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The Algebra of Matrices with Lesson Video (Unit 7)

Jean Adams
5.3k Followers
Grade Levels
10th - 12th, Higher Education
Standards
Formats Included
  • Zip
Pages
8 + 14 slides
$5.50
$5.50
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Jean Adams
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Description

Matrices and Systems of Equations Lesson:

Your Pre-AP PreCalculus students will use matrices and row operations to solve systems of linear equations. #distancelearningtpt

What is included in this resource?

⭐ Guided Student Notes

Fully-editable SMART Board® Slides

⭐ Homework/Practice assignment

⭐ Daily Content Quiz (warm-up, exit ticket, or homework check)

⭐ Video Lesson Link for Distance Learning - Flipped Classroom models

⭐ Full solution set

Students will be able to:

★ Determine whether two matrices are equal.

★ Add and subtract matrices and multiply matrices by scalars.

★ Multiple two matrices.

★ Use matrix operations to model and solve real-world problems.

Click HERE to SAVE 20% by buying all SYSTEMS OF EQUATIONS & MATRICES products, including cooperative activities, in UNIT 7 MEGA BUNDLE.

The unit includes the following topics:

1) Solving Systems of Equations

2) Multivariable Linear Systems

3) Matrices and Systems of Equations

4) The Algebra of Matrices

5) Inverses of Matrices and Matrix Equations

6) The Determinant of a Square Matrix

7) Partial Fractions

8) Systems of Nonlinear Equations

9) Linear Programming

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Total Pages
8 + 14 slides
Answer Key
Included
Teaching Duration
Lifelong tool
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Standards

to see state-specific standards (only available in the US).
Understand that the zero and identity matrices play a role in matrix addition and multiplication similar to the role of 0 and 1 in the real numbers. The determinant of a square matrix is nonzero if and only if the matrix has a multiplicative inverse.
Understand that, unlike multiplication of numbers, matrix multiplication for square matrices is not a commutative operation, but still satisfies the associative and distributive properties.
Add, subtract, and multiply matrices of appropriate dimensions.
Multiply matrices by scalars to produce new matrices, e.g., as when all of the payoffs in a game are doubled.
Use matrices to represent and manipulate data, e.g., to represent payoffs or incidence relationships in a network.

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