# 3rd Grade Number Patterns and Rules Activities BUNDLE

Subject
Resource Type
File Type
Zip (3 MB|39 pages)
Standards
\$6.40
Bundle
List Price:
\$8.00
You Save:
\$1.60
\$6.40
Bundle
List Price:
\$8.00
You Save:
\$1.60
Products in this Bundle (2)
1. I have found that students often struggle with the complexities of number patterns. Determining the missing number and stating the rule of the pattern is difficult for many children. This packet will help your students master number sequence patterns. Students not only have to complete number sequ
2. My students love "I Have, Who Has" games, and I love the active listening that this game promotes! A fun, interactive way for students to practice number rules and patterns. This game is big enough to be used with your entire class, but can also be used for small group, centers, morning warm-up, etc
• Bundle Description
• Standards
I have found that students often struggle with the complexities of number patterns. Determining the missing number and stating the rule of the pattern is difficult for many children. This bundle will help your students master number sequence patterns and rules.

Included in this Bundle:
★ 10 pages of Number Pattern Worksheets
→ determine missing numbers to sequences
→ given a rule, student completes pattern
→ complete patterns and write the rules that apply
→ word problems
★ Answer Keys for all worksheets
★ Number Patterns I Have, Who Has Game- 36 game cards- (Addition and Multiplication)
★ Answer Key for Pattern Game

By buying the bundle, you are saving 20% off the cost of buying the 2 packets separately! If you are interested in buying only one of the packets, you can find them here:
3rd Grade Number Patterns and Rules
Number Patterns I Have, Who Has Game (Addition and Multiplication)

See more of my engaging and helpful bundles here:
3rd Grade Math Test Prep BUNDLE
Accountable Talk BUNDLE
Growth Mindset Bundle
Halloween Math I Have, Who Has BUNDLE

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♥ Sandra @The Happy Learning Den
Identify arithmetic patterns (including patterns in the addition table or multiplication table), and explain them using properties of operations. For example, observe that 4 times a number is always even, and explain why 4 times a number can be decomposed into two equal addends.
Total Pages
39 pages