Graph the rational function $\displaystyle y = \frac{x^4}{x^2 - 2}$ and find all vertical asymptotes, $x$ and $y$ intercepts, and local extrema. Then use long division to find a polynomial that has the same end behavior that has the same end behavior as the rational function, and graph both functions in a sufficiently large viewing rectangle to verify that the end behaviors of the polynomial and the rational function are the same.
Based from the graph, the vertical asymptotes are the lines $x = \sqrt{2}$ and $x = - \sqrt{2}$. Also, the value of $x$ and $y$ intercept is . Then, the estimated local maximum occurs when $x$ is . On the other hand, the estimated value of the local minima of $8$ occurs when $x$ is approximately $2$.
Then, by using Long Division,
Thus, $\displaystyle y = \frac{x^4}{x^2 - 2} = x^2 + 2 + \frac{4}{x^2 - 2}$
Therefore, the polynomial $f(x) = x^2 + 2$ has the same end behavior with the given rational function. Then, their graph is
Saturday, June 3, 2017
College Algebra, Chapter 4, 4.6, Section 4.6, Problem 80
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