Exam 6: Analytic Trigonometry

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Express the product as a sum containing only sines or cosines. - cos(2θ)cos(4θ)\cos ( 2 \theta ) \cos ( 4 \theta )

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A

Solve the problem. -Find sinθ\sin \theta , given that cos2θ=14\cos 2 \theta = \frac { 1 } { 4 } and 0<θ<π20 < \theta < \frac { \pi } { 2 } .

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Write the trigonometric expression as an algebraic expression containing u and v. - sin(tan1u+tan1v)\sin \left( \tan ^ { - 1 } u + \tan ^ { - 1 } v \right)

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C

Write the trigonometric expression as an algebraic expression containing u and v. - cos(tan1u+tan1v)\cos \left( \tan ^ { - 1 } \mathrm { u } + \tan ^ { - 1 } \mathrm { v } \right)

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Write the trigonometric expression as an algebraic expression containing u and v. - cos(sin1u+cos1v)\cos \left( \sin ^ { - 1 } u + \cos ^ { - 1 } \mathrm { v } \right)

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Solve the equation. Give a general formula for all the solutions. - sinθ=32\sin \theta = \frac { \sqrt { 3 } } { 2 }

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Find the exact value of the expression. - cos(tan1512cos145)\cos \left( \tan ^ { - 1 } \frac { 5 } { 12 } - \cos ^ { - 1 } \frac { 4 } { 5 } \right)

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Find the exact value of the expression. - sin1[sin(6π7)]\sin ^ { - 1 } \left[ \sin \left( \frac { 6 \pi } { 7 } \right) \right]

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Express the sum or difference as a product of sines and/or cosines. - sin(8θ)sin(4θ)\sin ( 8 \theta ) - \sin ( 4 \theta )

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Express the product as a sum containing only sines or cosines. - cos11θ2cosθ2\cos \frac { 11 \theta } { 2 } \cos \frac { \theta } { 2 }

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Use a calculator to solve the equation on the interval 0 0θ<2π0 \leq \theta < 2 \pi . Round the answer to two decimal places. - tanθ=4.0\tan \theta = 4.0

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Establish the identity. - sinx+cosxsinxcosx=1+2sinxcosx2sin2x1\frac { \sin x + \cos x } { \sin x - \cos x } = \frac { 1 + 2 \sin x \cos x } { 2 \sin ^ { 2 } x - 1 }

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Establish the identity. - sinxcscx1+sinxcscx+1=2tan2x\frac { \sin x } { \csc x - 1 } + \frac { \sin x } { \csc x + 1 } = 2 \tan ^ { 2 } x

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Complete the identity. - csc(2θ)+cot(2θ)=\csc ( 2 \theta ) + \cot ( 2 \theta ) = ?

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Find the exact value of the expression. - sec1(2)\sec ^ { - 1 } ( - 2 )

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Express the sum or difference as a product of sines and/or cosines. - sin7θ2+sin3θ2\sin \frac { 7 \theta } { 2 } + \sin \frac { 3 \theta } { 2 }

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Write the trigonometric expression as an algebraic expression in u. - tan(sin1u)\tan \left( \sin ^ { - 1 } \mathrm { u } \right)

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Use the Half-angle Formulas to find the exact value of the trigonometric function. - cos165\cos 165 ^ { \circ }

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Write the trigonometric expression as an algebraic expression in u. - csc(tan1u)\csc \left( \tan ^ { - 1 } \mathrm { u } \right)

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Find the exact value of the composition. - cos(sin145)\cos \left( \sin ^ { - 1 } \frac { 4 } { 5 } \right)

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