
Remember that the parentheses indicate which operation to do first.


How could we simplify the following using the distributive property?

a. 13 x 15
13(10 + 5) = 13(10) + 13(5)


b. (11 x 4) + (11 x 6)
11( 4 + 6) = 11(10)

Distributive Property of Multiplication
(with Respect to Subtraction)

For any whole numbers a, b, and c,

a x (b - c) = (a x b) - (a x c)
and (b - c ) x a = (b x a ) - (c x a)

or written without the multiplication operator symbol

a(b -c) = ab - ac
(b-c)a = ba - ca which is better written ab- ac

Since multiplication is distributive with respect to both addition and subtraction, we refer to both properties as the distributive property.

Pre Algebra Period 2 (Monday)

CHAPTER 1-9: MULTIPLYING AND DIVIDING INTEGERS

They have the SAME rules!!!!

Math Book Rules:
If you have 2 signs that are the SAME -
answer is POSITIVE
If you have 2 signs that are DIFFERENT -
answer is NEGATIVE

Good Guy/Bad Guy Rules:
GOOD thing happens to GOOD person= GOOD = POSITIVE

BAD thing happens to BAD person = GOOD = POSITIVE
(they got what they deserved!)

GOOD thing happens to a BAD person = BAD = NEGATIVE
(we hate when good things happen to people who don't deserve it!)

BAD thing happens to a GOOD person = BAD = NEGATIVE
(we hate when that happens because it's so UNFAIR!)

Finger Rules:
If your index finger represents the negative sign, then if you have 2 negatives, you have the index fingers of both your left hand and your right hand and they make a plus sign!
If you just have one negative, it just stays negative because you don't have another finger to cross it!
If you have more than 2 negatives, you just keep using your index fingers to determine the sign.
We did this in class. It's fun! But once you get it, you won't need to keep doing it! (unless you want to keep having fun!!!)

WHAT IF THERE IS MORE THAN 2 SIGNS?
Use Aunt Sally Rules and go left to right
or
BE A SIGN COUNTER:
an ODD number of NEGATIVES = NEGATIVE
an EVEN number of NEGATIVES = POSITIVE

EXAMPLE: (-2) (-5) (-3) = -30 (odd number of negatives)
(2) (-5) (-3) = +30 (even number of negatives)
(2) (5) (-3) = -30 (odd number of negatives)

Averages ( or the Mean): Adding up all the numbers and dividing by the number of numbers

Algebra Period 3 (Monday)

CHAPTER 2-1: ABSOLUTE VALUE
Note:
It is difficult to show the symbol for absolute value here so l n l should be read as “the absolute value of n”

l n l = 5 has 2 possible answers: {-5, 5}
l n l= -5 is impossible! It's the null set and that symbol is either { } or a 0 with a slanted line through it

FORMAL DEFINITION OF ABSOLUTE VALUE:
absolute value of n is n if n was a positive number or zero
absolute value is the opposite of n if n was a negative number
(since absolute value is always positive)

The absolute value is a distance concept- the absolute value is the distance a number is from zero on a number line.

2 words often misunderstood:
withdrawing money is actually considered negative, while depositing is considered positive
The focus is not the money in your wallet, but the money in your bank account!

CHAPTER 2-2: RATIONAL NUMBERS:
Counting Numbers = natural numbers = 1, 2, 3, 4 …..
Whole Numbers = the natural numbers + 0… so 0, 1, 2, 3, 4, ….
Integers = the whole numbers and their opposites… so …-4, -3, -2, -1, 0, 1, 2, 3, 4….
Rational number = any number that can be expressed as the ratio (fraction) of two integers
a/b, where a and b are both integers and b cannot be zero
b cannot be zero because you cannot divide by zero.....IT'S UNDEFINED!
Proof of this was done in class

There are positive and negative rational numbers.
One way to put them in order from least to greatest is to simply place them on the REAL number line. Numbers will be least to greatest if read from the left to the right.
If you have both fractions and decimals, it's often easier to change the fractions into decimals by simply dividing the numerator by the denominator.
REMEMBER: When numbers are NEGATIVE, the closer they are to zero, the bigger they are.
Example: -1/2 is greater than -3/4
-2.3 is greater than -2.5

You can also find the absolute value of rational numbers -
They are ALWAYS POSITIVE unless you're talking about zero (which is neutral)

Tuesday, September 9, 2008

Pre Algebra Period 2 (Tuesday)

Absolute Value 1-4
ABSOLUTE VALUE IS ALWAYS POSITIVE!
(except zero because zero has no sign)
Absolute value is a DISTANCE concept and that is why it can't be negative.

On the other hand, every integer has an ADDITIVE INVERSE which will be its OPPOSITE SIGN (except zero which has no sign - neutral)

Adding Integers 1-5

Three ways to understand adding integers:
1. positive negative sketch - make positive numbers positive signs and make negative numbers negative signs. Then match up all the positives with the negatives by box them in. Whatever is left, is the answer and the sign of the answer.

