Exam 6: Analytic Trigonometry

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Use the figure to find the exact value of the trigonometric function. ​ sin(2θ)\sin ( 2 \theta ) Use the figure to find the exact value of the trigonometric function. ​  \sin ( 2 \theta )  ​   ​  a = 1  ,  b = 8  ​ a=1a = 1 , b=8b = 8

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1665\frac { 16 } { 65 }

Use the product-to-sum formulas to rewrite the product as a sum or difference. ​ sin(π5)cos(π10)\sin \left( \frac { \pi } { 5 } \right) \cos \left( \frac { \pi } { 10 } \right)

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12(sin(3π10)+sin(π10))\frac { 1 } { 2 } \left( \sin \left( \frac { 3 \pi } { 10 } \right) + \sin \left( \frac { \pi } { 10 } \right) \right)

Use the cofunction identities to evaluate the expression without using a calculator. ​ sin240+sin250\sin ^ { 2 } 40 ^ { \circ } + \sin ^ { 2 } 50 ^ { \circ }

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Find the exact value of the given expression. ​ sin(π33π4)\sin \left( \frac { \pi } { 3 } - \frac { 3 \pi } { 4 } \right)

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Use inverse functions where needed to find all solutions of the equation in the interval [0,2π)[ 0,2 \pi ) . ​ sec2x5secx=0\sec ^ { 2 } x - 5 \sec x = 0

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Evaluate the following expression. ​ cot2t(4sec2t4)\cot ^ { 2 } t \left( 4 \sec ^ { 2 } t - 4 \right)

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Use the sum-to-product formulas to rewrite the sum or difference as a product. ​ sin(7θ)+sin(5θ)\sin ( 7 \theta ) + \sin ( 5 \theta )

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Find the expression as the sine or cosine of an angle. ​ cos100cos50sin100sin50\cos 100 ^ { \circ } \cos 50 ^ { \circ } - \sin 100 ^ { \circ } \sin 50 ^ { \circ }

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Convert the expression. ​ tan(u2)\tan \left( \frac { u } { 2 } \right)

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Use the product-to-sum formulas to rewrite the product as a sum or difference. ​ 10cos55cos2510 \cos 55 ^ { \circ } \cos 25 ^ { \circ }

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Convert the expression. ​ cos(10α)\cos ( 10 \alpha )

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Use the Quadratic Formula to solve the given equation on the interval [0,π2)\left[ 0 , \frac { \pi } { 2 } \right) ; then use a graphing utility to approximate the angle x. Round answers to three decimal places. ​ 18tan2x13tanx+2=018 \tan ^ { 2 } x - 13 \tan x + 2 = 0

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Simplify the expression algebraically. ​ cos(2x+4y)cos(2x4y)\cos ( 2 x + 4 y ) \cos ( 2 x - 4 y )

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Find the exact value of sec[sin1(817)]\sec \left[ \sin ^ { - 1 } \left( \frac { 8 } { 17 } \right) \right] .

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Evaluate the following expression. ( xπnx \neq \pi n , where n is a whole number) ​ 8csc(3x)sec(3x)\frac { 8 \csc ( - 3 x ) } { \sec ( - 3 x ) }

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