# Systems of Equations Google Forms Practice Quiz Bundle Distance Learning

8th - 11th, Homeschool
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Standards
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\$9.40
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\$9.40
Bundle
List Price:
\$11.75
You Save:
\$2.35
This bundle contains one or more resources with Google apps (e.g. docs, slides, etc.).
Compatible with Easel Activities
This resource contains one or more resources that are compatible with Easel by TpT, a suite of digital tools you can use to make any lesson interactive and device-ready. Customize these activities and assign them to students, all from Easel. Easel is free to use! Learn more.

#### Also included in

1. DIGITAL, NO PREP, SELF-GRADING bundle including quadratics, polynomials, linear functions, solving equations, and solving systems. Look at the products to see exactly what is included in this bundle.Here are 32 google forms with 10 problems each for your students. This resource can be used as Googl
\$70.40
\$88.00
Save \$17.60

### Description

DIGITAL, NO PREP, SELF-GRADING systems of equations using the graphing method, substitution method, elimination method, and word problems.

Here are 4 google forms with 10 problems each for your students. This resource can be used as Google Forms OR worksheet activities. Detailed instructions and answer keys are included.

Each product in this bundle includes:

Powerpoint Version: Print the slides (4 to a page) or use in google classroom

• Teacher Instructions

Here are some other Algebra I activities you may like!

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Linear Equations and Inequalities Curriculum Bundle Unit 3

Solving Systems Curriculum Bundle Unit 4

Error Analysis of Multi-Step Equations using Task Cards

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Identifying Parallel and Perpendicular Lines: \$100,000 Pyramid Activity

Error Analysis of Adding and Subtracting Polynomials

Error Analysis of Graphing Linear Inequalities

Error Analysis of Solving for y and Graphing Linear Equations

Error Analysis of Solving Equations in Slope-Intercept Form using y = mx + b to find b

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Thank you,

Suzy Mahoney

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### Standards

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.
Prove that, given a system of two equations in two variables, replacing one equation by the sum of that equation and a multiple of the other produces a system with the same solutions.