Exam 9: Applications of Trigonometry

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Find the given power. Write answer in rectangular form. - (1+i)20( 1 + i ) ^ { 20 }

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Use a table of values to graph the plane curve defined by the following parametric equations. Find a rectangular equation for the curve. - x=5tant,y=4sect, for t in [0,2π]x=5 \tan t, y=4 \sec t \text {, for } t \text { in }[0,2 \pi]  Use a table of values to graph the plane curve defined by the following parametric equations. Find a rectangular equation for the curve. - x=5 \tan t, y=4 \sec t \text {, for } t \text { in }[0,2 \pi]

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Find the given power. Write answer in rectangular form. - (1i)10( 1 - i ) ^ { 10 }

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Find the area of triangle ABC with the given parts. Round to the nearest tenth when necessary. -Tia is going to stain her triangular concrete patio. The patio is approximately 14 feet by 18 feet by 10 feet. If one can of stain covers 12ft212 \mathrm { ft } ^ { 2 } , how many cans of stain will she need?

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Find an equivalent equation in rectangular coordinates. - r=51+cosθr = \frac { 5 } { 1 + \cos \theta }

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Solve the problem. -A painter is going to apply a special coating to a triangular metal plate on a new building. Two sides measure are 10.0 m10.0 \mathrm {~m} and 7.1 m7.1 \mathrm {~m} . She knows that the angle between these sides is 37.237.2 ^ { \circ } . What is the area of the surface she plans to cover with the coating? Round to the nearest square meter.

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Find the indicated vector. -Let u=5,3\mathbf { u } = \langle 5,3 \rangle . Find 2u- 2 \mathbf { u } .

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Find the given power. Write answer in rectangular form. - (i)11( - \mathrm { i } ) ^ { 11 }

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Find the missing parts of the triangle. - B=15. b=16.58 a=30.83 If necessary, round angles to the nearest tenth and side lengths to the nearest hundredth.

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Perform the indicated operation. Give answers in rectangular form expressing real and imaginary parts to four decimal places. - 60(cos150+isin150)10(cos39+isin39)\frac { 60 \left( \cos 150 ^ { \circ } + \mathrm { i } \sin 150 ^ { \circ } \right) } { 10 \left( \cos 39 ^ { \circ } + \mathrm { i } \sin 39 ^ { \circ } \right) }

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Find an equivalent equation in rectangular coordinates. - r=10sinθr = 10 \sin \theta

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Find the quotient and write in rectangular form. First convert the numerator and denominator to trigonometric form. - 20(cos45+isin45)5(cos135+isin135)\frac { 20 \left( \cos 45 ^ { \circ } + i \sin 45 ^ { \circ } \right) } { 5 \left( \cos 135 ^ { \circ } + i \sin 135 ^ { \circ } \right) }

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Graph the complex number. - 252i52 \sqrt { 5 } - 2 \mathrm { i } \sqrt { 5 }  Graph the complex number. - 2 \sqrt { 5 } - 2 \mathrm { i } \sqrt { 5 }

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Find the area of triangle ABC with the given parts. Round to the nearest tenth when necessary. - a=18.6 b=17.2 c=15.0

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Determine whether the pair of vectors is orthogonal. - 6,3,23,12\langle - 6 , \sqrt { 3 } \rangle , \langle - 2 \sqrt { 3 } , - 12 \rangle

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Find an equivalent equation in rectangular coordinates. - rsinθ=10\mathrm { r } \sin \theta = 10

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Find the indicated vector. -Let u=3,4,v=1,5\mathbf { u } = \langle 3,4 \rangle , \mathbf { v } = \langle - 1 , - 5 \rangle . Find u+v\mathbf { u } + \mathbf { v } .

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Draw a sketch to represent the vector. Refer to the vectors pictured here.  Draw a sketch to represent the vector. Refer to the vectors pictured here.   - \frac { 1 } { 2 } \mathbf { a } - 12a\frac { 1 } { 2 } \mathbf { a }

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Determine whether the pair of vectors is orthogonal. -8, -2 , -3, 5

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Find the indicated angle or side. Give an exact answer. -Find the exact length of side a. Find the indicated angle or side. Give an exact answer. -Find the exact length of side a.

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