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Writing & Graphing Linear Equations Digital Activities Bundle for Algebra 1

Rated 5 out of 5, based on 2 reviews
5.0 (2 ratings)
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Math with Ms Rivera
2k Followers
Grade Levels
8th - 10th
Subjects
Standards
Formats Included
  • Google Drive™ folder
  • Internet Activities
Pages
25 Digital Activities + Answer Keys
$49.89
List Price:
$71.25
You Save:
$21.36
Bundle
$49.89
List Price:
$71.25
You Save:
$21.36
Bundle
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Math with Ms Rivera
2k Followers
Includes Google Apps™
This bundle contains one or more resources with Google apps (e.g. docs, slides, etc.).

Products in this Bundle (25)

    showing 1-5 of 25 products

    Also included in
    1. Are you looking for digital activities that you can use with your Algebra 1 classes throughout the school year? Check out this bundle of 110+ digital activities for Algebra 1. The bundle includes digital pixel art, digital self-checking activities, digital task cards, digital drag & drop slides,
      Price $248.89Original Price $355.55Save $106.66

    Description

    Writing & Graphing Linear Equations Digital Activities Bundle includes digital activities that are meant for students in Algebra 1. All the activities are listed below. They are ready to be downloaded and used with your students.

    Right now the following activities are included:

    • Mystery Pixel Art: Calculating Slope from 2 points
    • Mystery Pixel Art: Calculating Slope from 2 points (includes undefined slope)
    • Mystery Pixel Art: Identifying Slope from Equations
    • Slope Matching Activity
    • Identifying Slope from Graphs Drag & Drop
    • Identifying Slope from Tables Digital Task Cards
    • Type of Slope Self-Checking Activity --- FREEBIE
    • Writing in Slope-Intercept Form: Given a Point & Slope Digital Task Cards
    • Writing in Slope-Intercept Form: Given a Graph Digital Task Cards
    • Writing in Slope-Intercept Form: Given Two Points Digital Task Cards
    • Mystery Pixel Art: Writing in Slope Intercept Form from other Linear Functions
    • Mystery Pixel Art: Converting from Standard Form to Slope-Intercept Form
    • Calculating Slope from Two Points Digital Self-Checking
    • Mystery Pixel Art: Slope Challenge
    • Mystery Pixel Art: Writing Slope-Intercept Form from 2 Points
    • Mystery Pixel Art: Writing Slope-Intercept Form, 4 Ways
    • Mystery Pixel Art: Writing Point-Slope Form from a Point and Slope
    • Mystery Pixel Art: Writing Standard Form from a Point and Slope
    • Mystery Pixel Art: Slope from 2 Points Winter Theme
    • Writing Slope-Intercept Form from Graphs Digital Self-Checking activity
    • Writing Standard Form from Graphs Digital Self-Checking activity
    • Writing Equations of Horizontal & Vertical Lines from Graphs Digital Self-Checking
    • Writing Point-Slope Form from a Point & Slope - Winter Mystery Pixel Art
    • Identifying Slope & Y-Intercepts from Equations Mystery Pixel Art
    • Writing Point-Slope Form from Different Methods Mystery Pixel Art
    • Graphing Linear Equations in Slope Intercept Form Digital Drag & Drop

    If you want these products individually, check them out below!

    You will be saving 30% with buying the bundle compared to if you bought all the resources individually!

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    Total Pages
    25 Digital Activities + Answer Keys
    Answer Key
    Included
    Teaching Duration
    N/A
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    Standards

    to see state-specific standards (only available in the US).
    Understand that a function is a rule that assigns to each input exactly one output. The graph of a function is the set of ordered pairs consisting of an input and the corresponding output.
    Understand that a function from one set (called the domain) to another set (called the range) assigns to each element of the domain exactly one element of the range. If 𝘧 is a function and 𝘹 is an element of its domain, then 𝘧(𝘹) denotes the output of 𝘧 corresponding to the input 𝘹. The graph of 𝘧 is the graph of the equation 𝘺 = 𝘧(𝘹).
    Use function notation, evaluate functions for inputs in their domains, and interpret statements that use function notation in terms of a context.
    For a function that models a relationship between two quantities, interpret key features of graphs and tables in terms of the quantities, and sketch graphs showing key features given a verbal description of the relationship.
    Write a function that describes a relationship between two quantities.

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