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Mariana [72]
3 years ago
11

What's the answer Will award brainiest

Mathematics
2 answers:
Goshia [24]3 years ago
7 0
The answer is A. Again you should get the app CY math it shows you how to do it step by step. Brainiest?
​​
Igoryamba3 years ago
5 0

Answer:

<h2>A.  x = <u> log 14 - 1 </u></h2><h2>                 4</h2>

Step-by-step explanation:

10⁴ˣ ⁺ ¹ + 3 = 17

10⁴ˣ ⁺ ¹ = 17 - 3

10⁴ˣ ⁺ ¹ = 14

x =<u> log 14 - 1 </u>

          4

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15s-100=350 Can someone answer please.
seraphim [82]

Answer:

15s=350+100

15s=450

s=450/15

s=30

Hope it helps:-)

3 0
4 years ago
Evaluate the integral by interpreting it in terms of areas. In other words, draw a picture of the region the integral represents
Oduvanchick [21]

Please find attached

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3 0
3 years ago
The circumference of circle P is 800 mm, the circumference of circle Q is 200 cm, and the circumference of circle R is 4 m. What
Lapatulllka [165]

Answer:

circle P has a circumference of 800mm which is equal to 80cm

circle Q is 200cm

circle R is 4m which is equal to 400cm

You will get the sum of the distances by placing the figures under one measurement that is meters

And so add the figures in cm(200+400+80) and get 680

Then convert this to meters and get 6.8m

Hence your answer is C

3 0
3 years ago
5÷6 is 5/6. What is 1/6 of 5?
Vlad [161]

Answer:

5/6

Step-by-step explanation:

1/6 of 5 is the same:  (1/6)(5) = 5/6

8 0
3 years ago
g Let P be the plane that goes through the points A(1, 3, 2), B(2, 3, 0), and C(0, 5, 3). Let ` be the line through the point Q(
Sedbober [7]

Answer:

  (x, y, z) = (1, 1/3, 3 1/3)

Step-by-step explanation:

The normal to plane ABC can be found as the cross product ...

  AB×BC = (1, 0, 2)×(2, -2, -3) = (4, 1, 2)

Then the equation of the plane is ...

  4x +y +2z = 4·0 +5 +2·3 . . . . using point C to find the constant

  4x +y +2z = 11

__

The direction vector of the reference line is the vector of coefficients of t: (0, -1, 2). Then the line through point Q is ...

  (x, y, z) = (1, 2, 0) +t(0, -1, 2) = (1, 2-t, 2t)

__

The value of t that puts a point on this line in plane ABC can be found by substituting these values for x, y, and z in the plane's equation.

  4(1) +(2 -t) +2(2t) = 11

Solving for t gives ...

  t = 5/3

so the point of intersection of the plane and the line is

  (x, y, z) = (1, 2-t, 2t) = (1, 2-5/3, 2·5/3) = (1, 1/3, 3 1/3)

5 0
3 years ago
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