Deck 6: Analytic Trigonometry

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Question
Find the exact value of the expression.

- sin1(0.5)\sin ^ { - 1 } ( 0.5 )

A) π6\frac { \pi } { 6 }
B) 7π3\frac { 7 \pi } { 3 }
C) π3\frac { \pi } { 3 }
D) 7π6\frac { 7 \pi } { 6 }
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Question
Use a calculator to find the value of the expression rounded to two decimal places.

- sin1(0.7)\sin ^ { - 1 } ( 0.7 )

A) 44.43
B) 0.78
C) 45.57
D) 0.80
Question
Find the exact value of the expression.

- tan133\tan ^ { - 1 } \frac { \sqrt { 3 } } { 3 }

A) π6\frac { \pi } { 6 }
B) π4\frac { \pi } { 4 }
C) π3\frac { \pi } { 3 }
D) 7π6\frac { 7 \pi } { 6 }
Question
Find the exact value of the expression. Do not use a calculator.

- tan[tan1(0.4)]\tan \left[ \tan ^ { - 1 } ( - 0.4 ) \right]

A) -0.6
B) -0.4
C) -2.3652
D) -2.5
Question
Find the exact value of the expression. Do not use a calculator.

- sin[sin1(0.3)]\sin \left[ \sin ^ { - 1 } ( - 0.3 ) \right]

A) 2.7
B) -2.7
C) 0.3
D) -0.3
Question
Find the exact value of the expression.

- sin122\sin ^ { - 1 } \frac { \sqrt { 2 } } { 2 }

A) 3π4\frac { 3 \pi } { 4 }
B) 2π3\frac { 2 \pi } { 3 }
C) π4\frac { \pi } { 4 }
D) π3\frac { \pi } { 3 }
Question
Find the exact value of the expression.

- cos132\cos ^ { - 1 } \frac { \sqrt { 3 } } { 2 }

A) 7π4\frac { 7 \pi } { 4 }
B) π4\frac { \pi } { 4 }
C) 11π6\frac { 11 \pi } { 6 }
D) π6\frac { \pi } { 6 }
Question
Use a calculator to find the value of the expression rounded to two decimal places.

- sin1(55)\sin ^ { - 1 } \left( \frac { \sqrt { 5 } } { 5 } \right)

A) 63.44
B) 1.11
C) 26.57
D) 0.46
Question
Use a calculator to find the value of the expression rounded to two decimal places.

- cos1(45)\cos ^ { - 1 } \left( - \frac { 4 } { 5 } \right)

A) -0.93
B) 143.13
C) 2.50
D) -53.13
Question
Find the exact value of the expression. Do not use a calculator.

- cos1[cos(3π5)]\cos ^ { - 1 } \left[ \cos \left( - \frac { 3 \pi } { 5 } \right) \right]

A) 3π5- \frac { 3 \pi } { 5 }
B) 2π5\frac { 2 \pi } { 5 }
C) 3π5\frac { 3 \pi } { 5 }
D) 2π5- \frac { 2 \pi } { 5 }
Question
Find the exact value of the expression.

- tan1(1)\tan ^ { - 1 } ( 1 )

A) π4\frac { \pi } { 4 }
B) 5π4\frac { 5 \pi } { 4 }
C) 3π4\frac { 3 \pi } { 4 }
D) 7π4\frac { 7 \pi } { 4 }
Question
Find the exact value of the expression. Do not use a calculator.

- tan1[tan(6π7)]\tan ^ { - 1 } \left[ \tan \left( \frac { 6 \pi } { 7 } \right) \right]

A) 6π7- \frac { 6 \pi } { 7 }
B) π7\frac { \pi } { 7 }
C) π7- \frac { \pi } { 7 }
D) 6π7\frac { 6 \pi } { 7 }
Question
Find the exact value of the expression. Do not use a calculator.

- cos[cos1(0.9372)]\cos \left[ \cos ^ { - 1 } ( - 0.9372 ) \right]

A) -0.4686
B) -0.9372
C) 0.9372
D) 0.4686
Question
Use a calculator to find the value of the expression rounded to two decimal places.

- cos1(33)\cos ^ { - 1 } \left( - \frac { \sqrt { 3 } } { 3 } \right)

A) -0.62
B) 125.26
C) 2.19
D) -35.26
Question
Use a calculator to find the value of the expression rounded to two decimal places.

- sin1(17)\sin ^ { - 1 } \left( - \frac { 1 } { 7 } \right)

A) -8.21
B) -0.14
C) 1.71
D) 98.21
Question
Use a calculator to find the value of the expression rounded to two decimal places.

- cos1(0.3)\cos ^ { - 1 } ( 0.3 )

A) 0.30
B) 72.54
C) 1.27
D) 17.46
Question
Find the exact value of the expression. Do not use a calculator.

- sin1[sin(6π7)]\sin ^ { - 1 } \left[ \sin \left( \frac { 6 \pi } { 7 } \right) \right]

A) π7\frac { \pi } { 7 }
B) 76π\frac { 7 } { 6 \pi }
C) 6π7\frac { 6 \pi } { 7 }
D) 7π\frac { 7 } { \pi }
Question
Find the exact value of the expression.

- cos1(32)\cos ^ { - 1 } \left( - \frac { \sqrt { 3 } } { 2 } \right)

A) 5π6\frac { 5 \pi } { 6 }
B) π3\frac { \pi } { 3 }
C) π6\frac { \pi } { 6 }
D) 2π3\frac { 2 \pi } { 3 }
Question
Use a calculator to find the value of the expression rounded to two decimal places.

- tan1(0.2)\tan ^ { - 1 } ( 0.2 )

A) 78.69
B) 11.31
C) 0.20
D) 1.37
Question
Find the exact value of the expression. Do not use a calculator.

- sin[sin1(0.7)]\sin \left[ \sin ^ { - 1 } ( - 0.7 ) \right]

A) -0.7
B) -1.4286
C) -0.3
D) -1.5523
Question
Find the exact value of the expression. Do not use a calculator.

- cos1[cos(π10)]\cos ^ { - 1 } \left[ \cos \left( \frac { \pi } { 10 } \right) \right]

A) π10\frac { \pi } { 10 }
B) 10π10 \pi
C) 10π- 10 \pi
D) π10- \frac { \pi } { 10 }
Question
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=5tan(10x9)f ( x ) = 5 \tan ( 10 x - 9 )

A) f1(x)=5tan1(10x9)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = 5 \tan ^ { - 1 } ( 10 \mathrm { x } - 9 )
B) f1(x)=15[tan1(x10)+9]\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 5 } \left[ \tan ^ { - 1 } \left( \frac { \mathrm { x } } { 10 } \right) + 9 \right]
C) f1(x)=110[tan1(x5)9]\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 10 } \left[ \tan ^ { - 1 } \left( \frac { \mathrm { x } } { 5 } \right) - 9 \right]
D) f1(x)=110[tan1(x5)+9]\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 10 } \left[ \tan ^ { - 1 } \left( \frac { \mathrm { x } } { 5 } \right) + 9 \right]
Question
Find the exact value of the expression. Do not use a calculator.

