Graph the following relation. Use the graph to identify the domain and range. y = 6x + 2 Use the graphing tool to graph the equation. w an example Click to enlarge graph Textbook -10 -8 6 Clear all -4 -2 10 8 4 2 4 --8- 6- -2- -6- Ay

Algebra and Trigonometry (6th Edition)
6th Edition
ISBN:9780134463216
Author:Robert F. Blitzer
Publisher:Robert F. Blitzer
ChapterP: Prerequisites: Fundamental Concepts Of Algebra
Section: Chapter Questions
Problem 1MCCP: In Exercises 1-25, simplify the given expression or perform the indicated operation (and simplify,...
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**Graph the Following Relation**

Use the graph to identify the domain and range.

**Equation:**  
\[ y = 6x + 2 \]

**Instructions:**  
Use the graphing tool to plot the equation. You can click on "Click to enlarge graph" to access a larger version of the graphing interface.

**Graph Details:**  
The graph provided is a standard Cartesian coordinate system with both x-axis and y-axis spanning from -10 to 10. The grid lines are clearly marked at each integer interval for both axes, aiding in precise plotting.

To plot the equation \( y = 6x + 2 \):
- Start by identifying the y-intercept (0, 2).
- Use the slope, which is 6 (rise over run), to plot additional points.
  
The domain and range of this linear function are both all real numbers, as a line extends infinitely in both directions on the graph.
Transcribed Image Text:**Graph the Following Relation** Use the graph to identify the domain and range. **Equation:** \[ y = 6x + 2 \] **Instructions:** Use the graphing tool to plot the equation. You can click on "Click to enlarge graph" to access a larger version of the graphing interface. **Graph Details:** The graph provided is a standard Cartesian coordinate system with both x-axis and y-axis spanning from -10 to 10. The grid lines are clearly marked at each integer interval for both axes, aiding in precise plotting. To plot the equation \( y = 6x + 2 \): - Start by identifying the y-intercept (0, 2). - Use the slope, which is 6 (rise over run), to plot additional points. The domain and range of this linear function are both all real numbers, as a line extends infinitely in both directions on the graph.
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