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Anit [1.1K]
3 years ago
8

The quadratic function f has a vertex at (3,4) and opens upward. The quadratic function g is shown below. Which statement is tru

e? A. The minimum value of g is greater than the minimum value of f. B. The maximum value of g is greater than the maximum value of f. C. The minimum value of f is greater than the minimum value of g. D. The maximum value of f is greater than the maximum value of g.
Mathematics
2 answers:
White raven [17]3 years ago
8 0

Answer:

The minimum value of f(x) is greater than the minimum value of g(x).

Step-by-step explanation:

aksik [14]3 years ago
5 0

Answer:

The minimum value of f(x) is greater than the minimum value of g(x).

Step-by-step explanation:

Given

(h_1,k_1) = (3,4) --- vertex of f(x)

g(x) = 4(x - 4)^2 + 3 --- g(x) equation

Required

Which of the options is true

First, we identify the vertex of g(x)

A quadratic function is represented as:

g(x) =a(x - h)^2 + k

Where:

(h,k) \to vertex

So, we have:

(h_2,k_2) = (4,3)

a = 4

If a>0, then the curve opens upward

From the question, we understand that f(x) also open upward. This means that both functions have a minimum

The minimum is the y (or k) coordinate

So, we have:

(h_1,k_1) = (3,4) --- vertex of f(x)

(h_2,k_2) = (4,3) --- vertex of g(x)

The minimum of both are:

Minimum = 4 ----  f(x)

Minimum = 3 ----  g(x)

By comparison:

4 > 3

<em>Hence, f(x) has a greater minimum</em>

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Please help I will give out brainliest
Nitella [24]

Answer:

i)x=0,x=1

ii)

\frac{2}3} + \frac{\sqrt{40} }{6}  \\\frac{2}3}-\frac{\sqrt{40} }{6}

Step-by-step explanation:

so I did not use the graphs actually.

for the answer to question i), i wrote out the equation as given:

3x^2-3x+2=2

then, i subtracted the two from the right side of the equation to make the equation set equal to 0, and I got:

3x^2-3x+2-2=+2-2, which becomes 3x^2-3x=0

then, I used the quadratic method of taking out the greatest common factor, which in this case is 3x, and the equation becomes:

3x(x-1)=0

finally, for this equation, I set 3x=0 and x-1 =0 to get the solutions to this equation, as shown below

3x=0(divide both sides by 3 to get)x=0

x-1=0(add 1 to both sides to get)x=1

now for the second equation, I had no other choice but to use the quadratic formula to find the solutions.

so I set up the quadratic formula as shown:

\frac{-(-4)+ or -\sqrt{(9-4)^2)-4(-2)(3)} }{2(3)}

from there the equation gets simplified down to:

\frac{4+ or -\sqrt{16-4(-6)} }{6}

simplifying the formula even further gives us:

\frac{4+ or -\sqrt{40} }{6}

if we simplify the equation one last time, we get:

\frac{2}{3} + or -\frac{\sqrt{40} }{6}

therefore, the solutions to this equation are:

\frac{2}{3} +\frac{\sqrt{40} }{6}\\ \frac{2}{3} - \frac{\sqrt{40} }{6}

8 0
3 years ago
ANSWER FAST I NEED HELP
Ahat [919]

Add total rolls:

The number of rolls is the height of each bar:

14 + 12 + 16 + 15 + 13 = 70

70 total rolls

The numbers greater than 3 are 4 and 5

4 was rolled 15 times and 5 was rolled 13 times

15 + 14 =28 Total times

The prInability of that happening would be 28/70 which reduces to 2/5

The answer as a fraction is 2/5 which is 40% as a percentage.

5 0
3 years ago
1. -4(2x - 2) = -(4x - 4)
Tasya [4]

Answer:

x = 1

Step-by-step explanation:

3 0
4 years ago
In simplest form, what fraction of the figure is shaded?
yan [13]
5/6, 1/3 hope this helps :))
4 0
3 years ago
Geometry help greatly needed, check photo for more information! &lt;3
vlabodo [156]

Answer:

\huge\boxed{\sf x = 55\°}

Step-by-step explanation:

When a quadrilateral is inscribed in a circle, the opposite angles of it add up to 180 degrees.

Here,

∠DCB + ∠DAB = 180 (Opposite angles of a quad inscribed in a circle.)

<u>Given that:</u> ∠DCB = 135° and ∠DAB = x

135 + x = 180

Subtract 135 to both sides

x = 180 - 135

x = 55°

\rule[225]{225}{2}

Hope this helped!

<h3>~AH1807</h3>
8 0
2 years ago
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