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Sindrei [870]
4 years ago
13

One more please help me please will you bring me a storm whatever you want just please help me thank you so so much

Mathematics
1 answer:
11111nata11111 [884]4 years ago
4 0

Answer:

both y --> -∞

Step-by-step explanation:

1. x--> -∞

=> x-1 --> -∞

=> |x-1| --> ∞

=> - |x-1| --> -∞

=> y --> -∞

2. x --> ∞

=> x-1 --> ∞

=> |x-1| --> ∞

=> -|x-1| --> -∞

=> y --> -∞

You might be interested in
Kip bought one and four-sixths pounds of toffee. He gave five-sixths of a pound to his friend. How much toffee does Kip have lef
Mrrafil [7]

Kip starts with 1 4/6 lbs of toffee. First we need to convert this to an improper fraction, the improper fraction is 10/6

Now subtract 5/6 from 10/6,

10/6 - 5/6 = 5/6

Kip has 5/6 lbs of toffee left. He gave half of what he originally had to his friend.

Hope that helps ya!

7 0
4 years ago
When played, the middle C key on a piano has a frequency of 262 cycles per second.
IgorC [24]

Answer:

\displaystyle y = \frac{1}{2}sin\:524\pi{x}

Step-by-step explanation:

\displaystyle \boxed{y = \frac{1}{2}cos\:(524\pi{x} - \frac{\pi}{2})} \\ \\ y = Acos(Bx - C) + D \\ \\ Vertical\:Shift \hookrightarrow D \\ Horisontal\:[Phase]\:Shift \hookrightarrow \frac{C}{B} \\ Wavelength\:[Period] \hookrightarrow \frac{2}{B}\pi \\ Amplitude \hookrightarrow |A| \\ \\ Vertical\:Shift \hookrightarrow 0 \\ Horisontal\:[Phase]\:Shift \hookrightarrow \frac{C}{B} \hookrightarrow \boxed{\frac{1}{1048}} \hookrightarrow \frac{\frac{\pi}{2}}{524\pi} \\ Wavelength\:[Period] \hookrightarrow \frac{2}{B}\pi \hookrightarrow \boxed{\frac{1}{262}} \hookrightarrow \frac{2}{524\pi}\pi \\ Amplitude \hookrightarrow \frac{1}{2}

<em>OR</em>

\displaystyle y = Asin(Bx - C) + D \\ \\ Vertical\:Shift \hookrightarrow D \\ Horisontal\:[Phase]\:Shift \hookrightarrow \frac{C}{B} \\ Wavelength\:[Period] \hookrightarrow \frac{2}{B}\pi \\ Amplitude \hookrightarrow |A| \\ \\ Vertical\:Shift \hookrightarrow 0 \\ Horisontal\:[Phase]\:Shift \hookrightarrow 0 \\ Wavelength\:[Period] \hookrightarrow \frac{2}{B}\pi \hookrightarrow \boxed{\frac{1}{262}} \hookrightarrow \frac{2}{524\pi}\pi \\ Amplitude \hookrightarrow \frac{1}{2}

You will need the above information to help you interpret the graph. First off, keep in mind that although the exercise told you to write the sine equation based on the speculations it gave you, if you plan on writing your equation as a function of <em>cosine</em>, then there WILL be a horisontal shift, meaning that a C-term will be involved. As you can see, the photograph on the right displays the trigonometric graph of \displaystyle y = \frac{1}{2}cos\:524\pi{x},in which you need to replase "sine" with "cosine", then figure out the appropriate C-term that will make the graph horisontally shift and map onto the <em>sine</em> graph [photograph on the left], accourding to the <u>horisontal shift formula</u> above. Also keep in mind that the −C gives you the OPPOCITE TERMS OF WHAT THEY <em>REALLY</em> ARE, so you must be careful with your calculations. So, between the two photographs, we can tell that the <em>cosine</em> graph [photograph on the right] is shifted \displaystyle \frac{1}{1048}\:unitto the left, which means that in order to match the <em>sine</em> graph [photograph on the left], we need to shift the graph FORWARD \displaystyle \frac{1}{1048}\:unit,which means the C-term will be positive, and by perfourming your calculations, you will arrive at \displaystyle \boxed{\frac{1}{1048}} = \frac{\frac{\pi}{2}}{524\pi}.So, the cosine graph of the sine graph, accourding to the horisontal shift, is \displaystyle y = \frac{1}{2}cos\:(524\pi{x} - \frac{\pi}{2}).Now, with all that being said, in this case, sinse you ONLY have the exercise to wourk with, take a look at the above information next to \displaystyle Wavelength\:[Period].It displays the formula on how to define each wavelength of the graph. You just need to remember that the B-term has \displaystyle \piin it as well, meaning both of them strike each other out, leaving you with just a fraction. Now, the amplitude is obvious to figure out because it is the A-term, so this is self-explanatory. The <em>midline</em> is the centre of your graph, also known as the vertical shift, which in this case the centre is at \displaystyle y = 0,in which each crest is extended <em>one-half unit</em> beyond the midline, hence, your amplitude. So, no matter what the vertical shift is, that will ALWAYS be the equation of the midline, and if viewed from a graph, no matter how far it shifts vertically, the midline will ALWAYS follow.

I am delighted to assist you at any time.

4 0
3 years ago
Given the two equations:
9966 [12]

Answer:

Step-by-step explanation:

I can draw graphs on the application

eq1)  is a line through y = 5 with a negative slope of -1    y = -x + 5

eq2) is a vertical line at x = 1/2  NO y intercept or slope  

       -2x = -1 --->  x = -1/-2    =  1/2

They intersect at    

       y = -x + 5      and x = 1/2      Substitute x=1/2 into

       y = -1/2 + 5

       y = 4.5

intersect at  (1/2, 4.5)

       

6 0
3 years ago
Complete the calculation.<br> 1,192<br> X 8
Alex17521 [72]

Answer: 9,536 = 1,192 x 8

Step-by-step explanation: 1,192

                                            x     8

                                       ——————-

                                          9,536

8 0
3 years ago
(Choice A)
Tasya [4]

Answer:

That is an obtuse scalene triangle

Step-by-step explanation:

Scalene- has no congruent sides

Obtuse - has an angle that is greater than 90

we can use Pythagorean theorem to confirm this

The Pythagorean theorem states that in an obtuse triangle the hypotenuse squared is greater than the two legs squared added together

so basically 7^2>4^2+5^2\\7^2=49\\4^2=25\\5^2=25\\25+16=41\\49>41

therefore it is an obtuse scalene

3 0
3 years ago
Read 2 more answers
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