Table of contents
- 0. Review of College Algebra4h 43m
- 1. Measuring Angles39m
- 2. Trigonometric Functions on Right Triangles2h 5m
- 3. Unit Circle1h 19m
- 4. Graphing Trigonometric Functions1h 19m
- 5. Inverse Trigonometric Functions and Basic Trigonometric Equations1h 41m
- 6. Trigonometric Identities and More Equations2h 34m
- 7. Non-Right Triangles1h 38m
- 8. Vectors2h 25m
- 9. Polar Equations2h 5m
- 10. Parametric Equations1h 6m
- 11. Graphing Complex Numbers1h 7m
0. Review of College Algebra
Basics of Graphing
Problem 55
Textbook Question
Textbook QuestionIn the following exercises, (a) find the center-radius form of the equation of each circle described, and (b) graph it. See Examples 5 and 6. center (0, 4), radius 4
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Key Concepts
Here are the essential concepts you must grasp in order to answer the question correctly.
Center-Radius Form of a Circle
The center-radius form of a circle's equation is expressed as (x - h)² + (y - k)² = r², where (h, k) is the center of the circle and r is the radius. This format allows for easy identification of the circle's center and radius, facilitating both graphing and analysis.
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Introduction to the Unit Circle
Graphing a Circle
To graph a circle, one starts by plotting its center on the coordinate plane. From the center, the radius is used to mark points in all directions (up, down, left, right) to outline the circle. Connecting these points smoothly creates the circular shape, ensuring that all points are equidistant from the center.
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Introduction to the Unit Circle
Distance Formula
The distance formula, derived from the Pythagorean theorem, calculates the distance between two points in a plane. It is given by d = √((x₂ - x₁)² + (y₂ - y₁)²). This concept is essential for verifying that points on the graph maintain a constant distance (the radius) from the center of the circle.
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Quadratic Formula
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