- tan1[tan(π8)]\tan ^ { - 1 } \left[ \tan \left( - \frac { \pi } { 8 } \right) \right]

A) 8π- 8 \pi
B) π8\frac { \pi } { 8 }
C) 8π8 \pi
D) π8- \frac { \pi } { 8 }
Question
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=tan(x4)+7f ( x ) = \tan ( x - 4 ) + 7

A) Domain of f: (,)( \infty , \infty )
Domain of f1:[8,6]\mathrm { f } ^ { - 1 } : [ - 8 , - 6 ]

B) Domain of f:x(2k+1)π2+7;kf : x \neq \frac { ( 2 k + 1 ) \pi } { 2 } + 7 ; k an integer
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

C) Domain of f:x(2k+1)π2;kf : x \neq \frac { ( 2 k + 1 ) \pi } { 2 } ; k an integer
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

D) Domain of f:[4,4]\mathrm { f } : [ - 4,4 ]

Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )
Question
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=6tanx+10f ( x ) = 6 \tan x + 10

A) Domain of f:(,)\mathrm { f } : ( \infty , \infty )
Domain of f1:[4,16]\mathrm { f } ^ { - 1 } : [ 4,16 ]

B) Domain of f: x(2k+1)π2;kx \neq \frac { ( 2 k + 1 ) \pi } { 2 } ; k an integer
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

C) Domain of f:(,)\mathrm { f } : ( * , \infty )
Domain of f1:x(2k+1)π2;k\mathrm { f } ^ { - 1 } : \mathrm { x } \neq \frac { ( 2 \mathrm { k } + 1 ) \pi } { 2 } ; \mathrm { k } an integer

D) Domain of f:x(2k+1)π2;kf : x \neq \frac { ( 2 k + 1 ) \pi } { 2 } ; k an integer

Domain of f1:[4,16]f ^ { - 1 } : [ 4,16 ]
Question
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=cos(x9)5f ( x ) = \cos ( x - 9 ) - 5

A) f1(x)=cos1(x5)9f ^ { - 1 } ( x ) = \cos ^ { - 1 } ( x - 5 ) - 9
B) f1(x)=cos1(x+5)+9\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \cos ^ { - 1 } ( \mathrm { x } + 5 ) + 9
C) f1(x)=cos1(x+9)+5f ^ { - 1 } ( x ) = \cos ^ { - 1 } ( x + 9 ) + 5
D) f1(x)=cos1(x9)5f ^ { - 1 } ( x ) = \cos ^ { - 1 } ( x - 9 ) - 5
Question
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=3sin(5x)f ( x ) = 3 \sin ( 5 x )

A) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:[2,8]\mathrm { f } ^ { - 1 } : [ 2,8 ]

B) Domain of f:(,)\mathrm { f } : ( \infty , \infty )
Domain of f1:[5,5]\mathrm { f } ^ { - 1 } : [ - 5,5 ]

C) Domain of f:(,)\mathrm { f } : ( \infty , \infty )
Domain of f1:[3,3]\mathrm { f } ^ { - 1 } : [ - 3,3 ]

D) Domain of f:[15,15]\mathrm { f } : \left[ - \frac { 1 } { 5 } , \frac { 1 } { 5 } \right]

Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( - \infty , \infty )
Question
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=4cos(10x+7)f ( x ) = - 4 \cos ( 10 x + 7 )

A) f1(x)=4cos1(10x+7)f ^ { - 1 } ( x ) = - 4 \cos ^ { - 1 } ( 10 x + 7 )
B) f1(x)=14[cos1(x10)7]\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 4 } \left[ \cos ^ { - 1 } \left( \frac { \mathrm { x } } { 10 } \right) - 7 \right]
C) f1(x)=110[cos1(x4)7]\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 10 } \left[ \cos ^ { - 1 } \left( \frac { \mathrm { x } } { 4 } \right) - 7 \right]
D) f1(x)=110[cos1(x4)+7]\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = - \frac { 1 } { 10 } \left[ \cos ^ { - 1 } \left( \frac { \mathrm { x } } { 4 } \right) + 7 \right]
Question
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=2sin(3x1)f ( x ) = 2 \sin ( 3 x - 1 )

A) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:[3,3]\mathrm { f } ^ { - 1 } : [ - 3,3 ]

B) Domain of f: [12,12]\left[ - \frac { 1 } { 2 } , \frac { 1 } { 2 } \right]
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

C) Domain of f:[2,2]f : [ - 2,2 ]
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

D) Domain of f:(,)\mathrm { f } : ( \infty , \infty )

Domain of f1:[2,2]f ^ { - 1 } : [ - 2,2 ]
Question
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=4tan(9x)f ( x ) = 4 \tan ( 9 x )

A) f1(x)=14tan1(x9)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 4 } \tan ^ { - 1 } \left( \frac { \mathrm { x } } { 9 } \right)
B) f1(x)=14tan(9x)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 4 \tan ( 9 \mathrm { x } ) }
C) f1(x)=4tan1(9x)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = 4 \tan ^ { - 1 } ( 9 \mathrm { x } )
D) f1(x)=19tan1(x4)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 9 } \tan ^ { - 1 } \left( \frac { \mathrm { x } } { 4 } \right)
Question
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=7cosx+4f ( x ) = 7 \cos x + 4

A) f1(x)=7cos1x+4f ^ { - 1 } ( x ) = 7 \cos ^ { - 1 } x + 4
B) f1(x)=cos1(x+47)f ^ { - 1 } ( x ) = \cos ^ { - 1 } \left( \frac { x + 4 } { 7 } \right)
C) f1(x)=sin(x47)f ^ { - 1 } ( x ) = \sin \left( \frac { x - 4 } { 7 } \right)
D) f1(x)=cos1(x47)f ^ { - 1 } ( x ) = \cos ^ { - 1 } \left( \frac { x - 4 } { 7 } \right)
Question
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=5cos(9x)f ( x ) = - 5 \cos ( 9 x )

A) Domain of f:[19,19]f : \left[ - \frac { 1 } { 9 } , \frac { 1 } { 9 } \right]
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

B) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:[5,5]\mathrm { f } ^ { - 1 } : [ - 5,5 ]

C) Domain of f: (,)( \infty , \infty )
Domain of f1:[9,9]\mathrm { f } ^ { - 1 } : [ - 9,9 ]

D) Domain of f: (,)( \infty , \infty )

Domain of f1:[4,14]\mathrm { f } ^ { - 1 } : [ 4,14 ]
Question
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=7cos(4x)f ( x ) = - 7 \cos ( 4 x )

A) f1(x)=14cos1(x7)f ^ { - 1 } ( x ) = \frac { 1 } { 4 } \cos ^ { - 1 } \left( \frac { x } { 7 } \right)
B) f1(x)=7cos1(4x)f ^ { - 1 } ( x ) = - 7 \cos ^ { - 1 } ( 4 x )
C) f1(x)=17cos1(x4)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 7 } \cos ^ { - 1 } \left( \frac { \mathrm { x } } { 4 } \right)
D) f1(x)=14cos1(x7)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = - \frac { 1 } { 4 } \cos ^ { - 1 } \left( \frac { \mathrm { x } } { 7 } \right)
Question
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=3sinx2f ( x ) = 3 \sin x - 2

A) f1(x)=3sin1x2f ^ { - 1 } ( x ) = 3 \sin ^ { - 1 } x - 2
B) f1(x)=sin1(x+23)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \sin ^ { - 1 } \left( \frac { \mathrm { x } + 2 } { 3 } \right)
C) f1(x)=cos(x+23)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \cos \left( \frac { \mathrm { x } + 2 } { 3 } \right)
D) f1(x)=sin1(x+32)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \sin ^ { - 1 } \left( \frac { \mathrm { x } + 3 } { 2 } \right)
Question
Find the exact value of the expression. Do not use a calculator.

