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Sergio [31]
3 years ago
5

Formulate the quadratic function that contains the points (-2,1), (0,1) and (1,4).

Mathematics
1 answer:
jekas [21]3 years ago
5 0

Answer:  A) f(x) = x² + 2x + 1

<u>Step-by-step explanation:</u>

The standard form of a quadratic equation is: y = Ax² + Bx + C

Input (x, y) coordinates into the standard equation to solve for A, B, & C.

(0, 1) →  1 = A(0)² + B(0) + C

            1 = C

(-2, 1) → 1 = A(-2)² + B(-2) + C

            1 = 4A - 2B + 1

            0 = 4A - 2B

(1, 4) → 4 = A(1)² + B(1) + C

           4 = A + C + 1

           3 = A + B

Solve the system of equations:

0 = 4A - 2B   →   1(0 = 4A - 2B)   →     0 = 4A - 2B

3 = A + B       →  2(3 = A + B)      →      <u>6 = 2A + 2B</u>

                                                           6 = 6A

                                                           1 = A

Input A = 1 into either equation to solve for B:

3 = A + B

3 = 1 + B

2 = B

Now, Input A = 1, B = 2, and C = 1 into the standard equation:

y = (1)x² + (2)x + (1)

y = x² + 2x + 1

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(4n+4) - (n+5)

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2. The ratio of radii of two cylinders is 1:2 and heights are in the ratio 2:3. Find the ratio of their volumes.
Savatey [412]

Answer: \frac{1}{6} or 1:6

Step-by-step explanation:

The volume of a cylinder can be found with the following formula:

V=\pi r^2h

Where "r" is the radius and "h" is the height of the cylinder.

In this case, let be:

- V_1 the volume of one of this cylinders and V_2 the volume of the other one.

- r_1 the radius of the first one and r_2 the radius of the other cylinder.

- h_1 the height of one of them and h_2 the height of the other cylinder.

Then:

V_1=\pi r_1^2h_1\\\\V_2=\pi r_2^2h_2

Therefore, you know this:

\frac{V_1}{V_2} =\frac{\pi r_1^2h_1}{\pi r_2^2h_2}

Simplifying, you get:

\frac{V_1}{V_2} =\frac{ r_1^2h_1}{ r_2^2h_2}

Now, knowing the ratios given in the exercise, you can substitute them into the equation:

\frac{V_1}{V_2} =\frac{1^2*2}{ 2^2*3}

Evaluating, you get:

\frac{V_1}{V_2} =\frac{2}{ 4*3}\\\\\frac{V_1}{V_2} =\frac{2}{12}\\\\\frac{V_1}{V_2} =\frac{1}{6}

4 0
4 years ago
a team's stadium has a capacity of 86,047. The fan base is notorious for selling out of tickets every game. If every game sells
ycow [4]

Answer:

1,032,564 tickets

Step-by-step explanation:

Find how many tickets they sell in total by multiplying the capacity of the stadium by the number of games in the season:

86,047(12)

= 1,032,564

So, if every game sells out, 1,032,564 tickets will be sold.

5 0
3 years ago
Consider the half of the sphere of radius 2 centered at the origin which lies above the xy-plane (a hemisphere). Suppose the den
Harlamova29_29 [7]

Answer:

25.133 units

Step-by-step explanation:

Since the density ρ = r, our mass is

m =  ∫∫∫r³sinθdΦdrdθ. We integrate from θ = 0 to π (since it is a hemisphere), Φ = 0 to 2π and r = 0 to 2  and  the maximum values of r = 2 in those directions. So

m =∫∫[∫r³sinθdΦ]drdθ      

m = ∫[∫2πr³sinθdθ]dr     ∫dФ = 2π

m = ∫2πr³∫sinθdθ]dr

m = 2π∫r³dr    ∫sinθdθ = 1

m = 2π × 4     ∫r³dr = 4

m = 8π units

m = 25.133 units

5 0
3 years ago
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