2. number line - draw the arrows and see where you end up

3. Who wins and by how much?
Different signs: Put the winner on top and take the difference
Take the DIFFERENCE (subtract) and keep the BIGGER (absolute value)number's SIGN
I say: 2 teams came to play: the positive team and the negative team
If you have 10 + (-15) then the positive team scored 10 while the negative team scored 15
Who won?
The negative team (so keep that sign)
By how much?
5 points
Answer: -5

Same sign: Just add and keep the sign you have
I say: only one team came to play so, of course, they won!
You would just add up the scores because all the players are on the same team!
Example: -5 + (-10), so just the negative team came to play
Therefore, the negative team won and you just add up their scores
Answer: -15

Additive inverses: the sum of additive inverses (same number with opposite signs) is always zero.
I say: it's a tie and no one wins! The answer would be zero!
Example: -5 + 5 = 0
-x + x = 0

Again, the rules are:
SAME sign: Just ADD them and KEEP the sign
DIFFERENT signs: Take the difference (SUBTRACT) and take the BIGGER number's SIGN.

MORE THAN 2 ADDENDS:
When adding a lot of addends, here's a good strategy:
1) SEE IF ANY ARE ADDITIVE INVERSES AND JUST CROSS THEM OUT BECAUSE ADDING INVERSES ALWAYS GIVES YOU ZERO!
What justifies crossing them out? The Identity Property of Addition
2) Add the positives to the positives
Add the negatives to the negatives
What justifies changing the order and grouping the addends this way?
The Commutative (order) and Associative (grouping) Properties of Addition

3) Finally, add the positive sum to the negative sum at the end and
see who wins and by how much
Usually, you will make less silly mistakes this way than just going left to right!

Adding integers with variable expressions:
Just substitute in for the variable, putting the substituted number into
( ),then evaluate using the integer rules.
(I say plug and chug!)
y + 5 where y = -12
(-12) + 5 = -7

Algebra Period 3 (Tuesday)

CHAPTER 1-5: FACTORING (part 2 starting on p. 25)
First, I'll review what Like Terms are and clear up the difference between
"combining" vs multiplying/dividing terms
LIKE TERMS:
1. Same variable
2. Same exponent
Constants are like terms because they all have no variables
(you can actually say that they have a variable raised to the 0 power,
which is 1 times the coefficient)
Example: 3x + 4 can be thought of as 3x + 4x0.= 3x + 4(1).
You can only combine (add or subtract) like terms.

BUT YOU CAN MULTIPLY/DIVIDE UNLIKE TERMS!
3a(7y) = 21ay
BUT
3a + 7y cannot be simplified

48xy/6x = 8y
BUT
48xy - 6x cannot be simplified

FACTORING
THE MAJOR "WATERSHED" MOMENT IN ALGEBRA I!
Undoing the Distributive Property
5 ( 6y + 11 )
This simplifies to 30y + 55

Now you can WORK BACKWARDS to the way the expression began before you used the distributive property.
In 7th grade, we called this using the distributive property backwards.
Now, in Algebra, we call this FACTORING.
FACTORING IS A KEY CONCEPT TO UNDERSTAND IN ALGEBRA.
WITHOUT IT, YOU WILL STRUGGLE THE ENTIRE YEAR!

Let's use the same problem as above and work backwards (FACTOR)
EXAMPLE: FACTOR 30y + 55

THINK: What do 30y and 55 have in common (What is their GCF?)
They both divide by 5

FACTOR out the GCF of 5
(factoring out is really dividing each term by the 5)

MIDDLE STEP TO UNDERSTAND FACTORING:
5 ( 30y + 55 )
5 5
we haven't changed the value because we've divided each piece by 5 and multiplied by 5 as well
(multiply a number by 5 and then divide it by 5 and you'll see have your starting number!)

FINAL FACTORED FORM: 5 ( 6y + 11 )
Wait a minute...Isn't that what I started with before I used the Distributive Property????
Of course it is! This is the key concept in factoring!!!!!

FACTORING DOES NOT CHANGE THE VALUE OF WHAT YOU STARTED WITH!
It's incognito the same thing!
Therefore, you can always check your factored form by multiplying back to the original simplified form.
If it doesn't get back to that,
YOU HAVEN'T FACTORED PROPERLY!

We say that the factored form and simplified form are EQUIVALENT EXPRESSIONS..
(I say they are INCOGNITO the same thing!)

