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natima [27]
3 years ago
5

1. A hammock is suspended between two trees. The curve the hammock makes can be modelled by the equation, y = 0.2x2 – 0.4x – 0.6

, where x and y are measured in meters. (Application)
a. What do the x-intercepts tell you?

b. Does the y-intercept have any meaning in this situation.
Mathematics
1 answer:
Rina8888 [55]3 years ago
8 0

Answer:

Step-by-step explanation:

Given that:

The modeled equation y = 0.2x² - 0.4x - 0.6

To find x- intercepts

y = 0.2x² - 0.4x - 0.6

y = 0.2(x² - 2x - 3)

y = 0.2(x - 3)(x + 1)

Suppose the upward parabola cuts x axis at x = 3 and x = - 1

Then, the length of the intercepts will be = 3 -(-1)

=4

We can say that the trees will be 4 unit apart.

To find y-intercepts;

y = 0.2(0)² - 0.4(0) -0.6

y = -0.6 meters

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3 years ago
Nita finds that the expression (a + 1) 2 is sometimes, but
kenny6666 [7]

I guess the expressions are supposed to be (<em>a</em> + 1)² and (<em>a</em> + 1)³.

Consider the inequality,

(<em>a</em> + 1)² > (<em>a</em> + 1)³

Move everything to one side:

(<em>a</em> + 1)² - (<em>a</em> + 1)³ > 0

Factorize the left side:

(<em>a</em> + 1)² (1 - (<em>a</em> + 1)) > 0

-<em>a</em> (<em>a</em> + 1)² > 0

<em>a</em> (<em>a</em> + 1)² < 0

Notice that the left side is exactly 0 if either <em>a</em> = 0 or <em>a</em> = -1.

Now consider the following 3 cases:

• If <em>a</em> < -1, then <em>a</em> is negative, while (<em>a</em> + 1)² is always non-negative, which means <em>a</em> (<em>a</em> + 1)² will always be negative.

• If -1 < <em>a</em> < 0, then again <em>a</em> is negative, so <em>a</em> (<em>a</em> + 1)² is also negative.

• If <em>a</em> > 0, then <em>a</em> (<em>a</em> + 1)² is always positive.

So the inequality is satisfied for all <em>a</em> in the interval (-∞, -1) ∪ (-1, 0). This is to say that (<em>a</em> + 1)² is always greater than (<em>a</em> + 1)³ if <em>a</em> is chosen from this domain.

Another way to look at this: assume <em>a</em> + 1 falls between -1 and 1. Whenever you scale a number between -1 and 1 by another number in the same range, the product will always be smaller than the original number.

More concretely, let's say <em>a</em> + 1 = 1/2. So for instance, 1/2 * 1/2 = (1/2)² = 1/4, and 1/4 is clearly smaller than 1/2. If we multipy again by 1/2, we get 1/2 * 1/2 * 1/2 = (1/2)³ = 1/8, which is smaller than 1/4.

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The answer to this is -11/12
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