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7th Grade Pre-Algebra (Independent Study)

7th Grade Pre-Algebra (Independent Study)

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Quick Overview

In this research-based 7th Grade math course, students take a broader look at computational and problem-solving skills while learning the language of algebra. Students translate word phrases and sentences into mathematical expressions; analyze geometric figures; solve problems involving percentages, ratios, and proportions; graph different kinds of equations and inequalities; calculate statistical measures and probabilities; apply the Pythagorean theorem; and explain strategies for solving real-world problems.

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Course Overview

In this 7th Grade math course, students take a broader look at computational and problem-solving skills while learning the language of algebra. Students translate word phrases and sentences into mathematical expressions; analyze geometric figures; solve problems involving percentages, ratios, and proportions; graph different kinds of equations and inequalities; calculate statistical measures and probabilities; apply the Pythagorean theorem; and explain strategies for solving real-world problems. Online lessons provide demonstrations of key concepts, as well as interactive problems with contextual feedback. A textbook supplements the online material. Students who take Pre-Algebra are expected to have mastered the skills and concepts presented in the K12 Fundamentals of Geometry and Algebra course (or equivalent).


Course Outline


Unit 1: The Basics

Let's start at the very beginning; it's a very good place to start. Just as you need to know basic grammar and vocabulary as you begin to learn any language, you need to know some basic building blocks as you begin to learn algebra.

  • Order of Operations
  • Variable Expressions
  • Writing Expressions for Word Phrases
  • Comparing Expressions
  • Replacement Sets
  • Related Equations
  • Solving Problems

Unit 2: Addition and Subtraction

If you have two oranges and a friend gives you three oranges, how many do you have? If you then give four oranges to your friend, how many are you left with? This sort of addition and subtraction problem with passing fruit back and forth is the type of simple math you have done since you were very young. When you expand your addition and subtraction skills to negative numbers and decimals, you can solve many more complicated problems.

  • Integers on a Number Line
  • Adding Integers
  • Subtracting Integers
  • Decimals on a Number Line
  • Adding Decimals
  • Subtracting Decimals
  • Addition and Subtraction Properties
  • Equations Involving Addition and Subtraction
  • Addition and Subtraction Applications

Unit 3: Multiplication and Division

Isaac Newton's third law of motion is often paraphrased as “for every action, there is an equal and opposite reaction.” Just as forces come in pairs, so can mathematical operations. Multiplication and division are inverse operations. They undo each other and can both be used to solve many types of problems.

  • Multiplying Integers and Decimals
  • Dividing Integers and Decimals
  • Multiplication and Division Properties
  • Rounding and Estimation
  • Equations Involving Multiplication and Division
  • Multiplication and Division Applications

Unit 4: Fractions

Every fraction can be written as a decimal and every decimal can be written as a fraction. As a result, you could do just about all math with only fractions or only decimals, but decimals are used for certain applications just as fractions are used for others. For example, carpenters use fractions and mixed numbers quite a bit; anybody building a house or a deck deals with lots of fractions.

  • Equivalent Fractions
  • Multiplying Fractions
  • Dividing Fractions
  • Common Denominators
  • Adding and Subtracting Fractions
  • Working with Improper Fractions and Mixed Numbers
  • Multiplying and Dividing Mixed Numbers
  • Equations with Fractions and Mixed Numbers

Unit 5: Combined Operations

Many yachts can be powered by the wind, by a gas engine, or both. A hybrid automobile can run on gasoline or electric power. These combinations are very powerful. Combining addition or subtraction with multiplication or division is powerful as well. You can use equations and expressions with mixed operations to solve many complex problems.

  • The Distributive Property
  • Like Terms
  • Expressions with Mixed Operations
  • Equations with Mixed Operations
  • Error Analysis
  • Inequalities

Unit 6: Number Properties

Astronomers study things that are very, very far away. For example, the Horsehead Nebula is about 14,000 trillion kilometers away. On the other extreme, molecular geneticists study things that are very, very small. A double helix of DNA has a diameter of about one nanometer (a billionth of a meter.) With exponents, you can describe very great or very small distances.

  • Positive Exponents
  • Factors and Primes
  • GCF and Relative Primes
  • Negative Exponents
  • Powers of Ten
  • Scientific Notation

Unit 7: Geometry Basics

Shapes such as polygons and circles provide us with shelter, art, and transportation. Some artists use geometric shapes in their art, but most painters and photographers use rectangular frames to surround their art. Look at any art museum, and you will see triangles, rectangles, and other polygons in the structure of the building and in the artwork inside.

  • Points, Lines and Planes
  • Rays and Angles
  • Parallel Lines and Transversals
  • Triangles
  • Polygons
  • Circles
  • Transformations
  • Congruence

Unit 8: Semester Review and Test

  • Semester Review
  • Semester Test


Unit 1: Ratio, Proportion and Percent

Model builders use ratios and percents to describe how their models compare to real objects. They can use proportions to figure out the length of every item in the model.

