Solve the inequality LaTeX:  \displaystyle \frac{2}{x^{2} - 1}<\frac{9}{x^{2} - 3 x + 2}

Getting zero on one side and factoring gives LaTeX:  \displaystyle \frac{2}{\left(x - 1\right) \left(x + 1\right)} - \frac{9}{\left(x - 2\right) \left(x - 1\right)}< 0 . This gives the least common denominator as LaTeX:  \displaystyle \left(x - 2\right) \left(x - 1\right) \left(x + 1\right) . Building each fraction to get the common denominator gives LaTeX:  \displaystyle \frac{2 x - 4 - (9 x + 9)}{\left(x - 2\right) \left(x - 1\right) \left(x + 1\right)} < 0 . Simplifying gives LaTeX:  \displaystyle \frac{- 7 x - 13}{\left(x - 2\right) \left(x - 1\right) \left(x + 1\right)}<0 . The inequality can change signs at the zeros of the numerator, LaTeX:  \displaystyle \left\{- \frac{13}{7}\right\} , or the zeros of the denominator LaTeX:  \displaystyle \left\{-1, 1, 2\right\} . Making a sign chart gives: This gives the solution LaTeX:  \displaystyle \left(-\infty, - \frac{13}{7}\right) \cup \left(-1, 1\right) \cup \left(2, \infty\right)