Draw the graph of the equation g(x) = -3x + 2. You can refer to the section "Drawing Graphs in Mobius" in the unit "Introduction to Mobius" for practice in drawing graphs of lines in Mobius. Part a: Find one point on the line. Often it's smart to start with the value = 0 because multiplying by and adding 0 are easy. In other words, find the y-intercept. The point (0, Number ) is on the line g(x) = -3x + 2. Part b: Find a second point on the line. Often it's easier to continue with the value = 1 as multiplying by and adding I are pretty easy. The point (1 Number ) is on the line g(x) = -3x + 2.

Glencoe Algebra 1, Student Edition, 9780079039897, 0079039898, 2018
18th Edition
ISBN:9780079039897
Author:Carter
Publisher:Carter
Chapter9: Quadratic Functions And Equations
Section9.8: Analyzing Functions With Successive Differences
Problem 31HP
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Draw the graph of the equation
g(x) = -3x+2.
You can refer to the section "Drawing Graphs in Mobius" in the unit "Introduction to Mobius" for
practice in drawing graphs of lines in Mobius.
Part a: Find one point on the line. Often it's smart to start with the value = 0 because multiplying by
and adding 0 are easy. In other words, find the y-intercept.
The point (0, Number
) is on the line g(x) = -3x + 2.
Part b: Find a second point on the line. Often it's easier to continue with the value = 1 as multiplying
by and adding I are pretty easy.
The point (1, Number
) is on the line g(x) = -3x + 2.
Transcribed Image Text:Draw the graph of the equation g(x) = -3x+2. You can refer to the section "Drawing Graphs in Mobius" in the unit "Introduction to Mobius" for practice in drawing graphs of lines in Mobius. Part a: Find one point on the line. Often it's smart to start with the value = 0 because multiplying by and adding 0 are easy. In other words, find the y-intercept. The point (0, Number ) is on the line g(x) = -3x + 2. Part b: Find a second point on the line. Often it's easier to continue with the value = 1 as multiplying by and adding I are pretty easy. The point (1, Number ) is on the line g(x) = -3x + 2.
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