- sin1[sin(π5)]\sin ^ { - 1 } \left[ \sin \left( \frac { \pi } { 5 } \right) \right]

A) 5π5 \pi
B) π5\frac { \pi } { 5 }
C) 5π- 5 \pi
D) π5- \frac { \pi } { 5 }
Question
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=cos(x3)+4f ( x ) = \cos ( x - 3 ) + 4

A) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:[5,3]f ^ { - 1 } : [ - 5 , - 3 ]

B) Domain of f:(,)\mathrm { f } : ( \infty , \infty )
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

C) Domain of f:(,)\mathrm { f } : ( \infty , \infty )
Domain of f1:[3,5]\mathrm { f } ^ { - 1 } : [ 3,5 ]

D) Domain of f:[3,3]f : [ - 3,3 ]

Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )
Question
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=8cos(10x+4)f ( x ) = - 8 \cos ( 10 x + 4 )

A) Domain of f:(,)\mathrm { f } : ( \infty , \infty )
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

B) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:[8,8]\mathrm { f } ^ { - 1 } : [ - 8,8 ]

C) Domain of f:[8,8]\mathrm { f } : [ - 8,8 ]
Domain of f1:(,)f ^ { - 1 } : ( \infty , \infty )

D) Domain of f:(,)\mathrm { f: } ( \infty , \infty )

Domain of f1:[10,10]f ^ { - 1 } : [ - 10,10 ]
Question
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=3sinx5f ( x ) = 3 \sin x - 5

A) Domain of ff : [2,8][ 2,8 ]
Domain of f1:[8,2]\mathrm { f } ^ { - 1 } : [ - 8 , - 2 ]

B) Domain of f: (,)( \infty , \infty )
Domain of f1:[8,2]\mathrm { f } ^ { - 1 } : [ - 8 , - 2 ]

C) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:[2,8]\mathrm { f } ^ { - 1 } : [ 2,8 ]

D) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )
Question
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=sin(x+6)5f ( x ) = - \sin ( x + 6 ) - 5

A) f1(x)=sin1(x5)+6f ^ { - 1 } ( x ) = - \sin ^ { - 1 } ( x - 5 ) + 6
B) f1(x)=sin1(x+6)5f ^ { - 1 } ( x ) = - \sin ^ { - 1 } ( x + 6 ) - 5
C) f1(x)=sin1(x+5)6f ^ { - 1 } ( x ) = - \sin ^ { - 1 } ( x + 5 ) - 6
D) f1(x)=sin1(x+5)6f ^ { - 1 } ( x ) = \sin ^ { - 1 } ( x + 5 ) - 6
Question
Find the exact solution of the equation.

- cos1x=0\cos ^ { - 1 } x = 0

A) x = -1
B) x=πx = \pi
C) x = 1
D) x = 0
Question
Find the exact solution of the equation.

- 2cos1x=π2 \cos ^ { - 1 } x = \pi

A) x=0x = 0
B) x=1x = 1
C) x=3π2x = \frac { 3 \pi } { 2 }
D) x=π2x = \frac { \pi } { 2 }
Question
Find the exact value of the expression.

- sin1[sin(6π7)]\sin ^ { - 1 } \left[ \sin \left( \frac { 6 \pi } { 7 } \right) \right]

A) 6π7\frac { 6 \pi } { 7 }
B) 7π\frac { 7 } { \pi }
C) π7\frac { \pi } { 7 }
D) 76π\frac { 7 } { 6 \pi }
Question
Find the exact solution of the equation.

- sin1(4x)=π4- \sin ^ { - 1 } ( 4 x ) = \frac { \pi } { 4 }

A) x=28x = - \frac { \sqrt { 2 } } { 8 }
B) x=28x = \frac { \sqrt { 2 } } { 8 }
C) x=22x = - \frac { \sqrt { 2 } } { 2 }
D) x=0x = 0
Question
Solve the problem.
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Question
Solve the problem.
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Question
Solve the problem.
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Question
Find the exact value of the expression.

- cos(sin145)\cos \left( \sin ^ { - 1 } \frac { 4 } { 5 } \right)

A) 35- \frac { 3 } { 5 }
B) 15\frac { 1 } { 5 }
C) 45- \frac { 4 } { 5 }
D) 35\frac { 3 } { 5 }
Question
Find the exact value of the expression.

- cos1(sin7π6)\cos ^ { - 1 } \left( \sin \frac { 7 \pi } { 6 } \right)

A) 2π3\frac { 2 \pi } { 3 }
B) 4π5\frac { 4 \pi } { 5 }
C) π6\frac { \pi } { 6 }
D) π3\frac { \pi } { 3 }
Question
Find the exact value of the expression.

- cos1(cos7π6)\cos ^ { - 1 } \left( \cos \frac { 7 \pi } { 6 } \right)

A) 4π5\frac { 4 \pi } { 5 }
B) π6\frac { \pi } { 6 }
C) π3\frac { \pi } { 3 }
D) 5π6\frac { 5 \pi } { 6 }
Question
Find the exact value of the expression.

- tan(cos113)\tan \left( \cos ^ { - 1 } \frac { 1 } { 3 } \right)

A) 222 \sqrt { 2 }
B) 232 \sqrt { 3 }
C) 223\frac { 2 \sqrt { 2 } } { 3 }
D) 23- 2 \sqrt { 3 }
Question
Find the exact value of the expression.

- cos1[cos(0.9372)]\cos ^ { - 1 } [ \cos ( - 0.9372 ) ]

A) -0.9372
B) 0.4686
C) -0.4686
D) 0.9372
Question
Find the exact solution of the equation.

- sin1x=π2\sin ^ { - 1 } x = \frac { \pi } { 2 }

A) x=1x = 1
B) x=πx = \pi
C) x=1x = - 1
D) x=0x = 0
Question
Find the exact value of the expression.

- sin(tan12)\sin \left( \tan ^ { - 1 } 2 \right)

A) 522\frac { 5 \sqrt { 2 } } { 2 }
B) 255\frac { 2 \sqrt { 5 } } { 5 }
C) 252 \sqrt { 5 }
D) 525 \sqrt { 2 }
Question
Solve the problem.
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Question
Find the exact solution of the equation.

- 4tan1x=π- 4 \tan ^ { - 1 } x = \pi

A) x=0x = 0
B) x=π4x = \frac { \pi } { 4 }
C) x=1x = - 1
D) x=1x = 1
Question
Find the exact value of the expression.

- cos(sin114)\cos \left( \sin ^ { - 1 } \frac { 1 } { 4 } \right)

A) 21515\frac { 2 \sqrt { 15 } } { 15 }
B) 41515\frac { 4 \sqrt { 15 } } { 15 }
C) 154\frac { \sqrt { 15 } } { 4 }
D) 152\frac { \sqrt { 15 } } { 2 }
Question
Find the exact solution of the equation.

- sin1x=π6\sin ^ { - 1 } x = \frac { \pi } { 6 }

A) x=12x = - \frac { 1 } { 2 }
B) x=12x = \frac { 1 } { 2 }
C) x=0x = 0
D) x=1x = 1
Question
Find the exact value of the expression.

- cos[tan1(33)]\cos \left[ \tan ^ { - 1 } \left( \frac { \sqrt { 3 } } { 3 } \right) \right]

A) π3\frac { \pi } { 3 }
B) 12\frac { 1 } { 2 }
C) 33\frac { \sqrt { 3 } } { 3 }
D) 32\frac { \sqrt { 3 } } { 2 }
Question
Solve the problem.
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Question
Find the exact value of the expression.

