- (a)
- Find any vertical asymptotes, these are points where goes to infinity as goes to (from the right, left, or both).
- (b)
- Find the critical points (the points where or is undefined).
- (c)
- Identify inflection points and concavity.
- (d)
- Determine an interval that shows all relevant behavior.
- (e)
- Find the candidates for inflection points, the points where or is undefined.
- (f)
- Compute and .
- (g)
- Find the -intercept, this is the point . Place this point on your graph.
- (h)
- Use either the first or second derivative test to identify local extrema and/or find the intervals where your function is increasing/decreasing.
- (i)
- If possible, find the -intercepts, the points where . Place these points on your graph.
- (j)
- Analyze end behavior: as , what happens to the graph of ? Does it have horizontal asymptotes, increase or decrease without bound, or have some other kind of behavior?
In what order should we take these steps? For example, one must compute before computing . Also, one must compute before finding the critical points. There is more than one correct answer.
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- (a)
- Compute and .
- (b)
- Find the -intercept, this is the point . Place this point on your graph.
- (c)
- Find any vertical asymptotes, these are points where goes to infinity as goes to (from the right, left, or both).
- (d)
- If possible, find the -intercepts, the points where . Place these points on your graph.
- (e)
- Analyze end behavior: as , what happens to the graph of ? Does it have horizontal asymptotes, increase or decrease without bound, or have some other kind of behavior?.
- (f)
- Find the critical points (the points where or is undefined).
- (g)
- Use either the first or second derivative test to identify local extrema and/or find the intervals where your function is increasing/decreasing.
- (h)
- Find the candidates for inflection points, the points where or is undefined.
- (i)
- Identify inflection points and concavity.
- (j)
- Determine an interval that shows all relevant behavior