2 3 Polar axis The graph of the polar function r = = f(0) is given in the polar coordinate system. Which of the following defines f(0) for 0 ≤ 0 ≤ 2πT? A 3+ cos(30) B 3 cos(30) C 3+ sin(30) D 3 sin (30) Let r = f(0) be a polar function, where f(0) = 5. The graph of r = f(0) for 0 < 0 < парpears as a semicircle in the polar coordinate system. The graph of which of the following polar functions in the polar coordinate system is the same semicircle? A B C D r = g(0), where g(0) = -5 for 0 ≤ 0 ≤ πT r = h(0), where h(0) = 1/14 for 0 <0π r = k(0), where k(0) = -5 for π ≤ 0 ≤ 2π == r = m (0), where m(0) = ½ for π ≤ 0 ≤2πT 5

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter11: Topics From Analytic Geometry
Section: Chapter Questions
Problem 68RE
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Question
2
3
Polar
axis
The graph of the polar function r = = f(0) is
given in the polar coordinate system. Which of
the following defines f(0) for 0 ≤ 0 ≤ 2πT?
A 3+ cos(30)
B
3 cos(30)
C
3+ sin(30)
D
3 sin (30)
Transcribed Image Text:2 3 Polar axis The graph of the polar function r = = f(0) is given in the polar coordinate system. Which of the following defines f(0) for 0 ≤ 0 ≤ 2πT? A 3+ cos(30) B 3 cos(30) C 3+ sin(30) D 3 sin (30)
Let r = f(0) be a polar function, where
f(0) = 5. The graph of r = f(0) for
0 < 0 < парpears as a semicircle in the
polar coordinate system. The graph of which
of the following polar functions in the polar
coordinate system is the same semicircle?
A
B
C
D
r = g(0), where
g(0) = -5 for 0 ≤ 0 ≤ πT
r = h(0), where h(0) = 1/14
for 0 <0π
r = k(0), where
k(0) = -5 for π ≤ 0 ≤ 2π
==
r = m (0), where
m(0) = ½ for π ≤ 0 ≤2πT
5
Transcribed Image Text:Let r = f(0) be a polar function, where f(0) = 5. The graph of r = f(0) for 0 < 0 < парpears as a semicircle in the polar coordinate system. The graph of which of the following polar functions in the polar coordinate system is the same semicircle? A B C D r = g(0), where g(0) = -5 for 0 ≤ 0 ≤ πT r = h(0), where h(0) = 1/14 for 0 <0π r = k(0), where k(0) = -5 for π ≤ 0 ≤ 2π == r = m (0), where m(0) = ½ for π ≤ 0 ≤2πT 5
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