  • Ratio
  • Proportion
  • Percents, Fractions and Decimals
  • Similarity and Scale
  • Working with Percent
  • Percent of Increase or Decrease
  • Simple Interest

Unit 2: Analytic Geometry

A pilot uses numbers to locate the airport she is flying to. An air traffic controller uses numbers on a radar screen to locate each airplane approaching the airport. Without a system of locating points, airplanes would have a hard time getting anywhere safely.

  • Points on the Plane
  • Two-Variable Equations
  • Linear Equations and Intercepts
  • Slope
  • Problem Solving
  • Relations and Functions
  • Systems of Linear Equations

Unit 3: Perimeter and Area

You can find geometric shapes in art. Whether determining the amount of leading or the amount of glass for a piece of stained glass art, stained-glass artists need to understand perimeter and area to solve many practical problems.

  • Types of Polygons
  • Perimeter
  • Areas of Rectangles and Triangles
  • Special Quadrilaterals
  • Areas of Special Quadrilaterals
  • Circumference
  • Areas of Circles

Unit 4: Square Roots and Right Triangles

Since ancient times, people have used right triangles to survey land and build structures. Even before Pythagoras was born, the relationship between the side lengths of a right triangle has been essential to anyone building just about any structure, including pyramids, houses, skyscrapers, and bridges.

  • Rational Square Roots
  • Irrational Square Roots
  • The Pythagorean Theorem
  • The Distance Formula
  • Special Types of Triangles
  • Trigonometric Ratios

Unit 5: Solid Figures

Gas-powered engines are driven by little explosions that move pistons up and down in cylinders. When you add up the volume of all the cylinders, you get the displacement of the engine. For instance, each cylinder in a four-cylinder, 1000 cc engine has a volume of 250 cubic centimeters. Engineers and mechanics must accurately compute volume when they build or maintain engines.

  • Volume and Capacity
  • Volumes of Prisms and Cylinders
  • Volumes of Pyramids and Cones
  • Surface Area
  • Surface Areas of Prisms and Cylinders

Unit 6: Counting and Probability

How many apples have mass between 100 and 200 grams? How many are bruised? How many are not yet ripe? Checking every single apple would probably be pretty impractical, but if you understand probability and sampling, you could make a good estimate.

  • Counting Principles
  • Permutations
  • Combinations
  • Probability
  • Mutually Exclusive Events
  • Samples and Prediction

Unit 7: Statistics

Data are everywhere. When you look at a group of people, you could use many numbers to describe them. How tall are they? How long is their hair? How old are they? What is their gender? What color are their eyes? Statistics helps you make sense of data.

  • Graphs
  • Measures of Center
  • Stem-and-Leaf Plots
  • Box-and-Whisker Plots
  • Frequency Tables and Histograms

Unit 8: Semester Review and Test

  • Semester Review
  • Semester Test


Additional Information

Course Length 12 Months
Prerequisites N/A
Course Materials

Many K12 courses utilize physical materials in addition to the online content.  These materials may include the following.

Standard Kits

STANDARD kits contain K12 course materials that are required for completion of the course.  These kits include K12 authored materials and/or difficult to procure materials that a student needs to complete a course. Printed reference guides are not included in Standard kits.


CONSUMABLE kits contain only those materials from the standard kit that are intended for one time use. Families who purchase a Standard kit for Child A could later purchase a Consumable kit for Child B to complete the same course.


Offered for added convenience, ADDITIONAL kits contain easily obtained materials needed for the course which a family may already have in their home. 

Coach and/or Student Reference Guides are available for purchase with some courses.  Electronic versions of these reference guides are also available within digital courses.

Course Start Date

Independent Study Courses

Courses can be started any day for independent study courses without a teacher. Full-year courses last 12 months and semester courses last 6 months.


Courses Taught by a K12 Teacher

Courses with a teacher have designated start dates throughout Fall and Spring. Full-year courses last 10 months and semester courses last 5 months. Courses are taught by teachers in K12 International Academy. For details on start dates, click here.

Teacher Assisted This course is available in two forms: taught by a teacher or designed for independent use. This teacher-supported course is taught through K12 International Academy. It is also available as independent study, where a parent will guide the course.
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To use this course, you'll need a computer with an Internet connection.  Some courses require additional free software programs, which you can download from the Internet.

Hardware and Browsers (Minimum Recommendations)

Windows OS

  • CPU: 1.8 GHz or faster processor (or equivalent)

  • RAM: 1GB of RAM

  • Browser: Microsoft Internet Explorer 9.0 or higher, Mozilla Firefox 10.0 versions or higher, Chrome 17.0 or higher

  • At this time our users are encouraged not to upgrade to Windows 10 or Edge (the new browser)


Mac OS

  • CPU: PowerPC G4 1 GHz or faster processor; Intel Core Duo 1.83 GHz or faster processor

  • RAM: 1GB of RAM

  • Browser: Firefox 10.0 versions or higher, Chrome 17.0 or higher (Safari is not supported!)

Using  Mobile Devices with the Online School

Unfortunately, many portable devices do not support the software products required to run the Online School. These devices may include (but not limited to): Chromebooks, iPads, iPhones, iPods, Kindles, eReaders, and Andriod phones.

Internet Connections

It is highly recommended that a broadband connection be used instead of dial up.