- cos(2sin114)\cos \left( 2 \sin ^ { - 1 } \frac { 1 } { 4 } \right)

A) 38\frac { 3 } { 8 }
B) 58\frac { 5 } { 8 }
C) 18\frac { 1 } { 8 }
D) 78\frac { 7 } { 8 }
Question
Find the exact value of the composition.

- sin(tan1(2))\sin \left( \tan ^ { - 1 } ( 2 ) \right)

A) 252 \sqrt { 5 }
B) 255\frac { 2 \sqrt { 5 } } { 5 }
C) 522\frac { 5 \sqrt { 2 } } { 2 }
D) 525 \sqrt { 2 }
Question
Find the exact value of the composition.

- cos(sin145)\cos \left( \sin ^ { - 1 } \frac { 4 } { 5 } \right)

A) 35- \frac { 3 } { 5 }
B) 15\frac { 1 } { 5 }
C) 45- \frac { 4 } { 5 }
D) 35\frac { 3 } { 5 }
Question
Find the exact value of the composition.

- sin(tan12)\sin \left( \tan ^ { - 1 } 2 \right)

A) 255\frac { 2 \sqrt { 5 } } { 5 }
B) 252 \sqrt { 5 }
C) 525 \sqrt { 2 }
D) 522\frac { 5 \sqrt { 2 } } { 2 }
Question
Use a calculator to find the value of the expression in radian measure rounded to two decimal places.

- cot1(57)\cot ^ { - 1 } \left( - \frac { 5 } { 7 } \right)

A) -35.54
B) -0.95
C) -54.46
D) -0.62
Question
Find the exact value of the expression.

- sec1(2)\sec ^ { - 1 } ( \sqrt { 2 } )

A) 3π4- \frac { 3 \pi } { 4 }
B) π4\frac { \pi } { 4 }
C) 3π4\frac { 3 \pi } { 4 }
D) π3\frac { \pi } { 3 }
Question
Write the trigonometric expression as an algebraic expression in u.

- sin(tan1u)\sin \left( \tan ^ { - 1 } u \right)

A) 1u2+1\frac { 1 } { \sqrt { u ^ { 2 } + 1 } }
B) uu2+1\mathrm { u } \sqrt { \mathrm { u } ^ { 2 } + 1 }
C) uu2+1\frac { \mathrm { u } } { \sqrt { \mathrm { u } ^ { 2 } + 1 } }
D) uu21\frac { \mathrm { u } } { \sqrt { \mathrm { u } ^ { 2 } - 1 } }
Question
Find the exact value of the expression.

- tan(sin122)\tan \left( \sin ^ { - 1 } \frac { \sqrt { 2 } } { 2 } \right)

A) 2
B) 22\frac { \sqrt { 2 } } { 2 }
C) 2\sqrt { 2 }
D) 1
Question
Find the exact value of the expression.

- cot1(1)\cot ^ { - 1 } ( - 1 )

A) 2π3\frac { 2 \pi } { 3 }
B) 3π4\frac { 3 \pi } { 4 }
C) π4\frac { \pi } { 4 }
D) π3\frac { \pi } { 3 }
Question
Use a calculator to find the value of the expression in radian measure rounded to two decimal places.

- sec1(73)\sec ^ { - 1 } \left( - \frac { 7 } { 3 } \right)

A) 2.01
B) -2.01
C) 0.50
D) 1.13
Question
Use a calculator to find the value of the expression in radian measure rounded to two decimal places.

- sec1(54)\sec ^ { - 1 } \left( - \frac { 5 } { 4 } \right)

A) 143.13
B) -0.93
C) 2.50
D) -53.13
Question
Find the exact value of the expression.

- tan1[tan(6π7)]\tan ^ { - 1 } \left[ \tan \left( \frac { 6 \pi } { 7 } \right) \right]

A) 6π7- \frac { 6 \pi } { 7 }
B) π7\frac { \pi } { 7 }
C) 6π7\frac { 6 \pi } { 7 }
D) π7- \frac { \pi } { 7 }
Question
Use a calculator to find the value of the expression in radian measure rounded to two decimal places.

- csc1(74)\csc ^ { - 1 } \left( - \frac { 7 } { 4 } \right)

A) 2.182.18
B) 124.85124.85
C) 0.61- 0.61
D) 34.85- 34.85
Question
Find the exact value of the composition.

- cos(sin1(14))\cos \left( \sin ^ { - 1 } \left( \frac { 1 } { 4 } \right) \right)

A) 152\frac { \sqrt { 15 } } { 2 }
B) 21515\frac { 2 \sqrt { 15 } } { 15 }
C) 154\frac { \sqrt { 15 } } { 4 }
D) 41515\frac { 4 \sqrt { 15 } } { 15 }
Question
Find the exact value of the expression.

- sec[sin1(32)]\sec \left[ \sin ^ { - 1 } \left( - \frac { \sqrt { 3 } } { 2 } \right) \right]

A) 0
B) 2
C) 22\frac { \sqrt { 2 } } { 2 }
D) 1
Question
Find the exact value of the expression.

- csc1(2)\csc ^ { - 1 } ( - 2 )

A) 2π3\frac { 2 \pi } { 3 }
B) π3\frac { \pi } { 3 }
C) π6- \frac { \pi } { 6 }
D) π6\frac { \pi } { 6 }
Question
Find the exact value of the composition.

- cos1(sin7π6)\cos ^ { - 1 } \left( \sin \frac { 7 \pi } { 6 } \right)

A) 2π3\frac { 2 \pi } { 3 }
B) 4π5\frac { 4 \pi } { 5 }
C) π6\frac { \pi } { 6 }
D) π3\frac { \pi } { 3 }
Question
Write the trigonometric expression as an algebraic expression in u.

- cos(tan1u)\cos \left( \tan ^ { - 1 } \mathrm { u } \right)

A) uu2+1\mathrm { u } \sqrt { \mathrm { u } ^ { 2 } + 1 }
B) uu2+1\frac { \mathrm { u } } { \sqrt { \mathrm { u } ^ { 2 } + 1 } }
C) 1u2+1\frac { 1 } { \sqrt { \mathrm { u } ^ { 2 } + 1 } }
D) 1u21\frac { 1 } { \sqrt { u ^ { 2 } - 1 } }
Question
Find the exact value of the expression.

- sec(tan133)\sec \left( \tan ^ { - 1 } \frac { \sqrt { 3 } } { 3 } \right)

A) 2
B) 233\frac { 2 \sqrt { 3 } } { 3 }
C) 12\frac { 1 } { 2 }
D) 3\sqrt { 3 }
Question
Write the trigonometric expression as an algebraic expression in u.

- cos(sin1u)\cos \left( \sin ^ { - 1 } u \right)

A) u2+1\sqrt { \mathrm { u } ^ { 2 } + 1 }
B) 1u2\sqrt { 1 - u ^ { 2 } }
C) u21\sqrt { \mathrm { u } ^ { 2 } - 1 }
D) u2+1u\frac { \sqrt { \mathrm { u } ^ { 2 } + 1 } } { \mathrm { u } }
Question
Find the exact value of the expression.

- sec1(2)\sec ^ { - 1 } ( - 2 )

A) 2π3\frac { 2 \pi } { 3 }
B) 2π3- \frac { 2 \pi } { 3 }
C) π3- \frac { \pi } { 3 }
D) 4π3\frac { 4 \pi } { 3 }
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Deck 6: Analytic Trigonometry
1
Find the exact value of the expression.

- sin1(0.5)\sin ^ { - 1 } ( 0.5 )

A) π6\frac { \pi } { 6 }
B) 7π3\frac { 7 \pi } { 3 }
C) π3\frac { \pi } { 3 }
D) 7π6\frac { 7 \pi } { 6 }
π6\frac { \pi } { 6 }
2
Use a calculator to find the value of the expression rounded to two decimal places.

