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Lady bird [3.3K]
3 years ago
11

From the equation, find the axis of symmetry of the parabola.

Mathematics
2 answers:
alexandr402 [8]3 years ago
8 0

Answer:

D

Step-by-step explanation:

Quadratic has a general form of:

ax^2 + bx + c = 0

The quadratic given here is:

y = x^2 + 3x + 1

Matching it with the general form, we can see that:

a = 1 [coefficient of x^2]

b = 3

c = 1

Now, if we look at the formula for axis of symmetry, we can easily solve this out. The axis of symmetry is given by:

Axis of Symmetry is  x=-\frac{b}{2a}

We know a = 1 and b = 3, so we have:

x=-\frac{b}{2a}\\x=-\frac{3}{2(1)}\\x=-\frac{3}{2}

Hence,

D is the correct answer.

Marianna [84]3 years ago
7 0

Answer:

is D

Step-by-step explanation:

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Which expressions represent rational numbers? select all the apply. startroot 100 endroot startroot 100 endroot 13.5 startroot 8
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The expressions are irrational 1/3 + √216 and √64+ √353 and the expressions √100 × √100, 13.5 + √81, √9 + √729, and 1/5 + 2.5 are rational number.

<h3>What is a rational number?</h3>

If the value of a numerical expression is terminating then they are the rational number then they are called the rational number and if the value of a numerical expression is non-terminating then they are called an irrational number.

1.  √100 × √100

→ √100 × √100

→ 10 × 10 = 100

This is a rational number.

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→ 13.5 + √81

→ 13.5 + 9 = 22.5

This is a rational number.

3.  √9 + √729

→ √9 + √729

→ 3 + 27 = 30

This is a rational number.

4.  √64+ √353

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→ 8 + √353

This is an irrational number.

5.  1/3 + √216

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→ 1/3 + √216

This is an irrational number.

6.  1/5 + 2.5

→ 1/5 + 2.5

→ 0.2 + 2.5 = 2.7

This is a rational number.

More about the rational number link is given below.

brainly.com/question/9466779

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Step-by-step explanation:

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A vector can be resolved along any two directions in a plane containing it. The figure shows how the parallelogram rule is used to construct vectors a and b that add up to c. <span>In three dimensions, a vector can be resolved along any three non-coplanar lines. The figure shows how a vector can be resolved along the three directions by first finding a vector in the plane of two of the directions and then resolving this new vector along the two directions in the plane. </span><span>When vectors are represented in terms of base vectors and components, addition of two vectors results in the addition of the components of the vectors.</span>

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Answer:

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Step-by-step explanation:

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