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Fed [463]
3 years ago
7

Consider the function below. f(x) = x2 + 5 − x (a) Find the vertical asymptote(s). (Enter your answers as a comma-separated list

. If an answer does not exist, enter DNE.) x = Find the horizontal asymptote(s). (Enter your answers as a comma-separated list. If an answer does not exist, enter DNE.) y = (b) Find the interval where the function is decreasing. (Enter your answer in interval notation.) (c) Find the interval where the function is concave up. (Enter your answer in interval notation.) (d) Use this information to sketch the graph of f. (Do this on paper. Your instructor may ask you to turn in this graph.)

Mathematics
1 answer:
vichka [17]3 years ago
8 0

Answer:

a) DNE

b) Decreasing(-∞, 0.5) and Increasing (0.5, ∞)

c) (-∞, ∞)

d) See attached picture.

Step-by-step explanation:

The function x² + 5 - x is a quadratic function. Its graph is a parabola or a U-shaped function. Quadratic functions do not have asymptotic behavior. There are no vertical or horizontal asymptotes. According to its graph attached below, the function starts by decreasing from negative infinity to 0.5. At the vertex it changes to increasing from 0.5 to infinity. This is written as (-∞, 0.5) and (0.5, ∞). It is concave up over its entire graph.

a) DNE

b) Decreasing(-∞, 0.5) and Increasing (0.5, ∞)

c) (-∞, ∞)

d) See attached picture.

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Can someone help idk if this is right
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Answer:

a_n=-3 \cdot a_{n-1}

a_1=2

You gave the explicit form.

Step-by-step explanation:

You gave the explicit form.

The recursive form is giving you a term in terms of previous terms of the sequence.

So the recursive form of a geometric sequence is a_n=r \cdot a_{n-1} and they also give a term of the sequence; like first term is such and such number. All this says is to get a term in the sequence you just multiply previous term by the common ratio.

r is the common ratio and can found by choosing a term and dividing by the term that is right before it.

So here r=-3 since all of these say that it does:

-54/18

18/-6

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If these quotients didn't match, then it wouldn't be geometric.

Anyways the recursive form for this geometric sequence is

a_n=-3 \cdot a_{n-1}

a_1=2

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