- sin1(0.7)\sin ^ { - 1 } ( 0.7 )

A) 44.43
B) 0.78
C) 45.57
D) 0.80
0.78
3
Find the exact value of the expression.

- tan133\tan ^ { - 1 } \frac { \sqrt { 3 } } { 3 }

A) π6\frac { \pi } { 6 }
B) π4\frac { \pi } { 4 }
C) π3\frac { \pi } { 3 }
D) 7π6\frac { 7 \pi } { 6 }
π6\frac { \pi } { 6 }
4
Find the exact value of the expression. Do not use a calculator.

- tan[tan1(0.4)]\tan \left[ \tan ^ { - 1 } ( - 0.4 ) \right]

A) -0.6
B) -0.4
C) -2.3652
D) -2.5
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5
Find the exact value of the expression. Do not use a calculator.

- sin[sin1(0.3)]\sin \left[ \sin ^ { - 1 } ( - 0.3 ) \right]

A) 2.7
B) -2.7
C) 0.3
D) -0.3
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6
Find the exact value of the expression.

- sin122\sin ^ { - 1 } \frac { \sqrt { 2 } } { 2 }

A) 3π4\frac { 3 \pi } { 4 }
B) 2π3\frac { 2 \pi } { 3 }
C) π4\frac { \pi } { 4 }
D) π3\frac { \pi } { 3 }
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7
Find the exact value of the expression.

- cos132\cos ^ { - 1 } \frac { \sqrt { 3 } } { 2 }

A) 7π4\frac { 7 \pi } { 4 }
B) π4\frac { \pi } { 4 }
C) 11π6\frac { 11 \pi } { 6 }
D) π6\frac { \pi } { 6 }
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8
Use a calculator to find the value of the expression rounded to two decimal places.

- sin1(55)\sin ^ { - 1 } \left( \frac { \sqrt { 5 } } { 5 } \right)

A) 63.44
B) 1.11
C) 26.57
D) 0.46
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9
Use a calculator to find the value of the expression rounded to two decimal places.

- cos1(45)\cos ^ { - 1 } \left( - \frac { 4 } { 5 } \right)

A) -0.93
B) 143.13
C) 2.50
D) -53.13
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10
Find the exact value of the expression. Do not use a calculator.

- cos1[cos(3π5)]\cos ^ { - 1 } \left[ \cos \left( - \frac { 3 \pi } { 5 } \right) \right]

A) 3π5- \frac { 3 \pi } { 5 }
B) 2π5\frac { 2 \pi } { 5 }
C) 3π5\frac { 3 \pi } { 5 }
D) 2π5- \frac { 2 \pi } { 5 }
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11
Find the exact value of the expression.

- tan1(1)\tan ^ { - 1 } ( 1 )

A) π4\frac { \pi } { 4 }
B) 5π4\frac { 5 \pi } { 4 }
C) 3π4\frac { 3 \pi } { 4 }
D) 7π4\frac { 7 \pi } { 4 }
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12
Find the exact value of the expression. Do not use a calculator.

- tan1[tan(6π7)]\tan ^ { - 1 } \left[ \tan \left( \frac { 6 \pi } { 7 } \right) \right]

A) 6π7- \frac { 6 \pi } { 7 }
B) π7\frac { \pi } { 7 }
C) π7- \frac { \pi } { 7 }
D) 6π7\frac { 6 \pi } { 7 }
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13
Find the exact value of the expression. Do not use a calculator.

- cos[cos1(0.9372)]\cos \left[ \cos ^ { - 1 } ( - 0.9372 ) \right]

A) -0.4686
B) -0.9372
C) 0.9372
D) 0.4686
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14
Use a calculator to find the value of the expression rounded to two decimal places.

- cos1(33)\cos ^ { - 1 } \left( - \frac { \sqrt { 3 } } { 3 } \right)

A) -0.62
B) 125.26
C) 2.19
D) -35.26
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15
Use a calculator to find the value of the expression rounded to two decimal places.

- sin1(17)\sin ^ { - 1 } \left( - \frac { 1 } { 7 } \right)

A) -8.21
B) -0.14
C) 1.71
D) 98.21
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16
Use a calculator to find the value of the expression rounded to two decimal places.

- cos1(0.3)\cos ^ { - 1 } ( 0.3 )

A) 0.30
B) 72.54
C) 1.27
D) 17.46
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17
Find the exact value of the expression. Do not use a calculator.

- sin1[sin(6π7)]\sin ^ { - 1 } \left[ \sin \left( \frac { 6 \pi } { 7 } \right) \right]

A) π7\frac { \pi } { 7 }
B) 76π\frac { 7 } { 6 \pi }
C) 6π7\frac { 6 \pi } { 7 }
D) 7π\frac { 7 } { \pi }
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18
Find the exact value of the expression.

- cos1(32)\cos ^ { - 1 } \left( - \frac { \sqrt { 3 } } { 2 } \right)

A) 5π6\frac { 5 \pi } { 6 }
B) π3\frac { \pi } { 3 }
C) π6\frac { \pi } { 6 }
D) 2π3\frac { 2 \pi } { 3 }
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19
Use a calculator to find the value of the expression rounded to two decimal places.

- tan1(0.2)\tan ^ { - 1 } ( 0.2 )

A) 78.69
B) 11.31
C) 0.20
D) 1.37
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20
Find the exact value of the expression. Do not use a calculator.

- sin[sin1(0.7)]\sin \left[ \sin ^ { - 1 } ( - 0.7 ) \right]

A) -0.7
B) -1.4286
C) -0.3
D) -1.5523
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21
Find the exact value of the expression. Do not use a calculator.

- cos1[cos(π10)]\cos ^ { - 1 } \left[ \cos \left( \frac { \pi } { 10 } \right) \right]

A) π10\frac { \pi } { 10 }
B) 10π10 \pi
C) 10π- 10 \pi
D) π10- \frac { \pi } { 10 }
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22
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=5tan(10x9)f ( x ) = 5 \tan ( 10 x - 9 )

A) f1(x)=5tan1(10x9)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = 5 \tan ^ { - 1 } ( 10 \mathrm { x } - 9 )
B) f1(x)=15[tan1(x10)+9]\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 5 } \left[ \tan ^ { - 1 } \left( \frac { \mathrm { x } } { 10 } \right) + 9 \right]
C) f1(x)=110[tan1(x5)9]\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 10 } \left[ \tan ^ { - 1 } \left( \frac { \mathrm { x } } { 5 } \right) - 9 \right]
D) f1(x)=110[tan1(x5)+9]\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 10 } \left[ \tan ^ { - 1 } \left( \frac { \mathrm { x } } { 5 } \right) + 9 \right]
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23
Find the exact value of the expression. Do not use a calculator.

