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Maze - Operations on Complex Numbers - Addition & Subtraction

Rated 5 out of 5, based on 13 reviews
5.0 (13 ratings)
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Never Give Up on Math
3k Followers
Grade Levels
9th - 12th, Higher Education, Adult Education, Homeschool
Resource Type
Standards
Formats Included
  • PDF
Pages
9 pages
$1.50
$1.50
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Never Give Up on Math
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  1. This bundle includes a total of 9 Mazes in which the student would have to complete a total of 111 questions (in all mazes combined) to get to the end.. Each of the mazes is sold separately at my store. Please visit the links below for more details about each individual product. The Mazes are:
    Price $11.60Original Price $14.50Save $2.90

Description

This maze is part of : Maze - BUNDLE COMPLEX NUMBERS

This product is a good review of checking for understanding how to Add & Subtract Complex Numbers. . The question in this maze are similar to the preview attached as students are asked to add and subtract 2 complex numbers or more.

There are 15 questions in this maze. From start to end, the student will be able to answer 12 questions out of the 15 provided to get to the end of the maze.

This maze could be used as: a way to check for understanding, a review, recap of the lesson, pair-share, cooperative learning, exit ticket, entrance ticket, homework, individual practice, when you have time left at the end of a period, beginning of the period (as a warm up or bell work), before a quiz on the topic, and more.

This maze focuses only and only on "Adding and Subtracting Complex Numbers". More mazes related to the set of complex numbers are on the way. Stay tuned.

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© Never Give Up On Math 2015 (UPDATED 2019)

This product is intended for personal use in one classroom only. For use in multiple classrooms, please purchase additional licenses.

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Total Pages
9 pages
Answer Key
Included
Teaching Duration
N/A
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Standards

to see state-specific standards (only available in the US).
Use the relation 𝘪² = –1 and the commutative, associative, and distributive properties to add, subtract, and multiply complex numbers.
Represent addition, subtraction, multiplication, and conjugation of complex numbers geometrically on the complex plane; use properties of this representation for computation. For example, (-1 + √3𝘪)³ = 8 because (-1 + √3𝘪) has modulus 2 and argument 120°.

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