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Example 1 Sketching the Graph of a Linear Inequality



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Example 1 Sketching the Graph of a Linear Inequality
Sketch the graph of each linear inequality.





Solution

  1. The graph of the corresponding equation is a vertical line. The points that satisfy the inequality are those lying to the right of this line, as shown in Figure 1.1(a).

  2. The graph of the corresponding equation is a horizontal line. The points that satisfy the inequality are those lying below (or on) this line, as shown in Figure 1.1(b).


Figure 1.1
Example 2. Sketching the Graph of a Linear Inequality
Sketch the graph of .
Solution
The graph of the corresponding equation is a line, as shown below. The origin satisfies the inequality, so the graph consists of the half-plane lying above the line. (Check a point below the line to see that it does not satisfy the inequality.)

Figure 1.2.
For a linear inequality in two variables, you can sometimes simplify the graphing procedure by writing the inequality in slope-intercept form. For example, by writing in the form

you can see that the solution points lie above the line

Systems of Inequalities
Many practical problems in business, science, and engineering involve systems of linear inequalities. An example of such a system is shown below.

A solution of a system of inequalities in x and y is a point (x, y) that satisfies each inequality in the system. For example, is a solution of the above system because and satisfy each of the four inequalities in the system. The graph of a system of inequalities in two variables is the collection of all points that are solutions of the system. For example, the graph of the above system is the region shown in Figure 1.3. Note that the point lies in the shaded region because it is a solution of the system of inequalities.

Figure 1.3.
(2, 4) is a solution because it satisfies the system of inequalities.
To sketch the graph of a system of inequalities in two variables, first sketch the graph of each individual inequality (on the same coordinate system) and then find the region that is common to every graph in the system. This region represents the solution set of the system. For systems of linear inequalities, it is helpful to find the vertices of the solution region, as shown in Example 3

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