- tan1[tan(π8)]\tan ^ { - 1 } \left[ \tan \left( - \frac { \pi } { 8 } \right) \right]

A) 8π- 8 \pi
B) π8\frac { \pi } { 8 }
C) 8π8 \pi
D) π8- \frac { \pi } { 8 }
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24
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=tan(x4)+7f ( x ) = \tan ( x - 4 ) + 7

A) Domain of f: (,)( \infty , \infty )
Domain of f1:[8,6]\mathrm { f } ^ { - 1 } : [ - 8 , - 6 ]

B) Domain of f:x(2k+1)π2+7;kf : x \neq \frac { ( 2 k + 1 ) \pi } { 2 } + 7 ; k an integer
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

C) Domain of f:x(2k+1)π2;kf : x \neq \frac { ( 2 k + 1 ) \pi } { 2 } ; k an integer
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

D) Domain of f:[4,4]\mathrm { f } : [ - 4,4 ]

Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )
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25
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=6tanx+10f ( x ) = 6 \tan x + 10

A) Domain of f:(,)\mathrm { f } : ( \infty , \infty )
Domain of f1:[4,16]\mathrm { f } ^ { - 1 } : [ 4,16 ]

B) Domain of f: x(2k+1)π2;kx \neq \frac { ( 2 k + 1 ) \pi } { 2 } ; k an integer
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

C) Domain of f:(,)\mathrm { f } : ( * , \infty )
Domain of f1:x(2k+1)π2;k\mathrm { f } ^ { - 1 } : \mathrm { x } \neq \frac { ( 2 \mathrm { k } + 1 ) \pi } { 2 } ; \mathrm { k } an integer

D) Domain of f:x(2k+1)π2;kf : x \neq \frac { ( 2 k + 1 ) \pi } { 2 } ; k an integer

Domain of f1:[4,16]f ^ { - 1 } : [ 4,16 ]
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26
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=cos(x9)5f ( x ) = \cos ( x - 9 ) - 5

A) f1(x)=cos1(x5)9f ^ { - 1 } ( x ) = \cos ^ { - 1 } ( x - 5 ) - 9
B) f1(x)=cos1(x+5)+9\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \cos ^ { - 1 } ( \mathrm { x } + 5 ) + 9
C) f1(x)=cos1(x+9)+5f ^ { - 1 } ( x ) = \cos ^ { - 1 } ( x + 9 ) + 5
D) f1(x)=cos1(x9)5f ^ { - 1 } ( x ) = \cos ^ { - 1 } ( x - 9 ) - 5
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27
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=3sin(5x)f ( x ) = 3 \sin ( 5 x )

A) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:[2,8]\mathrm { f } ^ { - 1 } : [ 2,8 ]

B) Domain of f:(,)\mathrm { f } : ( \infty , \infty )
Domain of f1:[5,5]\mathrm { f } ^ { - 1 } : [ - 5,5 ]

C) Domain of f:(,)\mathrm { f } : ( \infty , \infty )
Domain of f1:[3,3]\mathrm { f } ^ { - 1 } : [ - 3,3 ]

D) Domain of f:[15,15]\mathrm { f } : \left[ - \frac { 1 } { 5 } , \frac { 1 } { 5 } \right]

Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( - \infty , \infty )
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28
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=4cos(10x+7)f ( x ) = - 4 \cos ( 10 x + 7 )

A) f1(x)=4cos1(10x+7)f ^ { - 1 } ( x ) = - 4 \cos ^ { - 1 } ( 10 x + 7 )
B) f1(x)=14[cos1(x10)7]\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 4 } \left[ \cos ^ { - 1 } \left( \frac { \mathrm { x } } { 10 } \right) - 7 \right]
C) f1(x)=110[cos1(x4)7]\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 10 } \left[ \cos ^ { - 1 } \left( \frac { \mathrm { x } } { 4 } \right) - 7 \right]
D) f1(x)=110[cos1(x4)+7]\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = - \frac { 1 } { 10 } \left[ \cos ^ { - 1 } \left( \frac { \mathrm { x } } { 4 } \right) + 7 \right]
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29
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=2sin(3x1)f ( x ) = 2 \sin ( 3 x - 1 )

A) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:[3,3]\mathrm { f } ^ { - 1 } : [ - 3,3 ]

B) Domain of f: [12,12]\left[ - \frac { 1 } { 2 } , \frac { 1 } { 2 } \right]
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

C) Domain of f:[2,2]f : [ - 2,2 ]
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

D) Domain of f:(,)\mathrm { f } : ( \infty , \infty )

Domain of f1:[2,2]f ^ { - 1 } : [ - 2,2 ]
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30
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=4tan(9x)f ( x ) = 4 \tan ( 9 x )

A) f1(x)=14tan1(x9)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 4 } \tan ^ { - 1 } \left( \frac { \mathrm { x } } { 9 } \right)
B) f1(x)=14tan(9x)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 4 \tan ( 9 \mathrm { x } ) }
C) f1(x)=4tan1(9x)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = 4 \tan ^ { - 1 } ( 9 \mathrm { x } )
D) f1(x)=19tan1(x4)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 9 } \tan ^ { - 1 } \left( \frac { \mathrm { x } } { 4 } \right)
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31
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=7cosx+4f ( x ) = 7 \cos x + 4

A) f1(x)=7cos1x+4f ^ { - 1 } ( x ) = 7 \cos ^ { - 1 } x + 4
B) f1(x)=cos1(x+47)f ^ { - 1 } ( x ) = \cos ^ { - 1 } \left( \frac { x + 4 } { 7 } \right)
C) f1(x)=sin(x47)f ^ { - 1 } ( x ) = \sin \left( \frac { x - 4 } { 7 } \right)
D) f1(x)=cos1(x47)f ^ { - 1 } ( x ) = \cos ^ { - 1 } \left( \frac { x - 4 } { 7 } \right)
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32
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=5cos(9x)f ( x ) = - 5 \cos ( 9 x )

A) Domain of f:[19,19]f : \left[ - \frac { 1 } { 9 } , \frac { 1 } { 9 } \right]
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

B) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:[5,5]\mathrm { f } ^ { - 1 } : [ - 5,5 ]

C) Domain of f: (,)( \infty , \infty )
Domain of f1:[9,9]\mathrm { f } ^ { - 1 } : [ - 9,9 ]

D) Domain of f: (,)( \infty , \infty )

Domain of f1:[4,14]\mathrm { f } ^ { - 1 } : [ 4,14 ]
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33
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=7cos(4x)f ( x ) = - 7 \cos ( 4 x )

A) f1(x)=14cos1(x7)f ^ { - 1 } ( x ) = \frac { 1 } { 4 } \cos ^ { - 1 } \left( \frac { x } { 7 } \right)
B) f1(x)=7cos1(4x)f ^ { - 1 } ( x ) = - 7 \cos ^ { - 1 } ( 4 x )
C) f1(x)=17cos1(x4)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \frac { 1 } { 7 } \cos ^ { - 1 } \left( \frac { \mathrm { x } } { 4 } \right)
D) f1(x)=14cos1(x7)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = - \frac { 1 } { 4 } \cos ^ { - 1 } \left( \frac { \mathrm { x } } { 7 } \right)
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34
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=3sinx2f ( x ) = 3 \sin x - 2

A) f1(x)=3sin1x2f ^ { - 1 } ( x ) = 3 \sin ^ { - 1 } x - 2
B) f1(x)=sin1(x+23)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \sin ^ { - 1 } \left( \frac { \mathrm { x } + 2 } { 3 } \right)
C) f1(x)=cos(x+23)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \cos \left( \frac { \mathrm { x } + 2 } { 3 } \right)
D) f1(x)=sin1(x+32)\mathrm { f } ^ { - 1 } ( \mathrm { x } ) = \sin ^ { - 1 } \left( \frac { \mathrm { x } + 3 } { 2 } \right)
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35
Find the exact value of the expression. Do not use a calculator.

