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4.5 Graphs of Sine and Cosine FUNctions

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4.5 Graphs of Sine and Cosine FUNctions. How can I sketch the graphs of sine and cosine FUNctions?. Basic Sine and Cosine Curves. y = sin xy = cos x. Let’s look at the five key points on one period of a sine graph. Maximum: ( π /2,1). Intercept: ( π ,0). Intercept: (0,0). - PowerPoint PPT Presentation
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4.5 Graphs of Sine and Cosine FUNctions How can I sketch the graphs of sine and cosine FUNctions?
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Page 1: 4.5 Graphs of Sine and Cosine FUNctions

4.5 Graphs of Sine and Cosine FUNctions

How can I sketch the graphs of sine and cosine FUNctions?

Page 2: 4.5 Graphs of Sine and Cosine FUNctions

Basic Sine and Cosine Curves

y = sin x y = cos x5

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-4 -2 2 4 6 8 10 12 14

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g x = cos x

Page 3: 4.5 Graphs of Sine and Cosine FUNctions

5

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-4 -2 2 4 6 8 10 12 14

Let’s look at the five key points on one period of a sine graph

Minimum:(3π/2,-1)

Maximum: (π/2,1) Intercept:

(π,0)

Intercept: (0,0)

Intercept: (2π,0)

Page 4: 4.5 Graphs of Sine and Cosine FUNctions

5

4

3

2

1

-1

-2

-3

-4

-6 -4 -2 2 4 6 8 10 12

g x = cos x

Let’s look at the five key points on one period of a cosine graph

Minimum:(π,-1)

Maximum: (2π,1)

Intercept: (3π/2,0)

Intercept: (π/2,0)

Maximum: (0,1)

Page 5: 4.5 Graphs of Sine and Cosine FUNctions

For the rest of this section, we will apply the concepts we learned way back in section 1.5 to the trigonometric FUNctions.

Page 6: 4.5 Graphs of Sine and Cosine FUNctions

Amplitude and Period of Sine FUNctions

amplitude (new word, old concept) – the maximum displacement from equilibrium.

For y = asinx and y = acosx, the amplitude is a.

Page 7: 4.5 Graphs of Sine and Cosine FUNctions

2.5

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f x = sin x

Let’s graph y = 2sinx.

• First, we will graph y = sinx.

Page 8: 4.5 Graphs of Sine and Cosine FUNctions

2.5

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f x = 2sin x 2.5

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-2.5

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-1 1 2 3 4 5 6 7 8

f x = sin x

• Next, we will label the five new key points, and graph the new FUNction.

Minimum:(3π/2,-2)

Maximum: (π/2,2)

Intercept: (π,0)

Intercept: (0,0) Intercept:

(2π,0)

Page 9: 4.5 Graphs of Sine and Cosine FUNctions

Please graph: y = 2cosx2.5

2

1.5

1

0.5

-0.5

-1

-1.5

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-2.5

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-1 1 2 3 4 5 6 7 8

g x = 2cos x f x = cos x

Page 10: 4.5 Graphs of Sine and Cosine FUNctions

Please graph: y = .4sinx

Page 11: 4.5 Graphs of Sine and Cosine FUNctions

Notes:

• The period of a FUNction is 2π/b.• y = asinbx and y = acosbx complete one

period from 0/b to 2π/b.

Page 12: 4.5 Graphs of Sine and Cosine FUNctions

Let’s graph y = cos(2x).

• First, we will graph y = cosx.2.5

2

1.5

1

0.5

-0.5

-1

-1.5

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-2.5

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-1 1 2 3 4 5 6 7 8

f x = cos x

Page 13: 4.5 Graphs of Sine and Cosine FUNctions

2.5

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1.5

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q x = cos 2x 2.5

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f x = cos x

• Next, we will label the five new key points, and graph the new FUNction.

Minimum:(π/2,-1)

Maximum: (0,1) Maximum:

(π,1)

Intercept: (π/4,0)

Intercept: (3π/4,0)

Page 14: 4.5 Graphs of Sine and Cosine FUNctions

Translations of Sine and Cosine Curves

• Sine and cosine graphs of the form

have a directed horizontal shift of c/b

• In other words, to find the right and left x-coordinates of your key points for one cycle, please solvebx – c = 0 bx – c = 2π

Page 15: 4.5 Graphs of Sine and Cosine FUNctions

Let’s graph y = 2sin(2x + π/2)

• Our y-values are easy. We just take the original y-coordinates and multiply by 2. We’ll work on the y’s.

• Okay…. Let’s find our new endpoints:2x + π/2 = 0 2x + π/2 = 2πx = -π/4 x = 3π/4

• Now, we will divide the interval into four equal parts (HINT: Find the average of the x-coordinates of your endpoints, then average that value with each endpoint.)

Page 16: 4.5 Graphs of Sine and Cosine FUNctions

Key Points

• (-π/4,0)• (0,2)• (π/4,0)• (π/2,-2)• (3π/4,0)

Page 17: 4.5 Graphs of Sine and Cosine FUNctions

The graph!2.5

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g x = 2sin 2x+

2

f x = sin x

Page 18: 4.5 Graphs of Sine and Cosine FUNctions

Good news!

• Vertical shifts are easy! We just shift up or down after we are finished with everything else.

• In other words, find your five key points, then change the y-values to account for the shift.

Page 19: 4.5 Graphs of Sine and Cosine FUNctions

Try one on your own!

y = 1 – 0.5sin(0.5x – π)

Page 20: 4.5 Graphs of Sine and Cosine FUNctions

5

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g x = 1-0.5sin 0.5x- f x = sin x

Page 21: 4.5 Graphs of Sine and Cosine FUNctions

Mathematical Modeling

• The average monthly temperatures of a certain southern city can be modeled by

T = 74.6 + 12.87sin(0.52t – 2.09).

where T is the average monthly temperature and t is the month with t = 1 corresponding to January. Please use this model to predict the average monthly temperature in June.

T ≈ 85.63°


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