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Factoring Variable Expressions with Area Models โ€“ Boom Cards Digital Task Cards
Factoring Variable Expressions with Area Models โ€“ Boom Cards Digital Task Cards
Factoring Variable Expressions with Area Models โ€“ Boom Cards Digital Task Cards
Factoring Variable Expressions with Area Models โ€“ Boom Cards Digital Task Cards
Factoring Variable Expressions with Area Models โ€“ Boom Cards Digital Task Cards
Factoring Variable Expressions with Area Models โ€“ Boom Cards Digital Task Cards
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Description

Make factoring interactive with this Boom Cards deck! Students use area models to factor variable expressions step by step, starting with simpler binomials and progressing to more challenging trinomials. Each card is self-checking, giving students immediate feedback, while teachers can track performance with a free Boom Learning account.

This resource is perfect for independent practice, math centers, intervention, or distance learning.

Whatโ€™s Included:

  • 1 Boom Cards deck with 10 self-checking task cards
  • Area model factoring problems that increase in difficulty
  • Practice with binomials and trinomials
  • Instant student feedback
  • Teacher data tracking with a free Boom Learning account

Enjoying Boom Cards?

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Volume of Compound Figures

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Box Plots

Interpreting Graphs

Factoring Variable Expressions with Area Models

Distributive Property with Area Models

Evaluating Expressions

Ordering Rational Numbers

Coordinate Points

Finding Factor Pairs

Multiplying and Dividing Decimal Word Problems

Dividing Mixed Numbers

Dividing Fractions

Percents of a Number

Illustrated Percentages

Ratio Tables

Understanding Ratios

Finding Unit Rate

Finding Area of a Shaded Region

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.

Factoring Variable Expressions with Area Models โ€“ Boom Cards Digital Task Cards

Math and Glitter
2.7k Followers
$1.50

Highlights

Digital downloads
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Grades
6th - 9th
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Standards
Pages
Boom Cards + Instructions
Answer Key
Included

Description

Make factoring interactive with this Boom Cards deck! Students use area models to factor variable expressions step by step, starting with simpler binomials and progressing to more challenging trinomials. Each card is self-checking, giving students immediate feedback, while teachers can track performance with a free Boom Learning account.

This resource is perfect for independent practice, math centers, intervention, or distance learning.

Whatโ€™s Included:

  • 1 Boom Cards deck with 10 self-checking task cards
  • Area model factoring problems that increase in difficulty
  • Practice with binomials and trinomials
  • Instant student feedback
  • Teacher data tracking with a free Boom Learning account

Enjoying Boom Cards?

Check out these other engaging decks!

Multiplication Arrays

Arithmetic Sequences

Pythagorean Theorem

Slope Formula

Distance Formula

Midpoint Formula

Comparing Functions

Perimeter and Area with Fractions

Volume of Compound Figures

Adding Fractions with Unlike Denominators

Box Plots

Interpreting Graphs

Factoring Variable Expressions with Area Models

Distributive Property with Area Models

Evaluating Expressions

Ordering Rational Numbers

Coordinate Points

Finding Factor Pairs

Multiplying and Dividing Decimal Word Problems

Dividing Mixed Numbers

Dividing Fractions

Percents of a Number

Illustrated Percentages

Ratio Tables

Understanding Ratios

Finding Unit Rate

Finding Area of a Shaded Region

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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Questions & Answers

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Standards

to see state-specific standards (only available in the US).
Apply the properties of operations to generate equivalent expressions. For example, apply the distributive property to the expression 3 (2 + ๐˜น) to produce the equivalent expression 6 + 3๐˜น; apply the distributive property to the expression 24๐˜น + 18๐˜บ to produce the equivalent expression 6 (4๐˜น + 3๐˜บ); apply properties of operations to ๐˜บ + ๐˜บ + ๐˜บ to produce the equivalent expression 3๐˜บ.
Identify when two expressions are equivalent (i.e., when the two expressions name the same number regardless of which value is substituted into them). For example, the expressions ๐˜บ + ๐˜บ + ๐˜บ and 3๐˜บ are equivalent because they name the same number regardless of which number ๐˜บ stands for.
Apply properties of operations as strategies to add, subtract, factor, and expand linear expressions with rational coefficients.
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