Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with...

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Transcript of Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with...

Page 1: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.
Page 2: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

Circular Trigonometric FunctionsY

X

• circle…center at (0,0) •radius r…vector with length/direction

• angle θ… determines direction

Page 3: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

Quadrant IQuadrant II

Quadrant III Quadrant IV

Y-axis

X-axis

90º

0º180º

270º

Initial side

Terminal side

θ

r r

360º

Page 4: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

Quadrant IQuadrant II

Quadrant III Quadrant IV

Y-axis

X-axis

-270º

-360º-180º

-90º

Initial side

θr0ºTerminal

side

Page 5: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

• angle θ…measured from positive x-axis,or initial side, to terminal

side

counterclockwise: positive directionclockwise: negative direction

• four quadrants…numbered I, II, III, IV counterclockwise

Page 6: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

• six trigonometric functions for angle θwhose terminal side passes thru point(x, y) on circle of radius r

sin θ = y / r csc θ = r / y

cos θ = x / r sec θ = r / x

tan θ = y / x cot θ = x / y

These apply to any angle in any quadrant.

Page 7: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

For any angle in any quadrant x2 + y2 = r2 …So, r is positive by Pythagorean theorem.

xy

(x,y)

Page 8: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

Y

X

NOTE: right-triangle definitions arespecial case of circularfunctionswhen θ is inquadrant I

x

y

(x,y)

Page 9: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

sin θ = y / r and csc θ = r / y

cos θ = x / r and sec θ = r / x

tan θ = y / x and cot θ = x / y

*Reciprocal Identities

Page 10: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

sinθ cosθtanθ = cot θ =cosθ sinθ

*Ratio Identities

*Both sets of identities are useful to determine trigonometric

functions of any angle.

Page 11: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

Y

X

(-, +) (+, +)

(-, -) (+, -)

Positive trig values in each quadrant:

All all six positive

Students

Take Classes

sin positive (csc)

tan positive (cot)

cos positive (sec)

I

III

II

IV

Page 12: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

REMEMBER:In the ordered pair (x, y),x represents cosine and

y represents sine.

Y

X

(-, +) (+, +)

(-, -) (+, -)

I

III

II

IV

Page 13: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.
Page 14: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

#1 Draw each angle whose terminal sidepasses through the given point, and findall trigonometric functions of each angle.

θ1: (4, 3)θ2: (- 4, 3)θ3: (- 4, -3)θ4: (4, -3)

SOLUTION

Page 15: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

Ix = y = r = (4,3)

sin θ =cos θ =tan θ =csc θ =sec θ =cot θ =

θ1

SOLUTION

Page 16: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

II x = y = r =

(-4,3)

sin θ =cos θ =tan θ =csc θ =sec θ =cot θ =

θ2

SOLUTION

Page 17: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

III

x = y = r =

(-4,-3)

sin θ =cos θ =tan θ =csc θ =sec θ =cot θ =

θ3

SOLUTION

Page 18: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

IV

x = y = r =

(4,-3)

sin θ =cos θ =tan θ =csc θ =sec θ =cot θ =

θ4

SOLUTION

Page 19: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

Y

Xθ1

III

III IV

ref θ2ref θ3 ref θ4

Perpendicular line from point on circle always drawn to the x-axis forming a reference triangle

Page 20: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

Y

Xθ1

III

III IV

ref θ2ref θ3 ref θ4

Value of trigfunction of angle inany quadrantis equal to trig function of its

reference angle,or it differsonly in sign.

Page 21: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

#2 Given: tan θ = -1 and cos θ is positive:• Draw θ. Show the values for x, y, and r.

SOLUTION

Page 22: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

Given: tan θ = -1 and cos θ is positive:• Find the six trigonometric functions of θ.

SOLUTION

Page 23: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.
Page 24: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

# 1 Find the value of sin 110º. (First determine the reference angle.)

SOLUTION

Page 25: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

#2 Find the value of tan 315º. (First determine the reference angle.)

SOLUTION

Page 26: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

#3 Find the value of cos 230º. (First determine the reference angle.)

SOLUTION

Page 27: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.
Page 28: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

#1 Draw the angle whose terminal side passes through the given point . 1, 3

SOLUTION

Page 29: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

Find all trigonometric functions for angle whose terminal side passes thru . 1, 3

SOLUTION

Page 30: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

#2 Draw angle: sin θ = 0.6, cos θ is negative.

SOLUTION

Page 31: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

Find all six trigonometric functions: sin θ = 0.6, cos θ is negative.

SOLUTION

Page 32: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

#3 Find remaining trigonometric functions:sin θ = - 0.7071, tan θ = 1.000

SOLUTION

Page 33: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

Find remaining trigonometric functions:sin θ = - 0.7071, tan θ = 1.000

SOLUTION

Page 34: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.
Page 35: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

#1 Express as a function of a reference angle and find the value: cot 306º .

SOLUTION

Page 36: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

#2 Express as a function of a reference angle and find the value: sec (-153º) .

SOLUTION

Page 37: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

#3 Find each value on your calculator.(Key in exact angle measure.)

sin 260.5º tan 150º 10’

SOLUTION

Page 38: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

csc 450ºcot (-240º)

SOLUTION

Page 39: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

sec (7/4) cos 5.41

SOLUTION

Page 40: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

π/2 = 1.57

π = 3.14

3π/2 = 4.71

02π = 6.28

Page 41: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.
Page 42: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

# 1 The refraction of a certain prism is

Calculate the value of n.

sin 100°n =

sin 47°

SOLUTION

Page 43: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

#2 A force vector F has components Fx

= - 4.5 lb and Fy = 8.5 lb. Find sin θ and cos θ.

Fy = 8.5 lb

Fx=-4.5 lb

θ

SOLUTION

Page 44: Circular Trigonometric Functions Y X r θ circle…center at (0,0) radius r…vector with length/direction angle θ… determines direction.

Fy = 8.5 lb

Fx=-4.5 lb

θ

SOLUTION