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olya-2409 [2.1K]
1 year ago
9

1 Which graph represents the linear function below?

Mathematics
1 answer:
Mamont248 [21]1 year ago
3 0

The graph that represents the given linear function is attached below.

We are given a function. A function connects an input with an output. It is analogous to a machine with an input and an output. And the outcome is somehow connected to the input. The equation is linear in nature. It represents a straight line. The equation is given below.

(y - 4) = (4/3)(x - 2)

A line's general equation in slope-intercept form is y = mx + c. We will convert the given equation into this form.

y - 4 = (4/3)x - 8/3

y = (4/3)x - 8/3 + 4

y = (4/3)x + 4/3

The slope of the given equation is 4/3. The y-intercept for the given equation is 4/3.

To learn more about functions, visit :

brainly.com/question/5975436

#SPJ1

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What is the area of a triangle that has 6in high and 7in of the base
GenaCL600 [577]

Answer:

A=1/2(b)(h)

Step-by-step explanation:

A=1/2(7)(6)

A=21

6 0
4 years ago
I need help to fill in the blanks.. please
Murljashka [212]

Answer:

Part a) alternate interior angles theorem

Part b) vertical angles theorem

Part c) AA Similarity theorem

Part d) triangle ABC is similar with triangle EDC

Part e) The length side b is 3 cm

Step-by-step explanation:

Part a) we know that

The <u><em>Alternate Interior Angles Theorem</em></u> states that, when two parallel lines are cut by a transversal , the resulting alternate interior angles are congruent. Each pair of these angles are inside the parallel lines, and on opposite sides of the transversal.

In this problem

The transversal is the segment BD and the parallel lines are AB and DE

so

m\angle 1=m\angle 4 ----> by alternate interior angles theorem

Part b) we know that

<u><em>Vertical Angles Theorem</em></u> states that vertical angles are congruent. Vertical Angles are the angles opposite each other when two lines cross.

In this problem, the two lines that cross are BD and AE

so

m\angle 5=m\angle 6 ----> by vertical angles theorem

Part c) we know that

The <u><em>AA Similarity Theorem</em></u> states: If two angles of one triangle are congruent to two corresponding angles of another triangle, then the triangles are similar

In this problem              

triangle ABC is similar with triangle EDC by AA Similarity Theorem

Because

m\angle 1=m\angle 4 ----> by alternate interior angles

m\angle 5=m\angle 6 ----> by vertical angles

Part d) triangle ABC is similar with triangle EDC by AA Similarity Theorem

see the explanation Part c)

Part e) Find the length of side b

we know that

If two triangles are similar, then the ratio of its corresponding sides is proportional and its corresponding angles are congruent

we have that

triangle ABC is similar with triangle EDC

so

Applying proportion

\frac{BC}{DC}=\frac{AC}{EC}

substitute the given values

\frac{2}{DC}=\frac{5}{7.5}

solve for DC

DC=2(7.5)/5=3\ cm

therefore

The length side b is 3 cm

6 0
3 years ago
Solving algebraic equationsSolve:1/5m = 4 - 3/10m
sertanlavr [38]

EXPLANATION

Given the equation:

1/5m = 4-3/10m (Adding +3/10 to both sides)

1/5m +3/10m = 4 (Adding 1/5 + 3/10)

1/2m = 4 (Isolating m)

m = 2*4 (Multiplying)

m=8

ANSWER: m=8

3 0
1 year ago
Factor the trinomial completely. 22x2-37xy+13y2
grigory [225]

Answer; (11x−13y)(2x−y)

Step-by-step explanation:

5 0
3 years ago
The map shows the intersection of three roads. Malcom Way intersects Sydney Street at an angle of 162°. Park Road intersects Syd
Y_Kistochka [10]

Answer:

The angle  at which malcom Way intersects Park Road = 111 °

Step-by-step explanation:

Malcom Way intersects Sydney Street at \theta_{1} = 162 °

Park Road intersects Sydney Street at \theta_{2} = 87 °

The angle at which Malcom Way intersects Park Road \theta_{3} = ?

We know that

\theta_{1} + \theta_{2} + \theta_{3} = 360

\theta_{3} = 360 - \theta_{1} - \theta_{2}

\theta_{3} = 360 - 162 - 87

\theta_{3} = 111 °

Therefore the angle  at which malcom Way intersects Park Road = 111 °

6 0
3 years ago
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