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Solving Systems of Equations by Graphing Practice Worksheet

Rated 4.83 out of 5, based on 143 reviews
4.8 (143 ratings)
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Grade Levels
8th - 9th
Standards
Formats Included
  • PDF
Pages
9 pages
$2.00
$2.00
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What educators are saying

This was a great print-and-go resource. I like that the front had the systems set up in slope-intercept form and the back had them set up in standard so my students could start off where they needed and move to the more difficult questions!

Description

Students will practice graphing systems of equations written in both slope-intercept form and standard form. All lines are linear equations.

This resource includes:

  • Worksheet with 12 problems

*6 problems with equations in Slope-Intercept Form

*6 problems with equations in Standard Form

*Graphs included for each problem

  • Answer Key for easy grading

Options for using this resource:

This is a quick way to assess your students knowledge of graphing linear equations and solving systems of linear equations. It can be used as a formative assessment or as a quiz/summative assessment. This is an easy print-and-go and also would be an easy activity to include in your substitute plans.

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Common Core Aligned

CCSS.MATH.CONTENT.8.EE.C.8.A 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.

CCSS.MATH.CONTENT.HSA.REI.C.6 Solve systems of linear equations exactly and approximately (e.g., with graphs), focusing on pairs of linear equations in two variables.

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© Hayley Cain (Activity After Math) Please note - this resource is for use by one teacher only. Additional teachers must purchase their own license. If you are interested in purchasing several licenses, please contact me. Thank you for your feedback and Happy Teaching! 

activityaftermath@gmail.com

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Total Pages
9 pages
Answer Key
Included
Teaching Duration
N/A
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Standards

to see state-specific standards (only available in the US).
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.
Solve systems of linear equations exactly and approximately (e.g., with graphs), focusing on pairs of linear equations in two variables.

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