Find the domain and range of the following graph (write your answer using interval notation).
Table of contents
- 0. Review of College Algebra4h 45m
- 1. Measuring Angles40m
- 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
Functions
Problem 17
Textbook Question
Determine whether each relation defines a function. See Example 1. x y 3 -4 7 -4 10 -4
Verified step by step guidance1
Understand the definition of a function: A relation is a function if every input (x-value) corresponds to exactly one output (y-value).
Look at the given pairs: (3, -4), (7, -4), and (10, -4). Identify the x-values: 3, 7, and 10.
Check if any x-value repeats with a different y-value. Here, each x-value is unique and appears only once.
Since each x-value maps to exactly one y-value, the relation satisfies the definition of a function.
Conclude that the given relation defines a function because no x-value is associated with more than one y-value.
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Key Concepts
Here are the essential concepts you must grasp in order to answer the question correctly.
Definition of a Function
A function is a relation where each input (x-value) corresponds to exactly one output (y-value). This means no x-value can be paired with more than one y-value. Understanding this helps determine if a given set of ordered pairs represents a function.
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Relation vs. Function
A relation is any set of ordered pairs, while a function is a special type of relation with a unique output for each input. Identifying whether a relation is a function involves checking for repeated x-values with different y-values.
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Evaluating Ordered Pairs
To determine if a relation defines a function, examine each ordered pair's x-values. If any x-value repeats with a different y-value, the relation is not a function. In the given set, all x-values are distinct, indicating it is a function.
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