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Vectors in the Plane with Lesson Video (Unit 6)

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Flamingo Math by Jean Adams
6.7k Followers
Grade Levels
9th - 12th, Higher Education, Homeschool
Standards
Formats Included
  • Zip
Pages
14 + 23 slides and lesson video
$5.50
$5.50
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Flamingo Math by Jean Adams
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Description

Vectors in the Plane and Vector Applications Lesson:

Your PreCalculus Honors students will use vector operations and properties to solve real-world problems, work, and find components of vectors. #distancelearningtpt

***(2/17/2022) Example 10 changed angle to -23 degrees for clockwise rotation.

What is included in this resource?

⭐ Guided Student Notes

Fully-editable SMART Board® Slides

⭐ Google 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:

★ Apply the arithmetic of vectors

★ Find component form, magnitude, and solve real-world problems

★ Use vectors to solve real-world problems

★ Find projection of vectors, angles between vectors
★ Find work done by a force on an object

Click HERE to SAVE 20% by buying all POLAR COORDINATES & VECTORS products, including cooperative activities, in UNIT 6 MEGA BUNDLE.

The unit includes the following topics:

1) Polar Coordinates

2) Polar Graphs and Equations

3) More About Polar Graphs

4) The Complex Plane; DeMoivre's Theorem

5) Vectors in the Plane

6) The Dot Product of Vectors

You may also be interested in:

ACTIVITIES & ASSESSMENTS BUNDLE

Foldables Only

Guided Notes

SMART Board Lessons Only

Polar Coordinates & Vectors Essentials

Polar Coordinates & Vectors Daily Quizzes

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Flamingo Math with Jean Adams

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Total Pages
14 + 23 slides and lesson video
Answer Key
Included
Teaching Duration
45 minutes
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Standards

to see state-specific standards (only available in the US).
Recognize vector quantities as having both magnitude and direction. Represent vector quantities by directed line segments, and use appropriate symbols for vectors and their magnitudes (e.g., 𝙫, |𝙫|, ||𝙫||, 𝘷).
Find the components of a vector by subtracting the coordinates of an initial point from the coordinates of a terminal point.
Add and subtract vectors.
Add vectors end-to-end, component-wise, and by the parallelogram rule. Understand that the magnitude of a sum of two vectors is typically not the sum of the magnitudes.
Given two vectors in magnitude and direction form, determine the magnitude and direction of their sum.

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