- sin1[sin(π5)]\sin ^ { - 1 } \left[ \sin \left( \frac { \pi } { 5 } \right) \right]

A) 5π5 \pi
B) π5\frac { \pi } { 5 }
C) 5π- 5 \pi
D) π5- \frac { \pi } { 5 }
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36
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=cos(x3)+4f ( x ) = \cos ( x - 3 ) + 4

A) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:[5,3]f ^ { - 1 } : [ - 5 , - 3 ]

B) Domain of f:(,)\mathrm { f } : ( \infty , \infty )
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

C) Domain of f:(,)\mathrm { f } : ( \infty , \infty )
Domain of f1:[3,5]\mathrm { f } ^ { - 1 } : [ 3,5 ]

D) Domain of f:[3,3]f : [ - 3,3 ]

Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )
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37
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=8cos(10x+4)f ( x ) = - 8 \cos ( 10 x + 4 )

A) Domain of f:(,)\mathrm { f } : ( \infty , \infty )
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )

B) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:[8,8]\mathrm { f } ^ { - 1 } : [ - 8,8 ]

C) Domain of f:[8,8]\mathrm { f } : [ - 8,8 ]
Domain of f1:(,)f ^ { - 1 } : ( \infty , \infty )

D) Domain of f:(,)\mathrm { f: } ( \infty , \infty )

Domain of f1:[10,10]f ^ { - 1 } : [ - 10,10 ]
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38
Find the domain of the function f and of its inverse function f1\mathrm { f } ^ { - 1 } .

- f(x)=3sinx5f ( x ) = 3 \sin x - 5

A) Domain of ff : [2,8][ 2,8 ]
Domain of f1:[8,2]\mathrm { f } ^ { - 1 } : [ - 8 , - 2 ]

B) Domain of f: (,)( \infty , \infty )
Domain of f1:[8,2]\mathrm { f } ^ { - 1 } : [ - 8 , - 2 ]

C) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:[2,8]\mathrm { f } ^ { - 1 } : [ 2,8 ]

D) Domain of f:(,)f : ( \infty , \infty )
Domain of f1:(,)\mathrm { f } ^ { - 1 } : ( \infty , \infty )
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39
Find the inverse function f1\mathrm { f } ^ { - 1 } of the function f.

- f(x)=sin(x+6)5f ( x ) = - \sin ( x + 6 ) - 5

A) f1(x)=sin1(x5)+6f ^ { - 1 } ( x ) = - \sin ^ { - 1 } ( x - 5 ) + 6
B) f1(x)=sin1(x+6)5f ^ { - 1 } ( x ) = - \sin ^ { - 1 } ( x + 6 ) - 5
C) f1(x)=sin1(x+5)6f ^ { - 1 } ( x ) = - \sin ^ { - 1 } ( x + 5 ) - 6
D) f1(x)=sin1(x+5)6f ^ { - 1 } ( x ) = \sin ^ { - 1 } ( x + 5 ) - 6
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40
Find the exact solution of the equation.

- cos1x=0\cos ^ { - 1 } x = 0

A) x = -1
B) x=πx = \pi
C) x = 1
D) x = 0
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41
Find the exact solution of the equation.

- 2cos1x=π2 \cos ^ { - 1 } x = \pi

A) x=0x = 0
B) x=1x = 1
C) x=3π2x = \frac { 3 \pi } { 2 }
D) x=π2x = \frac { \pi } { 2 }
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42
Find the exact value of the expression.

- sin1[sin(6π7)]\sin ^ { - 1 } \left[ \sin \left( \frac { 6 \pi } { 7 } \right) \right]

A) 6π7\frac { 6 \pi } { 7 }
B) 7π\frac { 7 } { \pi }
C) π7\frac { \pi } { 7 }
D) 76π\frac { 7 } { 6 \pi }
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43
Find the exact solution of the equation.

- sin1(4x)=π4- \sin ^ { - 1 } ( 4 x ) = \frac { \pi } { 4 }

A) x=28x = - \frac { \sqrt { 2 } } { 8 }
B) x=28x = \frac { \sqrt { 2 } } { 8 }
C) x=22x = - \frac { \sqrt { 2 } } { 2 }
D) x=0x = 0
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44
Solve the problem.
Solve the problem.
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45
Solve the problem.
Solve the problem.   a a
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46
Solve the problem.
Solve the problem.
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47
Find the exact value of the expression.

- cos(sin145)\cos \left( \sin ^ { - 1 } \frac { 4 } { 5 } \right)

A) 35- \frac { 3 } { 5 }
B) 15\frac { 1 } { 5 }
C) 45- \frac { 4 } { 5 }
D) 35\frac { 3 } { 5 }
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48
Find the exact value of the expression.

- cos1(sin7π6)\cos ^ { - 1 } \left( \sin \frac { 7 \pi } { 6 } \right)

A) 2π3\frac { 2 \pi } { 3 }
B) 4π5\frac { 4 \pi } { 5 }
C) π6\frac { \pi } { 6 }
D) π3\frac { \pi } { 3 }
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49
Find the exact value of the expression.

- cos1(cos7π6)\cos ^ { - 1 } \left( \cos \frac { 7 \pi } { 6 } \right)

A) 4π5\frac { 4 \pi } { 5 }
B) π6\frac { \pi } { 6 }
C) π3\frac { \pi } { 3 }
D) 5π6\frac { 5 \pi } { 6 }
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50
Find the exact value of the expression.

- tan(cos113)\tan \left( \cos ^ { - 1 } \frac { 1 } { 3 } \right)

A) 222 \sqrt { 2 }
B) 232 \sqrt { 3 }
C) 223\frac { 2 \sqrt { 2 } } { 3 }
D) 23- 2 \sqrt { 3 }
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51
Find the exact value of the expression.

- cos1[cos(0.9372)]\cos ^ { - 1 } [ \cos ( - 0.9372 ) ]

A) -0.9372
B) 0.4686
C) -0.4686
D) 0.9372
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52
Find the exact solution of the equation.

- sin1x=π2\sin ^ { - 1 } x = \frac { \pi } { 2 }

A) x=1x = 1
B) x=πx = \pi
C) x=1x = - 1
D) x=0x = 0
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53
Find the exact value of the expression.

- sin(tan12)\sin \left( \tan ^ { - 1 } 2 \right)

A) 522\frac { 5 \sqrt { 2 } } { 2 }
B) 255\frac { 2 \sqrt { 5 } } { 5 }
C) 252 \sqrt { 5 }
D) 525 \sqrt { 2 }
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54
Solve the problem.
Solve the problem.   orth orth
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55
Find the exact solution of the equation.

- 4tan1x=π- 4 \tan ^ { - 1 } x = \pi

A) x=0x = 0
B) x=π4x = \frac { \pi } { 4 }
C) x=1x = - 1
D) x=1x = 1
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56
Find the exact value of the expression.

- cos(sin114)\cos \left( \sin ^ { - 1 } \frac { 1 } { 4 } \right)

A) 21515\frac { 2 \sqrt { 15 } } { 15 }
B) 41515\frac { 4 \sqrt { 15 } } { 15 }
C) 154\frac { \sqrt { 15 } } { 4 }
D) 152\frac { \sqrt { 15 } } { 2 }
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57
Find the exact solution of the equation.

- sin1x=π6\sin ^ { - 1 } x = \frac { \pi } { 6 }

A) x=12x = - \frac { 1 } { 2 }
B) x=12x = \frac { 1 } { 2 }
C) x=0x = 0
D) x=1x = 1
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58
Find the exact value of the expression.

- cos[tan1(33)]\cos \left[ \tan ^ { - 1 } \left( \frac { \sqrt { 3 } } { 3 } \right) \right]

A) π3\frac { \pi } { 3 }
B) 12\frac { 1 } { 2 }
C) 33\frac { \sqrt { 3 } } { 3 }
D) 32\frac { \sqrt { 3 } } { 2 }
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59
Solve the problem.
Solve the problem.
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60
Find the exact value of the expression.

