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stepan [7]
3 years ago
10

Suppose f(x)=x^3. find the graph of f(x-4)

Mathematics
1 answer:
Novay_Z [31]3 years ago
3 0
F(x)=x^3 is the cubing function.  Its graph begins (originates) in Q III, goes thru the origin (0,0), and continues to grow as it travels through Q I.  Draw it.

The <span>graph of f(x-4) has exactly the same shape.  The only difference here is that the graph of f(x) = x^3 has been moved 4 units to the right, so that its horiz. intercept is (4,0).</span>
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What do balloon mortgage and ARM have in common?
VladimirAG [237]

Answer:

In other respects, a balloon mortgage resembles an adjustable rate mortgage (ARM) with an initial rate period equal to the balloon period. A 7-year balloon, for example, is usually compared to a 7-year ARM. Both have a fixed-rate for 7 years, after which the rate will be adjusted.

Step-by-step explanation:

5 0
3 years ago
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Identify the general solution for x in this equation.<br><br> 4 - ax = 2
VLD [36.1K]

Answer:

x = \frac{2}{a}

Step-by-step explanation:

given

4 - ax = 2 ( isolate the term in x by subtracting 4 from both sides )

- ax = 2 - 4 = - 2 ( divide both sides by - a )

x = \frac{-2}{-a} = \frac{2}{a}

6 0
3 years ago
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In Melanie's Styling Salon, the time to complete a simple haircut is normally distributed with a mean of 25 minutes and a standa
qaws [65]

Answer:

z=0.674

And if we solve for a we got

a=25 +0.674*4=27.7

So the value of height that separates the bottom 75% of data from the top 25% is 27.7 minutes.  

Step-by-step explanation:

Previous concepts

Normal distribution, is a "probability distribution that is symmetric about the mean, showing that data near the mean are more frequent in occurrence than data far from the mean".

The Z-score is "a numerical measurement used in statistics of a value's relationship to the mean (average) of a group of values, measured in terms of standard deviations from the mean".  

Solution to the problem

Let X the random variable that represent the time to complete a simple haircut of a population, and for this case we know the distribution for X is given by:

X \sim N(25,4)  

Where \mu=25 and \sigma=4

We are interested in the slowest quartile or the first quartile

For this part we want to find a value a, such that we satisfy this condition:

P(X>a)=0.25   (a)

P(X   (b)

Both conditions are equivalent on this case. We can use the z score again in order to find the value a.  

As we can see on the figure attached the z value that satisfy the condition with 0.75 of the area on the left and 0.25 of the area on the right it's z=0.674. On this case P(Z<0.674)=0.75 and P(z>0.674)=0.25

If we use condition (b) from previous we have this:

P(X  

P(z

But we know which value of z satisfy the previous equation so then we can do this:

z=0.674

And if we solve for a we got

a=25 +0.674*4=27.7

So the value of height that separates the bottom 75% of data from the top 25% is 27.7 minutes.  

7 0
4 years ago
392512329 in word form
kramer
Three hundred ninety two million five hundred twelve thousand three hundred twenty nine
3 0
3 years ago
Read 2 more answers
Please help, will give extra points​
adelina 88 [10]

Answer:x=31

angle AOC = 124

angle BOC = 56

Step-by-step explanation:

We first need to solve for x to solve the rest. We would normally solve for x by setting 2 equations equal to each other, in this case however, we know that the two angles are adjacent and in total add up to 180. Therefore we combine like terms of both angles, and set them equal to 180.

So, we do

3x+31+2x-6=180      We will combine like terms

5x+25=180      Now we will do inverse operations

5x=155

x=31

We plug x into angle AOC to solve for it

3(31)+31= 124

180-124=56 or angle BOC because the whole angle is 180, and if we subtract 124 from 180 we get the remainder which is angle BOC

Or if you want,

2(31)-6=56

5 0
3 years ago
Read 2 more answers
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