Solve each problem. (Source for Exercises 49 and 50: Parker, M., Editor, She Does Math, Mathematical Association of America.) Create a right triangle problem whose solution can be found by evaluating θ if sin θ = ¾.
2. Trigonometric Functions on Right Triangles
Trigonometric Functions on Right Triangles
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In Exercises 61–62, use the figures shown to find the bearing from O to A.
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Determine whether each statement is possible or impossible. See Example 4. cot θ = ―6
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Use identities to solve each of the following. Rationalize denominators when applicable. See Examples 5–7. Find csc θ , given that cot θ = ―1/2 and θ is in quadrant IV.
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Use identities to solve each of the following. Rationalize denominators when applicable. See Examples 5–7. Find cot θ , given that csc θ = ―1.45 and θ is in quadrant III.
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If θ is an acute angle and cos θ = 1/3, find csc (𝜋/2 - θ).
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Give all six trigonometric function values for each angle θ. Rationalize denominators when applicable. See Examples 5–7. tan θ = ―15/8 , and θ is in quadrant II .
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Give all six trigonometric function values for each angle θ. Rationalize denominators when applicable. See Examples 5–7.
sin θ = √5/7 , and θ is in quadrant I.
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Give all six trigonometric function values for each angle θ. Rationalize denominators when applicable. See Examples 5–7.
sin θ = √2/6 , and cos θ < 0
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Give all six trigonometric function values for each angle θ. Rationalize denominators when applicable. See Examples 5–7.
cos θ = 1
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Concept Check Suppose that 90° < θ < 180° . Find the sign of each function value. tan θ/2
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Concept Check Suppose that 90° < θ < 180° . Find the sign of each function value. cot (θ + 180°)
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Concept Check Suppose that ―90° < θ < 90° . Find the sign of each function value. sec θ/2
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Concept Check Suppose that ―90° < θ < 90° . Find the sign of each function value.
sec(―θ)
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Concept Check Suppose that ―90° < θ < 90° . Find the sign of each function value. cos(θ―180°)
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