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Graphing Lines and Linear Inequalities - Guided Notes, Presentation + INB

Rated 5 out of 5, based on 37 reviews
5.0 (37 ratings)
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Apples and Bananas Education
9.4k Followers
Grade Levels
7th - 10th, Homeschool
Subjects
Standards
Formats Included
  • Zip
Pages
24 pages
$4.80
$4.80
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Apples and Bananas Education
9.4k Followers

What educators are saying

I actually forgot about this resource that I planned to use! It was wonderful and was my fault not to use it.
I used this for summer school, students were able to use their prior knowledge and tie it into new ideas. I really enjoyed the break down
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Description

This flexible resource on Graphing Lines and Linear Inequalities allows students to either build interactive math notebooks with guided notes (keys included) and foldable activities OR use the included presentation handouts (keys included) with the PowerPoint presentation for focused instruction. Quick checks for understanding (keys included) help to determine how well your students understand the material as you go. Choose what works best for your class and modify to make the content fit your needs. Notes are designed to clearly present the topics and reach all types of learners.

The zip file includes BOTH editable, plain-font resources and ready-to-print, non-editable PDFs. Suggested use guides are included.

Interactive Math Notebook FORMAT – Includes 3 parts: guided notes, foldable activities, and quick checks for understanding. Piece the components together and students can create their own “math textbook” in a math journal.

Presentation Sheets FORMAT – Include 2 parts: guided notes and quick checks for understanding. They are organized in the same order as the included PowerPoint and are designed to print and present. The quick checks can be cut off the bottom of the note sheets and turned in as an assessment tool.

Presentation – Plain-font, no frills, PowerPoint presentation that you can use to present content to students. Slides have blank, student note templates followed by filled in teacher keys. Modify the editable presentation to best fit your needs.

Topics presented in this product include:

  • Parts of a Coordinate Plane
  • Plotting Points on a Coordinate Plane
  • Plotting Points from a Table
  • Substituting Values into Equations to Graph Lines
  • Graphing Equations in Only One Variable
  • What is Slope?
  • Graphing a Line Given a Point and a Slope
  • What is slope-intercept form?
  • Graphing a Line in Slope-Intercept Form
  • Writing Linear Equations in Slope-Intercept Form (y=mx+b)
  • Graphing a Linear Inequality (Greater Than/Less Than)
  • Graphing a Linear Inequality (Greater Than or Equal To/Less Than
  • Graphing Inequalities in Only One Variable

Additional Resources Available for Purchase:

Graphing Lines and Linear Inequalities Student Practice Pages: One full page of practice for each topic covered in the quick checks for understanding. Includes student pages and teacher keys. Perfect for homework, classwork, or a review.

Graphing Lines and Linear Inequalities Editable Assessments Two editable assessments that pair perfectly with the unit.

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Total Pages
24 pages
Answer Key
N/A
Teaching Duration
N/A
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Standards

to see state-specific standards (only available in the US).
Understand that the graph of an equation in two variables is the set of all its solutions plotted in the coordinate plane, often forming a curve (which could be a line).
Explain why the 𝘹-coordinates of the points where the graphs of the equations 𝘺 = 𝘧(𝘹) and 𝘺 = 𝑔(𝘹) intersect are the solutions of the equation 𝘧(𝘹) = 𝑔(𝘹); find the solutions approximately, e.g., using technology to graph the functions, make tables of values, or find successive approximations. Include cases where 𝘧(𝘹) and/or 𝑔(𝘹) are linear, polynomial, rational, absolute value, exponential, and logarithmic functions.
Graph the solutions to a linear inequality in two variables as a half-plane (excluding the boundary in the case of a strict inequality), and graph the solution set to a system of linear inequalities in two variables as the intersection of the corresponding half-planes.

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