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Area Model Multiplication | 1-Digit by 2-Digit | Boom Cards™
Area Model Multiplication | 1-Digit by 2-Digit | Boom Cards™
Area Model Multiplication | 1-Digit by 2-Digit | Boom Cards™
Area Model Multiplication | 1-Digit by 2-Digit | Boom Cards™
Area Model Multiplication | 1-Digit by 2-Digit | Boom Cards™
Area Model Multiplication | 1-Digit by 2-Digit | Boom Cards™
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Area Model Multiplication | 1-Digit by 2-Digit | Boom Cards™
Area Model Multiplication | 1-Digit by 2-Digit | Boom Cards™
Area Model Multiplication | 1-Digit by 2-Digit | Boom Cards™
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Description

Help your students visualize multiplication and strengthen place value understanding with this interactive Boom Cards™ deck!


Students use the area model strategy to multiply a 1-digit number by a 2-digit number. On each card, they’ll:


1️⃣ Break apart the 2-digit number into tens and ones
2️⃣ Fill in each partial product
3️⃣ Add the partial products to find the final product

This deck gives students scaffolded practice with conceptual multiplication, building a foundation for standard algorithm success.

🎯 Skills Covered:

  • Understanding area model multiplication
  • Multiplying 1-digit by 2-digit numbers
  • Finding partial products
  • Combining partial products to find the total

👩‍🏫 Perfect For:

  • Independent practice
  • Guided math groups
  • Math centers
  • Homework or review
  • Digital learning and distance classrooms
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.

Area Model Multiplication | 1-Digit by 2-Digit | Boom Cards™

Rated 5 out of 5, based on 1 reviews
5.0 (1 rating)
Math and Glitter
2.7k Followers
$1.50

Highlights

Digital downloads
Grades icon
Grades
3rd - 5th
Standards icon
Standards
Pages
15 Slide Deck
Answer Key
Included

Description

Help your students visualize multiplication and strengthen place value understanding with this interactive Boom Cards™ deck!


Students use the area model strategy to multiply a 1-digit number by a 2-digit number. On each card, they’ll:


1️⃣ Break apart the 2-digit number into tens and ones
2️⃣ Fill in each partial product
3️⃣ Add the partial products to find the final product

This deck gives students scaffolded practice with conceptual multiplication, building a foundation for standard algorithm success.

🎯 Skills Covered:

  • Understanding area model multiplication
  • Multiplying 1-digit by 2-digit numbers
  • Finding partial products
  • Combining partial products to find the total

👩‍🏫 Perfect For:

  • Independent practice
  • Guided math groups
  • Math centers
  • Homework or review
  • Digital learning and distance classrooms
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.

Reviews

5.0
Rated 5 out of 5, based on 1 reviews
1
rating
All verified TPT purchases
Fun and Engaging!
Rated 5 out of 5
December 2, 2025
Met expectations
Great value
Standards-aligned
I’m a 4th-grade teacher, and this resource was a huge hit with my students. They were fully engaged, talking about it long after we wrapped up the lesson. It was easy for me to use, meaningful for them, and fit right into what we were working on. I really appreciate it when a product brings that kind of energy into the room. This one did.
Jessica F.
256 reviews • Kansas
Grades taught: 4th
Math and Glitter
Response from
Math and Glitter
(TPT Seller)
Dec 2, 2025
That is the nicest review !! Thank you !!! I'm so glad your kids enjoyed it

Questions & Answers

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Standards

to see state-specific standards (only available in the US).
Multiply one-digit whole numbers by multiples of 10 in the range 10–90 (e.g., 9 × 80, 5 × 60) using strategies based on place value and properties of operations.
Multiply a whole number of up to four digits by a one-digit whole number, and multiply two two-digit numbers, using strategies based on place value and the properties of operations. Illustrate and explain the calculation by using equations, rectangular arrays, and/or area models.
Fluently multiply multi-digit whole numbers using the standard algorithm.
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