Trigonometric Functions SMART Board® (PreCalculus - Unit 4) DISTANCE LEARNING

Jean Adams
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  1. This is a full year PreCalculus Curriculum Bundle of fully-editable SMART Board® lessons. The product contains 60 different lessons for students enrolled in PRECALCULUS HONORS. The lessons and presentations are aligned to most state standards and are intended to be rigorous and comprehensive in both
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  5. Algebra 2 Honors & PreCalculus Honors Custom Bundle This is an entire year of SMART Board lessons for both Algebra 2 Honors and PreCalculus Honors. You will find each lesson in a fully-editable SMART Board presentation created with SMART Notebook software. All keys are included.Each fully-edita
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Trigonometric Functions SMART Board Lessons:

This bundle of SMART Board® presentations for PreCalculus Honors students covers Unit 4: TRIGONOMETRIC FUNCTIONS. You have total freedom to alter and revise each fully-editable SMART Notebook® file. Then, you can teach and present your lesson with any compatible Interactive Whiteboard. There are 189 slides to cover the concepts in depth.

The unit covers the following topics:

1) Angles and Their Measure

2) Right Triangle Trigonometry

3) Arc Length and Circular Motion

4) The Unit Circle

5) Properties of Trigonometric Functions

6) Graphs of Sine and Cosine Functions

7) Graphs of Other Trigonometric Functions

8) Inverse Trigonometric Functions

9) More Inverse Trigonometric Functions

10) Applications and Sinusoidal Curve Fitting

11) Modeling with Trigonometry

Click HERE to SAVE 20% by buying all TRIGONOMETRIC FUNCTIONS products, including cooperative activities, in UNIT 4 MEGA BUNDLE.

You may also be interested in:

Activities & Assessments Bundle

Foldables® Only

Guided Notes Only

Trigonometric Functions Essentials

Trigonometric Functions Daily Quizzes

Here are two FREE ITEMS that complement this unit:

Trigonometric Functions Maze Activity

Unit Circle Freebie



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Total Pages
189 slides
Answer Key
Teaching Duration
Lifelong tool
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to see state-specific standards (only available in the US).
Use inverse functions to solve trigonometric equations that arise in modeling contexts; evaluate the solutions using technology, and interpret them in terms of the context.
Understand that restricting a trigonometric function to a domain on which it is always increasing or always decreasing allows its inverse to be constructed.
Choose trigonometric functions to model periodic phenomena with specified amplitude, frequency, and midline.
Use the unit circle to explain symmetry (odd and even) and periodicity of trigonometric functions.
Use special triangles to determine geometrically the values of sine, cosine, tangent for π/3, π/4 and π/6, and use the unit circle to express the values of sine, cosine, and tangent for π–𝘹, π+𝘹, and 2π–𝘹 in terms of their values for 𝘹, where 𝘹 is any real number.


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