1 2 3 4 Identify the coordinates of the point in polar form based upon the given conditions. Use pi for π. r> 0 and 0 <0 < 2π r<0 and 0 <0 < 2π ) )

Calculus: Early Transcendentals
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Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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The image shows a polar coordinate graph with several concentric circles and radial lines. The circles are labeled with increasing radial distances—1, 2, 3, and 4—indicating the radius in polar coordinates. A red point is plotted in the first quadrant at a radius of 2 and an angle of \( \frac{\pi}{3} \) (approximately)(the angle is based on the visual position, actual exact angle wasn't given in this text but is estimated for explanation).

### Instructions:

Identify the coordinates of the point in polar form based upon the given conditions. Use pi for \( \pi \).

1. For \( r > 0 \) and \( 0 < \theta < 2\pi \):
   - Identify the polar coordinate as \( ( \_\_\_\_ , \_\_\_\_ ) \).

2. For \( r < 0 \) and \( 0 < \theta < 2\pi \):
   - Identify the polar coordinate as \( ( \_\_\_\_ , \_\_\_\_ ) \).
Transcribed Image Text:The image shows a polar coordinate graph with several concentric circles and radial lines. The circles are labeled with increasing radial distances—1, 2, 3, and 4—indicating the radius in polar coordinates. A red point is plotted in the first quadrant at a radius of 2 and an angle of \( \frac{\pi}{3} \) (approximately)(the angle is based on the visual position, actual exact angle wasn't given in this text but is estimated for explanation). ### Instructions: Identify the coordinates of the point in polar form based upon the given conditions. Use pi for \( \pi \). 1. For \( r > 0 \) and \( 0 < \theta < 2\pi \): - Identify the polar coordinate as \( ( \_\_\_\_ , \_\_\_\_ ) \). 2. For \( r < 0 \) and \( 0 < \theta < 2\pi \): - Identify the polar coordinate as \( ( \_\_\_\_ , \_\_\_\_ ) \).
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