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Absolute Value Functions, Solving Abs Value Graphically, and Quadratic Abs Value
Absolute Value Functions, Solving Abs Value Graphically, and Quadratic Abs Value
Absolute Value Functions, Solving Abs Value Graphically, and Quadratic Abs Value
Absolute Value Functions, Solving Abs Value Graphically, and Quadratic Abs Value
Absolute Value Functions, Solving Abs Value Graphically, and Quadratic Abs Value
Absolute Value Functions, Solving Abs Value Graphically, and Quadratic Abs Value
Absolute Value Functions, Solving Abs Value Graphically, and Quadratic Abs Value
Absolute Value Functions, Solving Abs Value Graphically, and Quadratic Abs Value
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Description

This slide deck covers: graphing absolute value functions, including tips for interpreting absolute value functions, as well as vertical and horizontal shifts, vertical stretches/compressions, and horizontal stretches/compressions. It also covers how to solve absolute value functions graphically, and graphing the absolute value of a quadratic equation.

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Absolute Value Functions, Solving Abs Value Graphically, and Quadratic Abs Value

Interactive Math and Sci
9 Followers
$3.00

Highlights

Digital downloads
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Grades
10th - 12th, Higher Education
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Standards
Pages
37
Answer Key
Included
Teaching Duration
90 minutes

Description

This slide deck covers: graphing absolute value functions, including tips for interpreting absolute value functions, as well as vertical and horizontal shifts, vertical stretches/compressions, and horizontal stretches/compressions. It also covers how to solve absolute value functions graphically, and graphing the absolute value of a quadratic equation.

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).
Solve a simple system consisting of a linear equation and a quadratic equation in two variables algebraically and graphically. For example, find the points of intersection between the line 𝘺 = –3𝘹 and the circle 𝘹² + 𝘺² = 3.
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.
Graph square root, cube root, and piecewise-defined functions, including step functions and absolute value functions.
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