Pre Algebra Period 2 (Monday)

Variables & Expressions 1-1 (continued)

You can translate words into Algebra word by word
just like you translate English to Spanish or French.
5 more than a number
5 + n
the product of 5 and a number
5n
the quotient of 5 and a number
5/n
the difference of a number and 5
n - 5
NOTE: BECAUSE MULTIPLICATION & ADDITION IS COMMUTATIVE, YOU DON'T NEED TO WORRY ABOUT THE ORDER
BUT
FOR SUBTRACTION AND DIVISION, YOU MUST BE CAREFUL ABOUT THE ORDER
GENERALLY, THE ORDER FOLLOWS THE ORDER OF THE WORDS
EXCEPT (counterexample!)
5 less THAN a number
or
5 subtracted FROM a number
Both of these are: n - 5
The order SWITCHES form the words because the words state that you have a number that is more than you want it to be so you need to take away 5 from it.
For word problems like someone's age or the amount of money you have, you should always check your algebraic expression by substituting actual numbers to see if your expression makes sense.
EXAMPLE: Tom is 3 years older than 5 times the age of Julie
Translating: T = 3 + 5J
Does that make sense? Is Tom a lot older than Julie or is Julie older?
Try any age for Julie. Say she is 4 years old.
T = 3 + 5(4) = 23
In your check, Tom is 23. Is Tom 3 years older than 5 times Julie's age?


STRATEGY #2: MAKE A T-CHART
To translate known relationships to algebra, it often helps to make a T-Chart.
You always put the unknown variable on the LEFT side and what you know on the right.
Fill in the chart with 3 lines of numbers and look for the relationship between the 2 columns.
Then, you use that mathematical relationship with a variable.

EXAMPLE: The number of hours in d days
Your unknown is d days so that goes on the left side:

d days number of hours
1 24
2 48
3 72

Now look at the relationship between the left column and the right column.
You must MULTIPLY the left column BY 24 to get to the right column
The last line of the chart will then use your variable d

d days number of hours
1 24
2 48
3 72
d 24d

EXAMPLE: The number of days in h hours (The flip of the first example)
Your unknown is h hours so that goes on the left side:

h hours number of days
24 1
48 2
72 3



(Why did I start with 24 and not 1 hour this time?)


Now look at the relationship between the left column and the right column.
You must DIVIDE the left column BY 24 to get to the right column
The last line of the chart will then use your variable h

h hours number of days
24 1
48 2
72 3
h h/24

Algebra Period 3 (Monday)

Solving Equations: An Intro 1- 7

Equations use an = sign to show that two expressions are equivalent
Equations can be true, false, or open
If an equation is NUMERICAL (numbers), it must be either TRUE or FALSE:
3 + 5 = 8 is TRUE
3 + 5 = 9 is FALSE
If an equation is ALGEBRAIC (variables), it is OPEN for discussion
(it all depends on what the variable is!)
y + 4 = 10 is OPEN

SOLUTION = answer
REPLACEMENT SET: The set of answers that you have to choose from for the answer.
SOLUTION SET: All the answers that make a statement true.
{ } set symbol
EXAMPLE: Solve y + 4 = 10 for the replacement set {2, 6, 10}
Substitute each element of the replacement set into the equation to see which one(s) work
Only 6 works, so only 6 is a true solution
The solution set is {6}
Note that if the replacement set was {2, 7, 10} for y + 4 = 10, then the solution set would be the NULL SET which means the solution does not exist in the replacement set.
The symbol for the null set is a zero with a line through it.

Equations must always be in balance.
GOLDEN RULE: WHATEVER YOU DO TO ONE SIDE OF AN EQUATION, YOU MUST DO TO THE OTHER SIDE or you'll be out of balance.
One way they might ask this question on the STAR Test is to ask:
What was done to the first equation to get the second?
EXAMPLE: 3x - 5 = 12 and 9x - 15 = 36
The first equation was multiplied by 3 to get to the second equation so they are equivalent.






Using Formulas 1-9
What's the difference between an ordinary equation and a FORMula?
A FORMula has a KNOWN form, meaning it's a known relationship.
The area of a rectangle is known to be length times width (or base times height)
Contrast that to 2y + 7 = what??? This is not a known relationship!
Once you know a formula, you plug in the variables that you know (are "given")
and solve for the variable that you don't know.
MAKE SURE THE DIMENSIONS (labels) are consistent!
Example...if the length is given in feet and the width is given in inches, make them both inches
(usually, it's easier to change to the smaller label)

Thursday, September 4, 2008

Math 6 Honors Periods 1, 6 & 7

Inverse Operations 1-3


Inverse operations: mathematical operations that undo each other.
Using the same number, the operation of subtraction undoes the operation of addition
Similarly, the operation of division and multiplication can be described as inverse operations

The addition and multiplication properties of 0 and 1 lead us to the subtraction and division properties of 0 and 1

Subtraction Property of Zero

For any whole number a,
a – 0 = a and a - a = 0


Division Property of One

For any whole number a, except 0,
a ÷ 1 = a and a ÷ a = 1


Division Property of Zero

For any whole number a, except 0,
0 ÷ a = 0

Notice in the division property of 0 that the divisor, a, represents any whole number, except for 0.

