Systems of Linear Equations Valentine's Day Coloring Page Activity

Grade Levels
8th - 9th
Formats Included
  • PDF
3 pages
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  1. This bundle is perfect for an 8th grade math systems of equations unit! Students learn and practice solving pairs of simultaneous linear equations by graphing and using the substitution method.Included in this bundle:-Systems of Equations Poster Set-Systems of Equations Graphing Guided Notes-System
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Here's an engaging way to practice solving systems of equations this Valentine's Day! This is a fun color by number activity for February (or anytime you need to show some LOVE!)

Students will solve 8 systems of linear equations using either the graphing or the substitution method. 6 of the systems of equations are in slope-intercept form and 2 systems have an equation in standard form that can converted to slope-intercept form.

There is room on the worksheet to solve using the substitution method. Students can also use the graphing method if they choose. They will need to use their own graph paper or dry-erase grids to solve by graphing.

They then color a LOVE coloring sheet based on the solutions they get, so it is somewhat self-checking. Students love these color pages! And when they are finished, you can hang them up on your bulletin board for decoration.

This is a low-prep Valentine's Day activity. You will only need to print both pages of the worksheet and provide enough for your students. Use it as classwork, homework, or for early finishers.

An answer key is included for quick and easy checking.

I hope you love it and your students learn it!

Please follow me! -8th Grade Math Teacher

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Total Pages
3 pages
Answer Key
Teaching Duration
45 minutes
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to see state-specific standards (only available in the US).
Solve systems of linear equations exactly and approximately (e.g., with graphs), focusing on pairs of linear equations in two variables.
Solve systems of two linear equations in two variables algebraically, and estimate solutions by graphing the equations. Solve simple cases by inspection. For example, 3𝘹 + 2𝘺 = 5 and 3𝘹 + 2𝘺 = 6 have no solution because 3𝘹 + 2𝘺 cannot simultaneously be 5 and 6.
Understand that solutions to a system of two linear equations in two variables correspond to points of intersection of their graphs, because points of intersection satisfy both equations simultaneously.
Analyze and solve pairs of simultaneous linear equations.


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