- cos(2sin114)\cos \left( 2 \sin ^ { - 1 } \frac { 1 } { 4 } \right)

A) 38\frac { 3 } { 8 }
B) 58\frac { 5 } { 8 }
C) 18\frac { 1 } { 8 }
D) 78\frac { 7 } { 8 }
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61
Find the exact value of the composition.

- sin(tan1(2))\sin \left( \tan ^ { - 1 } ( 2 ) \right)

A) 252 \sqrt { 5 }
B) 255\frac { 2 \sqrt { 5 } } { 5 }
C) 522\frac { 5 \sqrt { 2 } } { 2 }
D) 525 \sqrt { 2 }
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62
Find the exact value of the composition.

- cos(sin145)\cos \left( \sin ^ { - 1 } \frac { 4 } { 5 } \right)

A) 35- \frac { 3 } { 5 }
B) 15\frac { 1 } { 5 }
C) 45- \frac { 4 } { 5 }
D) 35\frac { 3 } { 5 }
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63
Find the exact value of the composition.

- sin(tan12)\sin \left( \tan ^ { - 1 } 2 \right)

A) 255\frac { 2 \sqrt { 5 } } { 5 }
B) 252 \sqrt { 5 }
C) 525 \sqrt { 2 }
D) 522\frac { 5 \sqrt { 2 } } { 2 }
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64
Use a calculator to find the value of the expression in radian measure rounded to two decimal places.

- cot1(57)\cot ^ { - 1 } \left( - \frac { 5 } { 7 } \right)

A) -35.54
B) -0.95
C) -54.46
D) -0.62
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65
Find the exact value of the expression.

- sec1(2)\sec ^ { - 1 } ( \sqrt { 2 } )

A) 3π4- \frac { 3 \pi } { 4 }
B) π4\frac { \pi } { 4 }
C) 3π4\frac { 3 \pi } { 4 }
D) π3\frac { \pi } { 3 }
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66
Write the trigonometric expression as an algebraic expression in u.

- sin(tan1u)\sin \left( \tan ^ { - 1 } u \right)

A) 1u2+1\frac { 1 } { \sqrt { u ^ { 2 } + 1 } }
B) uu2+1\mathrm { u } \sqrt { \mathrm { u } ^ { 2 } + 1 }
C) uu2+1\frac { \mathrm { u } } { \sqrt { \mathrm { u } ^ { 2 } + 1 } }
D) uu21\frac { \mathrm { u } } { \sqrt { \mathrm { u } ^ { 2 } - 1 } }
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67
Find the exact value of the expression.

- tan(sin122)\tan \left( \sin ^ { - 1 } \frac { \sqrt { 2 } } { 2 } \right)

A) 2
B) 22\frac { \sqrt { 2 } } { 2 }
C) 2\sqrt { 2 }
D) 1
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68
Find the exact value of the expression.

- cot1(1)\cot ^ { - 1 } ( - 1 )

A) 2π3\frac { 2 \pi } { 3 }
B) 3π4\frac { 3 \pi } { 4 }
C) π4\frac { \pi } { 4 }
D) π3\frac { \pi } { 3 }
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69
Use a calculator to find the value of the expression in radian measure rounded to two decimal places.

- sec1(73)\sec ^ { - 1 } \left( - \frac { 7 } { 3 } \right)

A) 2.01
B) -2.01
C) 0.50
D) 1.13
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70
Use a calculator to find the value of the expression in radian measure rounded to two decimal places.

- sec1(54)\sec ^ { - 1 } \left( - \frac { 5 } { 4 } \right)

A) 143.13
B) -0.93
C) 2.50
D) -53.13
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71
Find the exact value of the expression.

- tan1[tan(6π7)]\tan ^ { - 1 } \left[ \tan \left( \frac { 6 \pi } { 7 } \right) \right]

A) 6π7- \frac { 6 \pi } { 7 }
B) π7\frac { \pi } { 7 }
C) 6π7\frac { 6 \pi } { 7 }
D) π7- \frac { \pi } { 7 }
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72
Use a calculator to find the value of the expression in radian measure rounded to two decimal places.

- csc1(74)\csc ^ { - 1 } \left( - \frac { 7 } { 4 } \right)

A) 2.182.18
B) 124.85124.85
C) 0.61- 0.61
D) 34.85- 34.85
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73
Find the exact value of the composition.

- cos(sin1(14))\cos \left( \sin ^ { - 1 } \left( \frac { 1 } { 4 } \right) \right)

A) 152\frac { \sqrt { 15 } } { 2 }
B) 21515\frac { 2 \sqrt { 15 } } { 15 }
C) 154\frac { \sqrt { 15 } } { 4 }
D) 41515\frac { 4 \sqrt { 15 } } { 15 }
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74
Find the exact value of the expression.

- sec[sin1(32)]\sec \left[ \sin ^ { - 1 } \left( - \frac { \sqrt { 3 } } { 2 } \right) \right]

A) 0
B) 2
C) 22\frac { \sqrt { 2 } } { 2 }
D) 1
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75
Find the exact value of the expression.

- csc1(2)\csc ^ { - 1 } ( - 2 )

A) 2π3\frac { 2 \pi } { 3 }
B) π3\frac { \pi } { 3 }
C) π6- \frac { \pi } { 6 }
D) π6\frac { \pi } { 6 }
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76
Find the exact value of the composition.

- cos1(sin7π6)\cos ^ { - 1 } \left( \sin \frac { 7 \pi } { 6 } \right)

A) 2π3\frac { 2 \pi } { 3 }
B) 4π5\frac { 4 \pi } { 5 }
C) π6\frac { \pi } { 6 }
D) π3\frac { \pi } { 3 }
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77
Write the trigonometric expression as an algebraic expression in u.

- cos(tan1u)\cos \left( \tan ^ { - 1 } \mathrm { u } \right)

A) uu2+1\mathrm { u } \sqrt { \mathrm { u } ^ { 2 } + 1 }
B) uu2+1\frac { \mathrm { u } } { \sqrt { \mathrm { u } ^ { 2 } + 1 } }
C) 1u2+1\frac { 1 } { \sqrt { \mathrm { u } ^ { 2 } + 1 } }
D) 1u21\frac { 1 } { \sqrt { u ^ { 2 } - 1 } }
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78
Find the exact value of the expression.

- sec(tan133)\sec \left( \tan ^ { - 1 } \frac { \sqrt { 3 } } { 3 } \right)

A) 2
B) 233\frac { 2 \sqrt { 3 } } { 3 }
C) 12\frac { 1 } { 2 }
D) 3\sqrt { 3 }
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79
Write the trigonometric expression as an algebraic expression in u.

- cos(sin1u)\cos \left( \sin ^ { - 1 } u \right)

A) u2+1\sqrt { \mathrm { u } ^ { 2 } + 1 }
B) 1u2\sqrt { 1 - u ^ { 2 } }
C) u21\sqrt { \mathrm { u } ^ { 2 } - 1 }
D) u2+1u\frac { \sqrt { \mathrm { u } ^ { 2 } + 1 } } { \mathrm { u } }
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80
Find the exact value of the expression.

- sec1(2)\sec ^ { - 1 } ( - 2 )

A) 2π3\frac { 2 \pi } { 3 }
B) 2π3- \frac { 2 \pi } { 3 }
C) π3- \frac { \pi } { 3 }
D) 4π3\frac { 4 \pi } { 3 }
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