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Luda [366]
3 years ago
9

Which of the following equations would be the result of using completing the square to solve the equation 3x 2 + 11x - 4 = 0?

Mathematics
1 answer:
mixas84 [53]3 years ago
6 0

Answer:(x+11/6)^2 = 169/36

Step-by-step explanation:

3x^2 + 11x - 4 = 0

x^2 + (11/3)x = 4/3

(x+11/6)^2 = 169/36

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Which restaurant has the greater rate of change?<br><br> A) Juice Jammers<br> B) Bob's Burgers
hodyreva [135]

Answer:

The answer is Juice Jammers

Step-by-step explanation:

To determine which has a greater rate of change calculate out the rate of change for Juice Jammers. In order to do so, we use the first two points in the table and the slope equation.

m(slope) = (y2 - y1)/(x2 - x1)

m = (29.25 - 0)/(25 - 0)

m = 29.25/25

m = 1.17

This gives Juice Jammers a higher rate of change than Bob's Burgers

7 0
3 years ago
from right circular cylinder with height 10 cm and radius of base 6 CM a right circular cone of the same height and base is remo
djyliett [7]

Answer:

753.98 cubic cm.

Step-by-step explanation:

We have been given that from right circular cylinder with height 10 cm and radius of base 6 cm, a right circular cone of the same height and base is removed.

To find the area of remaining solid we will subtract volume of cone from volume of cylinder.

\text{Volume of remaining solid}=\text{Volume of cylinder- Volume of cone}

\text{Volume of remaining solid}=\pi r^{2} h- \frac{1}{3}\pi r^{2}h

\text{Volume of remaining solid}=\frac{3}{3}\pi r^{2} h- \frac{1}{3}\pi r^{2}h

\text{Volume of remaining solid}=\frac{2}{3}\pi r^{2} h

Upon substituting our given values in the formula we will get,

\text{Volume of remaining solid}=\frac{2}{3}\pi*6^{2}*10

\text{Volume of remaining solid}=\frac{2}{3}\pi*36*10

\text{Volume of remaining solid}=2*\pi*12*10

\text{Volume of remaining solid}=240\pi

\text{Volume of remaining solid}=753.9822368615503772\approx 753.98

Therefore, the volume of remaining solid is 753.98 cubic cm.


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Answer:

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Step-by-step explanation:

divided by 2/3 then add the 9 and the 6 and subtract the total

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The digit 6 is in the Hundred Thousand Place.
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