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Ultimate Google Classroom™ Math Bundle ⭐ Interactive Digital Math ⭐ Grades 1-6

Ultimate Google Classroom™ Math Bundle ⭐ Interactive Digital Math ⭐ Grades 1-6
Ultimate Google Classroom™ Math Bundle ⭐ Interactive Digital Math ⭐ Grades 1-6
Ultimate Google Classroom™ Math Bundle ⭐ Interactive Digital Math ⭐ Grades 1-6
Ultimate Google Classroom™ Math Bundle ⭐ Interactive Digital Math ⭐ Grades 1-6
Ultimate Google Classroom™ Math Bundle ⭐ Interactive Digital Math ⭐ Grades 1-6
Ultimate Google Classroom™ Math Bundle ⭐ Interactive Digital Math ⭐ Grades 1-6
Ultimate Google Classroom™ Math Bundle ⭐ Interactive Digital Math ⭐ Grades 1-6
Ultimate Google Classroom™ Math Bundle ⭐ Interactive Digital Math ⭐ Grades 1-6
Format
Zip (46 MB|2,000+ pages)
Standards
$199.99
Digital Download
List Price:
$1,000.00
Bundle Price:
$249.99
You Save:
$800.01
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$199.99
Digital Download
List Price:
$1,000.00
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$249.99
You Save:
$800.01
  • Product Description
  • Standards

Worksheets, Quizzes, Tests, Auto-Graded Exit Slips, and Auto-Graded Task Cards 1st-6th Grade, Paperless:

This Math Google Classroom Ultimate Bundle contains all the digital exit slips, worksheets, quizzes, tests, and task cards you'll need to incorporate digital instruction and assessment in the classroom and completely cover all first- through sixth-grade Common Core math standards. Designed to make the classroom efficient and interactive, these resources are presented as Google Slides and Google Forms, eliminating paper and planning.

These digital worksheets, quizzes, tests, and exit slips are perfect for laptops, iPads, Chromebooks, and tablets of all brands and operating systems!

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What's Inside:

✔ 6 Task Cards in one self-grading assessment per standard (Google Forms format)

✔ 3 Exit Slips in one self-grading assessment per standard (Google Forms format)

✔ A two-page Worksheet for each standard (Google Slides format)

✔ A Quiz per standard (Google Slides format)

✔ A two-page Test for each domain (Google Slides format)

✔ Answer keys for all products

✔ Common Core Standard labeled for each question

✔ A step-by-step illustrated guide to Google Classroom

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Here is a breakdown of the products in this Ultimate bundle:

1st Grade Google Classroom Math Bundle

-1st Grade Math Task Cards for Google Classroom

-1st Grade Math Exit Slips for Google Classroom

-1st Grade Math Worksheets for Google Classroom

-1st Grade Math Quizzes for Google Classroom

-1st Grade Math Tests for Google Classroom

2nd Grade Google Classroom Math Bundle

-2nd Grade Math Task Cards for Google Classroom

-2nd Grade Math Exit Slips for Google Classroom

-2nd Grade Math Worksheets for Google Classroom

-2nd Grade Math Quizzes for Google Classroom

-2nd Grade Math Tests for Google Classroom

3rd Grade Google Classroom Math Bundle

-3rd Grade Math Task Cards for Google Classroom

-3rd Grade Math Exit Slips for Google Classroom

-3rd Grade Math Worksheets for Google Classroom

-3rd Grade Math Quizzes for Google Classroom

-3rd Grade Math Tests for Google Classroom

4th Grade Google Classroom Math Bundle

-4th Grade Math Task Cards for Google Classroom

-4th Grade Math Exit Slips for Google Classroom

-4th Grade Math Worksheets for Google Classroom

-4th Grade Math Quizzes for Google Classroom

-4th Grade Math Tests for Google Classroom

5th Grade Google Classroom Math Bundle

-5th Grade Math Task Cards for Google Classroom

-5th Grade Math Exit Slips for Google Classroom

-5th Grade Math Worksheets for Google Classroom

-5th Grade Math Quizzes for Google Classroom

-5th Grade Math Tests for Google Classroom

6th Grade Google Classroom Math Bundle

-6th Grade Math Task Cards for Google Classroom

-6th Grade Math Exit Slips for Google Classroom

-6th Grade Math Worksheets for Google Classroom

-6th Grade Math Quizzes for Google Classroom

-6th Grade Math Tests for Google Classroom

All resources completely cover the Common Core standards for each grade in all Common Core domains: Number and Operations in Base Ten, Operations and Algebraic Thinking, Fractions, Measurement and Data, Geometry, Ratios and Proportional Relationships, Expressions and Equations, Statistics and Probability, and The Number System.

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Looking for this content in printable format instead? Or, save big when you buy the printable and digital formats together!

