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12.7 Graphing Trigonometric Functions Day 1: Sine and Cosine

12.7 Graphing Trigonometric Functions Day 1: Sine and Cosine

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The amplitude of the graph of sine and cosine functions equals half The difference between the maximum and the minimum values.

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Page 1: 12.7 Graphing Trigonometric Functions Day 1: Sine and Cosine

12.7Graphing Trigonometric Functions

Day 1: Sine and Cosine

Page 2: 12.7 Graphing Trigonometric Functions Day 1: Sine and Cosine

Graph the following in your calculator.

Find the period and minimum and maximum values for each function.

1. f(θ) = sin θ2. f(θ) = cos θ

Page 3: 12.7 Graphing Trigonometric Functions Day 1: Sine and Cosine

The amplitude of the graph of sine and cosine functions equals half The difference between the maximum and the minimum values.

Page 4: 12.7 Graphing Trigonometric Functions Day 1: Sine and Cosine

Finding Amplitude and Period Example 1a

Find the amplitude and period of

Page 5: 12.7 Graphing Trigonometric Functions Day 1: Sine and Cosine

Example 1b

Find the amplitude and period of

Page 6: 12.7 Graphing Trigonometric Functions Day 1: Sine and Cosine

Example 2

Find the amplitude and period. Then find a possible equation in the form of or for the function.

Page 7: 12.7 Graphing Trigonometric Functions Day 1: Sine and Cosine

Example 3

Find the amplitude and period. Then find a possible equation in the form of or for the function.

Page 8: 12.7 Graphing Trigonometric Functions Day 1: Sine and Cosine

Applications

Page 9: 12.7 Graphing Trigonometric Functions Day 1: Sine and Cosine

Example 4

Humans can hear sounds with a frequency of 40 Hz. Find the period of the function that models the sound waves.

Let the amplitude equal 1 unit. Write a sine equation to represent the sound wave y as a function of time t.

Page 10: 12.7 Graphing Trigonometric Functions Day 1: Sine and Cosine

Example 5

The bass tuba can produce sounds with as low a frequency as 50 Hz. Find the period of the function that models the sound waves.

Let the amplitude equal 2 unit. Determine the correct cosine equation to represent the sound wave y as a function of time t.