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Solving & Graphing Linear Inequalities in 2 Variables Solution Summary R1
Solving & Graphing Linear Inequalities in 2 Variables Solution Summary R1
Solving & Graphing Linear Inequalities in 2 Variables Solution Summary R1
Solving & Graphing Linear Inequalities in 2 Variables Solution Summary R1
Solving & Graphing Linear Inequalities in 2 Variables Solution Summary R1
Solving & Graphing Linear Inequalities in 2 Variables Solution Summary R1
Solving & Graphing Linear Inequalities in 2 Variables Solution Summary R1
Solving & Graphing Linear Inequalities in 2 Variables Solution Summary R1
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Description

This MS PPT slidepack provides a very comprehensive review and analysis of solving and graphing linear inequalities in 2 variables. This presentation is classroom-tested in my Math 1 classes. It can be used in any grade level and given the animations contained in the ppt presentation, it is easy for separate setting/co-taught EC students to follow and understand. This ppt presentation is fully animated to keep the students engaged and the presenter (teacher) can modify the animations as desired.

This slidepack initially covers a review of the basic concepts of inequalities and introduces them when using 2 variables (say "x" and "y"). The graphing concepts/rules of using a dashed vs. a solid line are included as well as the proper side shading concepts/rules to designate the "Common Solution Area" or CSA of the inequality.

A total of four (4) inequality example problems are worked out in detail for the students and they should find each one easy to follow and understand. A Solution Template is provided and used to solve and graph each of the 4 problems. The template specifies the detailed solution and graphing steps to use for inequalities in both slope-intercept form and standard form to ultimately determine the correct Common Solution Area (CSA) for the inequality. Following the solution and graphing of the 4 example problems, the concept of the Origin Test Point Method of checking inequalities is covered in great detail. A separate template is provided and used to check each of the 4 inequality example problems.

Blank Solution and Origin Point Test Point Check templates with the detailed solution/analysis steps are also provided for students to use in solving/analyzing the additional four (4) work problems included at the end of the slidepack as required by their teacher.

The Teacher Answer Key for each of the 4 student work problems is also included with the product. The native MS PPT file of the slidepack is included in the event the teacher desires to edit it to suit her or his classroom. The slidepack has a total of 19 instructional slides and seven (7) additional slides of the completed student work problems which are part of the Teacher Answer Key file.

Other Math 1 Video Lessons as well as other digital math and science products for 6th Grade, 7th Grade, 8th Grade, Math 1, Math 2, Math 3, Algebra 1, Algebra 2, Geometry and PreCalculus curriculum topics can be reviewed and purchased under my TpT page titled: "Priceless Math".

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Solving & Graphing Linear Inequalities in 2 Variables Solution Summary R1

Priceless Math
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$5.25

Highlights

Digital downloads
Grades icon
Grades
7th - 10th
Standards icon
Standards
Pages
26
Answer Key
Included
Teaching Duration
40 minutes

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Description

This MS PPT slidepack provides a very comprehensive review and analysis of solving and graphing linear inequalities in 2 variables. This presentation is classroom-tested in my Math 1 classes. It can be used in any grade level and given the animations contained in the ppt presentation, it is easy for separate setting/co-taught EC students to follow and understand. This ppt presentation is fully animated to keep the students engaged and the presenter (teacher) can modify the animations as desired.

This slidepack initially covers a review of the basic concepts of inequalities and introduces them when using 2 variables (say "x" and "y"). The graphing concepts/rules of using a dashed vs. a solid line are included as well as the proper side shading concepts/rules to designate the "Common Solution Area" or CSA of the inequality.

A total of four (4) inequality example problems are worked out in detail for the students and they should find each one easy to follow and understand. A Solution Template is provided and used to solve and graph each of the 4 problems. The template specifies the detailed solution and graphing steps to use for inequalities in both slope-intercept form and standard form to ultimately determine the correct Common Solution Area (CSA) for the inequality. Following the solution and graphing of the 4 example problems, the concept of the Origin Test Point Method of checking inequalities is covered in great detail. A separate template is provided and used to check each of the 4 inequality example problems.

Blank Solution and Origin Point Test Point Check templates with the detailed solution/analysis steps are also provided for students to use in solving/analyzing the additional four (4) work problems included at the end of the slidepack as required by their teacher.

The Teacher Answer Key for each of the 4 student work problems is also included with the product. The native MS PPT file of the slidepack is included in the event the teacher desires to edit it to suit her or his classroom. The slidepack has a total of 19 instructional slides and seven (7) additional slides of the completed student work problems which are part of the Teacher Answer Key file.

Other Math 1 Video Lessons as well as other digital math and science products for 6th Grade, 7th Grade, 8th Grade, Math 1, Math 2, Math 3, Algebra 1, Algebra 2, Geometry and PreCalculus curriculum topics can be reviewed and purchased under my TpT page titled: "Priceless Math".

Report this resource to TPT
Reported resources will be reviewed by our team. Report this resource to let us know if this resource violates TPT's content guidelines.

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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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