⭐⭐ Math ULTIMATE Bundle for Grades K-6, PDF Format ⭐⭐

Kindergarten Math ULTIMATE Bundle, PDF Format

1st Grade Math ULTIMATE Bundle, PDF Format

2nd Grade Math ULTIMATE Bundle, PDF Format

3rd Grade Math ULTIMATE Bundle, PDF Format

4th Grade Math ULTIMATE Bundle, PDF Format

5th Grade Math ULTIMATE Bundle, PDF Format

6th Grade Math ULTIMATE Bundle, PDF Format

In Printable + Google Classroom Formats:

⭐⭐ Math ULTIMATE Bundle for Grades 1-6, PDF + Google Classroom Formats ⭐⭐

1st Grade Math ULTIMATE Bundle, PDF + Google Classroom Formats

2nd Grade Math ULTIMATE Bundle, PDF + Google Classroom Formats

3rd Grade Math ULTIMATE Bundle, PDF + Google Classroom Formats

4th Grade Math ULTIMATE Bundle, PDF + Google Classroom Formats

5th Grade Math ULTIMATE Bundle, PDF + Google Classroom Formats

6th Grade Math ULTIMATE Bundle, PDF + Google Classroom Formats

to see state-specific standards (only available in the US).
Look for and express regularity in repeated reasoning. Mathematically proficient students notice if calculations are repeated, and look both for general methods and for shortcuts. Upper elementary students might notice when dividing 25 by 11 that they are repeating the same calculations over and over again, and conclude they have a repeating decimal. By paying attention to the calculation of slope as they repeatedly check whether points are on the line through (1, 2) with slope 3, middle school students might abstract the equation (𝑦 – 2)/(𝑥 – 1) = 3. Noticing the regularity in the way terms cancel when expanding (𝑥 – 1)(𝑥 + 1), (𝑥 – 1)(𝑥² + 𝑥 + 1), and (𝑥 – 1)(𝑥³ + 𝑥² + 𝑥 + 1) might lead them to the general formula for the sum of a geometric series. As they work to solve a problem, mathematically proficient students maintain oversight of the process, while attending to the details. They continually evaluate the reasonableness of their intermediate results.
Look for and make use of structure. Mathematically proficient students look closely to discern a pattern or structure. Young students, for example, might notice that three and seven more is the same amount as seven and three more, or they may sort a collection of shapes according to how many sides the shapes have. Later, students will see 7 × 8 equals the well remembered 7 × 5 + 7 × 3, in preparation for learning about the distributive property. In the expression 𝑥² + 9𝑥 + 14, older students can see the 14 as 2 × 7 and the 9 as 2 + 7. They recognize the significance of an existing line in a geometric figure and can use the strategy of drawing an auxiliary line for solving problems. They also can step back for an overview and shift perspective. They can see complicated things, such as some algebraic expressions, as single objects or as being composed of several objects. For example, they can see 5 – 3(𝑥 – 𝑦)² as 5 minus a positive number times a square and use that to realize that its value cannot be more than 5 for any real numbers 𝑥 and 𝑦.
Attend to precision. Mathematically proficient students try to communicate precisely to others. They try to use clear definitions in discussion with others and in their own reasoning. They state the meaning of the symbols they choose, including using the equal sign consistently and appropriately. They are careful about specifying units of measure, and labeling axes to clarify the correspondence with quantities in a problem. They calculate accurately and efficiently, express numerical answers with a degree of precision appropriate for the problem context. In the elementary grades, students give carefully formulated explanations to each other. By the time they reach high school they have learned to examine claims and make explicit use of definitions.
Use appropriate tools strategically. Mathematically proficient students consider the available tools when solving a mathematical problem. These tools might include pencil and paper, concrete models, a ruler, a protractor, a calculator, a spreadsheet, a computer algebra system, a statistical package, or dynamic geometry software. Proficient students are sufficiently familiar with tools appropriate for their grade or course to make sound decisions about when each of these tools might be helpful, recognizing both the insight to be gained and their limitations. For example, mathematically proficient high school students analyze graphs of functions and solutions generated using a graphing calculator. They detect possible errors by strategically using estimation and other mathematical knowledge. When making mathematical models, they know that technology can enable them to visualize the results of varying assumptions, explore consequences, and compare predictions with data. Mathematically proficient students at various grade levels are able to identify relevant external mathematical resources, such as digital content located on a website, and use them to pose or solve problems. They are able to use technological tools to explore and deepen their understanding of concepts.
Model with mathematics. Mathematically proficient students can apply the mathematics they know to solve problems arising in everyday life, society, and the workplace. In early grades, this might be as simple as writing an addition equation to describe a situation. In middle grades, a student might apply proportional reasoning to plan a school event or analyze a problem in the community. By high school, a student might use geometry to solve a design problem or use a function to describe how one quantity of interest depends on another. Mathematically proficient students who can apply what they know are comfortable making assumptions and approximations to simplify a complicated situation, realizing that these may need revision later. They are able to identify important quantities in a practical situation and map their relationships using such tools as diagrams, two-way tables, graphs, flowcharts and formulas. They can analyze those relationships mathematically to draw conclusions. They routinely interpret their mathematical results in the context of the situation and reflect on whether the results make sense, possibly improving the model if it has not served its purpose.
Total Pages
2,000+ pages
Answer Key
Included
Teaching Duration
Lifelong tool
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