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eduard
3 years ago
10

Find the distance between (5.8) and (-2,3)

Mathematics
1 answer:
lorasvet [3.4K]3 years ago
8 0

Answer:

distance between the points is 8.602325267 units

Step-by-step explanation:

(5 , 8)=(x1 , y1)

(-2 , 3)=(x2 , y2)

use formula:\sqrt{(x2-x1)^2 + (y2-y1)^2}

=\sqrt{(-2-5)^2 + (3-8)^2}

=\sqrt{(-7)^2 + (-5)^2}

=\sqrt{49 + 25}

=\sqrt{74

=8.602325267 units

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Use Lagrange multipliers to find the maximum and minimum values of f(x, y, z) = x − 2y + 5z on the sphere x 2 + y 2 + z 2 = 30.
Gekata [30.6K]

Answer:

Maximum: ((1,-2,5) ; 30)

Minimum: ((-1,2,-5) ; -30)

Step-by-step explanation:

We have the function f(x,y,z) = x - 2y + 5z, with the constraint g(x,y,z) = 30, with g(x,y,z) = x²+y²+z². The Lagrange multipliers Theorem states that, the points (xo,yo,zo) of the sphere where the function takes its extreme values  should satisfy this equation:

grad(f) (xo,yo,zo) = λ * grad(g) (xo,yo,zo)

for a certain real number λ. The gradient of f evaluated on a point (x,y,z) has in its coordinates the values of the partial derivates of f evaluated on (x,y,z). The partial derivates can be calculated by taking the derivate of the function by the respective variable, treating the other variables as if they were constants.

Thus, for example, fx (x,y,z) = d/dx x-2y+5z = 1, because we treat -2y and 5z as constant expressions, and the partial derivate on those terms is therefore 0. We calculate the partial derivates of both f and g

  • fx(x,y,z) = 1
  • fy(x,y,z) = -2
  • fz(x,y,z) = 5
  • gx(x,y,z) = 2x (remember that y² and z² are treated as constants)
  • gy(x,y,z) = 2y
  • gz(x,y,z) = 2z

Thus, for a critical point (x,y,z) we have this restrictions:

  • 1 = λ 2x
  • -2 = λ 2y
  • 5 = λ 2z
  • x²+y²+z² = 30

The last equation is just the constraint given by g, that (x,y,z) should verify.

We can put every variable in function of λ, and we obtain the following equations.

  • x = 1/2λ
  • y = -2/2λ = -1/λ
  • z = 5/2λ

Now, we replace those values with the constraint, obtaining

(1/2λ)² + (-1/λ)²+(5/2λ)² = 30

Developing the squares and taking 1/λ² as common factor, we obtain

(1/λ²) * (1/4 + 1 + 25/4) = (1/λ²) * 30/4 = 30

Hence, λ² = 1/4, or, equivalently,\lambda =^+_- \frac{1}{2} .

If \lambda = \frac{1}{2} , then 1/λ is 2, and therefore

  • x = 1
  • y = -2
  • z = 5

and f(x,y,z) = f(1,-2,5) = 1 -2 * (-2) + 5*5 = 30

If \lambda = - \frac{1}{2} , then 1/λ is -2, and we have

  • x = -1
  • y = 2
  • z = -5

and f(x,y,z) = f(-1,2,-5) = -1 -2*2 + 5*(-5) = -30.

Since the extreme values can be reached only within those two points, we conclude that the maximun value of f in the sphere takes place on ((1,-2,5) ; 30), and the minimun value takes place on ((-1,2,-5) ; -30).

5 0
4 years ago
What lists all integer solutions of the inequality |x|<2
Nookie1986 [14]

Answer:

The solution to that inequality is (-2,2).

Step-by-step explanation:

Given the inequality |x|<2, we have two possibilities

1) x<2 or

2) -x<2 ⇒ x> -2.

Then the intersection between solutions is (-2, 2).

4 0
3 years ago
Judi and Amazing shared 20 in the ratio 2 ratio 3 how many oranges has Amazing<br>​
AveGali [126]

Answer:

12 oranges

Step-by-step explanation:

Judi : Amazing

2 : 3

Total oranges shared = 20

- 5 units = 20

1 unit = 20 ÷ 5 = 4 oranges

Therefore,

Number of oranges Amazing have = 4 × 3 = 12 oranges

4 0
3 years ago
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vekshin1

Answer:

The answer is B, f(x)=5(2/5)^(z)

Step-by-step explanation:

I did the graphs for all of them and graph B was identical to the one in the picture.

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3 years ago
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Answer:

Step-by-step explanation:

Clockwise A to Z: 90 degrees

Counter-clockwise A to Z: 270 degrees

Counter-clockwise Z to B: 180

Clockwise Z to B: 180

Clockwise B back to B: 360  

3 0
3 years ago
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