Math 6 H Periods 1, 6 & 7 (Tues & Wed.)

Mathematical Expressions 1-1

A variable is a symbol used to represent one or more numbers. The numbers are called the values of the variable.

An expression, such as 3 x n, that involves a variable is called a variable expression.

Expressions, such as 3 x 2, that name a certain number are called numerical expressions

When we write a product that involves a variable, we usually omit the multiplication symbol (whether that be written as x or as or even with parentheses). Thus, 3 x n is written as 3n

and 2 x a x b is written as 2ab

In numerical expressions for products a multiplication symbol must be used to avoid confusion.

9 x 7 may be written as 9 ∙ 7

When a mathematical sentence uses an equal sign, it is called an equation. An equation tells us that two expressions name the same number. The expression to the left of the equals sign is called the left side of the equation and the expression to the right of the equals sign is called the right side.

When a number is substituted for a variable in the variable expression and the indicated operation is carried out, we say that the variable expression has been evaluated. For example, if n has the value 6 in the variable expression 3 x n, then 3 x n has the value 3 x 6, or 18



Properties of Addition and Multiplication 1-2

The set of numbers 1, 2, 3, 4, 5, … is called the counting numbers.

If 0 is included in the set, we obtain the set of whole numbers

0, 1, 2, 3, 4, …

The order in which two whole numbers are added or multiplied does not change their sum or their product.

For example, 3 + 4 = 7 and 4 + 3 = 7

3 x 4 = 12 and 4 x 3 = 12

Commutative Properties

For any whole numbers a and b, a + b = b + a

For any whole numbers a and b, a x b = b x a

C+ for Commutative Property of addition

Cx for Commutative Property of multiplication




Operations indicated within parentheses in any expression are done before the others.

(9 x 2) x 5 = 18 x 5 = 90

9 x (2 x 5) = 9 x 10 = 90

The order in which we multiply whole numbers has no effect on the product

(9 x 2) x 5 = 9 x (2 x 5)

Associative Properties

For any whole numbers a, b, and c,

(a + b) + c = a + (b + c)

For any whole numbers a, b, and c, (a x b) x c = a x (b x c)

A+ for Associative Property of Addition

Ax for Associative Property of Multiplication


The numbers 0 and 1 have special properties.

6 + 0 = 6 and 0 + 6 = 6

Since the sum of any whole number and 0 is the same whole number, 0 is called the identity element for addition

Addition Property of Zero

For any whole number a,

a + 0 = a and 0 + a = a

It’s the Identity Property of Addition also know as the Additive Identity

Id+



6 x 1 = 6 and 1 x 6 = 6

1 is the identity element for multiplication, since the product of any whole number and 1 is the same whole number.

Multiplication Property of One

For any whole number a,

a x 1 = a and 1 x a = a

It’s the Identity Property of Multiplication also know as the

Multiplicative Identity

Idx


6 x 0 = 0 and 0 x 6 = 0

illustrate an important property of 0—the product of any whole number and 0 is 0

Multiplication Property of Zero

For any whole number a,

a x 0 = 0 and 0 x a = 0

x0 ( my abbreviation for the multiplication property of Zero)

Tuesday, September 2, 2008

Pre Algebra Period 2 (Tuesday)

The Order Of Operations 1-2

O3 = Order Of Operations

It’s Aunt Sally’s Rule—Please Excuse My Dear Aunt Sally

Please (XX)

Excuse E2

My Dear (or even Dear My) × ÷ or ÷ ×

Aunt Sally (Sally Aunt) + - or - +

PEMDAS

The most common mistake of O3

when you see multiplication and division—you do whichever comes first in order!!

So if you see division then multiplication, you do division first then multiplication

When you see addition and subtraction, you do whichever comes first in order!
So if you see subtraction then addition, do the subtraction first!

When you see more than one set of parentheses, do the innermost ones first, then work outwards.
They're called nested parentheses because a bird builds his nest from the inside out.

Algebra Period 3 (Tuesday)

Symbols and Expressions 1-1

O3 = Order Of Operations

It’s Aunt Sally’s Rule—Please Excuse My Dear Aunt Sally

Please (XX)

Excuse E2

My Dear (or even Dear My) × ÷ or ÷ ×

Aunt Sally (Sally Aunt) + - or - +

PEMDAS

The most common mistake of O3

when you see multiplication and division—you do whichever comes first in order!!

So if you see division then multiplication, you do division first then multiplication

When you see addition and subtraction, you do whichever comes first in order!
So if you see subtraction then addition, do the subtraction first!

When you see more than one set of parentheses, do the innermost ones first, then work outwards.
They're called nested parentheses because a bird builds his nest from the inside out.