(a) Identify the conic section that the polar equation represents. (b) Describe the location of the directrix from the focus located at the pole. 10 5+ 5 sin 0 ... (a) What type of conic section does the polar equation represent? Parabola Hyperbola Ellipse (b) Describe the location of the directrix from the focus located at the pole The directrix is 2 units above the pole, at y = 2. The directrix is 2 units to the right of the pole, at x= 2. The directrix is 2 units below the pole, at y = - 2. The directrix is 2 units to the left of the pole, at x = - 2.

Trigonometry (11th Edition)
11th Edition
ISBN:9780134217437
Author:Margaret L. Lial, John Hornsby, David I. Schneider, Callie Daniels
Publisher:Margaret L. Lial, John Hornsby, David I. Schneider, Callie Daniels
Chapter1: Trigonometric Functions
Section: Chapter Questions
Problem 1RE: 1. Give the measures of the complement and the supplement of an angle measuring 35°.
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(a) Identify the conic section that the polar equation represents.
(b) Describe the location of the directrix from the focus located at the pole.
10
5+5 sin 0
(a) What type of conic section does the polar equation represent?
Parabola
OHyperbola
O Ellipse
(b) Describe the location of the directrix from the focus located at the pole.
The directrix is 2 units above the pole, at y = 2
The directrix is 2 units to the right of the pole, at x= 2.
The directrix is 2 units below the pole, at y = - 2
The directrix is 2 units to the left of the pole, at x= - 2.
Transcribed Image Text:(a) Identify the conic section that the polar equation represents. (b) Describe the location of the directrix from the focus located at the pole. 10 5+5 sin 0 (a) What type of conic section does the polar equation represent? Parabola OHyperbola O Ellipse (b) Describe the location of the directrix from the focus located at the pole. The directrix is 2 units above the pole, at y = 2 The directrix is 2 units to the right of the pole, at x= 2. The directrix is 2 units below the pole, at y = - 2 The directrix is 2 units to the left of the pole, at x= - 2.
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