Solve (x + 1)/(x − 2) < 0
Rational inequality, worked out line by line the way a teacher would write it.
Answer
| Solution | −1 < x < 2 |
| Interval notation | (−1, 2) |
Step-by-step solution
5 steps-
1 Given\frac{x + 1}{x - 2} < 0
Solve for x.
-
2 Critical points: where the expression is 0 or undefined
A polynomial or a fraction can only change sign where it equals 0 or where it is undefined. Between two neighbouring critical points the sign stays the same, so one test value decides each whole interval.
\text{zeros: } x = -1\qquad \text{undefined at: } x = 2The sign can only change at these points, so test one value in each interval between them.
-
3 Sign chart: the sign of each factor in each interval
Each row shows the sign of one factor in each interval, and the bottom row multiplies them: an even number of minus signs gives +, an odd number gives −.
\begin{array}{c|ccccc} & \left(-\infty,\, -1\right) & -1 & \left(-1,\, 2\right) & 2 & \left(2,\, \infty\right) \\ \hline x + 1 & - & 0 & + & + & + \\ \hline x - 2\;\scriptstyle(\text{denominator}) & - & - & - & 0 & + \\ \hline \text{whole} & + & 0 & - & \text{\,undef.} & + \end{array}Test values: x = -2, x = 0, x = 3.
-
4 Keep the intervals where the expression is negative
Keep the intervals whose sign matches the inequality: > 0 means positive, < 0 negative. With ≥ or ≤ the zeros count as well, but points where the expression is undefined never do.
-1 < x < 2The critical points are left out: there the expression is 0 or undefined, not negative.
-
5 Solution-1 < x < 2\qquad \left( -1, 2 \right)
Check with test values
| x | Left side | Right side | Holds? |
|---|---|---|---|
| 0 | −1/2 | 0 | ✓ true |
| −2 | 1/4 | 0 | ✗ false |
Change a number or try your own problem: the solver works it out the same way, with a graph and hint mode.