Mary Jane Sterling - Algebra I All-in-One For Dummies

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Solve for ‘X’ with this practical and easy guide to everything algebra  A solid understanding of algebra is the key to unlocking other areas of math and science that rely on the concepts and skills that happen in a foundational Algebra class. 
 is the key! With it, you’ll get everything you need to solve the mystery of Algebra I. 
This book proves that algebra is for everyone with straightforward, unit-based instruction, hundreds of examples and practice problems, and two quizzes for every chapter – one in the book and another (totally different!) online. From graph and word problems to the FOIL method and common algebra terminology, 
 walks you step-by-step through ALL the concepts you need to know to slay your Algebra I class. 
In this handy guide, you’ll also: 
Receive instruction and tips on how to handle basic and intermediate algebraic tasks such as factoring and equation simplification Banish math anxiety forever by developing an intuitive understanding of how algebra works Get a handle on graphing problems and functions, as well as inequalities and word problems 
is a must-read for Algebra students looking for an everything-in-one-book supplement to their coursework, as well as anyone hoping to brush up on their math before tackling a related subject, such as physics, chemistry, or a more advanced math topic.

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Algebra I AllinOne For Dummies - изображение 525

Notice how the distributive function works for you here!

28 Algebra I AllinOne For Dummies - изображение 526Use an additive identity to change the expression картинка 527to one with only the variable term.

29 Use an additive identity to change the expression картинка 528to one with only the variable term.

30 Use a multiplicative identity to change the term –7 x to one with only the variable factor.

31 Use a multiplicative identity to change the expression картинка 529to one with the variable factor having an integer for a coefficient.

Working with Factorial

The nonbinary operation called factorial is important in problems involving probability, counting items, and, of course, is a basic function used in algebra. When you see n !, you know to take the number n and multiply it by every natural number smaller than it is:

The number n must be a whole number This means that 1 is rather redundant - фото 530

The number n must be a whole number. This means that 1! is rather redundant. There’s no natural number smaller, so картинка 531. And then there’s 0!. There’s no natural number smaller than 0; in fact, 0 isn’t a natural number itself! By definition, картинка 532. How can that be? Well, mathematicians decided it is so. And it wasn’t arbitrary or a flip-of-the-coin. By assigning 0! the value 1, it makes all sorts of formulas for counting and other applications work consistently.

A particular challenge when working with factorials is to reduce fractions containing those functions. Basically, you find the common factors in the factorials in the numerator and denominator, eliminate them, and determine what’s left.

Algebra I AllinOne For Dummies - изображение 533 Q.What is картинка 534?

A.If these were just the two numbers 4 and 3, you would either leave it as is, because 4 and 3 don’t have any common factors other than 1, or you would write this as a mixed number. It’s different with factorials. Rewrite the fraction after expanding the factorial values.

QWhat is AWrite out the factorials and reduce the fraction - фото 535

Q.What is AWrite out the factorials and reduce the fraction QWhat is - фото 536?

A.Write out the factorials and reduce the fraction.

QWhat is AThe value of is def - фото 537

Q.What is картинка 538?

A.The value of Algebra I AllinOne For Dummies - изображение 539is defined to be 1. This is by design/definition.

Algebra I AllinOne For Dummies - изображение 540

Q.What is картинка 541?

A.“Yikes!”, you say. I have to write out the product of all the numbers from 100 down to 1 and then from 97 down to 1? “No,” is the answer. You can take a shortcut. In the numerator, instead of writing from 97 down to 1, just use 97!. Here’s how it works:

Algebra I AllinOne For Dummies - изображение 542

32 Algebra I AllinOne For Dummies - изображение 543 картинка 544

33 картинка 545

34 картинка 546

Applying the Greatest Integer Function

The greatest integer function is one of the nonbinary functions that is frequently used in algebra and its applications. This function is a method of rounding numbers. When you “round” a number to its nearest integer or tenth or thousandth or thousand, and so on, you move up or down to get to the closer value. With the greatest integer function, it doesn’t matter how close, it matters in which direction.

When rounding numbers, you determine what digits need to be dropped and whether the target place value or number goes up by 1 or stays the same.

Suppose you want to round 3.667 to the nearest integer. The target number is the 3. Because the next digit, the 6, is greater than 5, you round the 3 up to 4 and eliminate the rest of the digits. You can replace them with 0 or, in this case, just keep the number 4. So, in rounded form, картинка 547or картинка 548.

What if you’re asked to round 1234.567 to the nearest hundred? The target number is the 2. The next digit down is 3, which is smaller than 5, so you leave the 2 as is and replace the 3 and the rest of the smaller digits with 0s. Algebra I AllinOne For Dummies - изображение 549or Algebra I AllinOne For Dummies - изображение 550.

Note: When the digit below the target digit is exactly 5, and nothing else, you round up.

The greatest integer function acts a bit differently than rounding. It’s similar in that the greatest integer function eliminates unwanted fractions or decimals, but the greatest integer function only goes in one direction: down. Or, if you already have an integer, the greatest integer leaves the number alone.

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