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Naddik [55]
3 years ago
7

What is the distance between (4.7) and (2, 2)?

Mathematics
1 answer:
I am Lyosha [343]3 years ago
7 0

Answer:

d=sqrt29

Step-by-step explanation:

This problem requires the distance formula, d = sqrt([x1 - x2]^2 + [y1-y2])

x1 and y1 are the x and y coordinates of the first point, and x2 and y2 the second.

Plug in the values.

d = sqrt([4 - 2]^2 + [7-2]^2)

Simplify

d=sqrt(2^2 + 5^2)

d = sqrt(4 + 25)

d=sqrt29

If you'd like a visual representation of the distance formula, google it and it will show you.

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Use Newton’s Method to find a solution of the equation e 6x+ 3(ln 2)2 e 2x− e 4x ln 8 − (ln 2)3 = 0 with error tolerance 10−5 ,
Afina-wow [57]

Answer:

  x ≈ -0.746756

Step-by-step explanation:

We have interpreted your equation to be ...

  e^{6x}+3\ln{(2)}^2e^{2x}-e^{4x\ln{(8)}}-\ln{(2)}^3=0

A graphing calculator shows the desired zero to be near -0.747. Using that value as the first guess in Newton's iteration formula, we find the next guess to be ...

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Iterating another time gives a solution accurate to 12 significant digits. The above result is well within the allowed tolerance of 10^-5.

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Of course, you know that the Newton's Method iterator for finding the "next guess" is ...

  next guess = x - f(x)/f'(x)

where f'(x) is the derivative of f(x), and the value of x is the current guess.

_____

<em>Comment on this solution</em>

For the purposes of Newton's method a numerical estimate of the derivative of the function is sufficient. Most graphing calculators have a derivative function, so all you need to do is specify the function you want to evaluate the derivative of. You could go to the trouble to develop the exact formula for the derivative of this function, but it isn't necessary to obtain an answer that is close enough.

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We have shown two separate uses of the iteration function. In practice, this calculator (Desmos) gives the function result as you type the argument, so all you need to do is copy the function output to its input to obtain calculator accuracy (12 significant digits) in one pass. A calculator like a TI-84 can do a similar thing by making the first iteration, Y₂(-0.747), then repeatedly computing Y₂(Ans), that is, using the previous answer in the iteration function again. For that calculator, one additional iteration is all that is needed to get to its 10 significant digit limit.

3 0
4 years ago
You are lying 120ft away from a tree that is 50feet tall .you look up at the top of the tree . approximately how far is ur head
e-lub [12.9K]
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8 0
4 years ago
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Can someone solve this?
Gemiola [76]

Answer:

B : 4x\sqrt{17}

Step-by-step explanation:

If you divide a rhombus using its diagonals, you get 4 right triangles, whose legs are both 1/2 the length of the diagonals.

This means that the legs of one of those 4 triangles have lengths of 2x/2, and 8x/2, so the legs of one of those triangles x and 4x. This makes the length of one side equal to \sqrt{x^{2} + (4x)^{2}} = \sqrt{17x^2} = x\sqrt{17}. Because all 4 sides are the same length, you multiply this value by 4, and get 4x\sqrt{17}, which is B.

4 0
3 years ago
£1800 is invested at4% compound interest per year.
deff fn [24]
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3 0
3 years ago
If f(x) = x2 + x - 8, find f(-3).
dalvyx [7]

Answer:

-17

Step-by-step explanation:

it's telling you to replace x with -3.

You have to replace all the x's with -3.

(-3)2 + (-3) - 8 = -17

5 0
3 years ago
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