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Tems11 [23]
3 years ago
14

On each coordinate plane, the parent function f(x) = |x| is represented by a dashed line and a translation is represented by a s

olid line. Which graph represents the translation g(x) = |x + 2| as a solid line?
On a coordinate plane, a dashed line absolute value graph has a vertex at (0, 0). A solid line absolute value graph has a vertex at (2, 0).

On a coordinate plane, a dashed line absolute value graph has a vertex at (0, 0). A solid line absolute value graph has a vertex at (0, negative 2).

On a coordinate plane, a dashed line absolute value graph has a vertex at (0, 0). A solid line absolute value graph has a vertex at (negative 2, 0).

On a coordinate plane, a dashed line absolute value graph has a vertex at (0, 0). A solid line absolute value graph has a vertex at (0, 2).
Mathematics
3 answers:
nata0808 [166]3 years ago
8 0

Answer:

its a

Step-by-step explanation:

i took the quiz

Kitty [74]3 years ago
5 0

Answer:

On each coordinate plane, the parent function f(x) = |x| is represented by a dashed line and a translation is represented by a solid line. Which graph represents the translation g(x) = |x + 2| as a solid line?

On a coordinate plane, a dashed line absolute value graph has a vertex at (0, 0). A solid line absolute value graph has a vertex at (2, 0).

On a coordinate plane, a dashed line absolute value graph has a vertex at (0, 0). A solid line absolute value graph has a vertex at (0, negative 2).

On a coordinate plane, a dashed line absolute value graph has a vertex at (0, 0). A solid line absolute value graph has a vertex at (negative 2, 0).

On a coordinate plane, a dashed line absolute value graph has a vertex at (0, 0). A solid line absolute value graph has a vertex at (0, 2).

Step-by-step explanation:

I have same question pls help

27jcbBRS3 years ago
0 0

its b, g(x) [x] + 2.5

edge2021

27jcbBRS
3 years ago
g (x) = [x] + 2.5
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In the diagram shown, sp pt pm st ps=13 and sm=5
pogonyaev
What diagram???
Sorry but there’s no pic so I can’t help you
5 0
3 years ago
Write the following set in roster form and in set-builder notation.
Vlad1618 [11]

Answer:

Roster Form of M  = {-2, -1 , 0, 1}

Set Builder Form of M = {x : x is an integer and -3  < x  ≤ 1 }

Step-by-step explanation:

Roster Form: A set is said to be in roster form if each element of the set is written distinctly in the set with commas in between them.

Set Builder Form: A set is said to be in set builder form if all the set elements are represented by describing their properties.

Now, here M is the set of integers that are greater than -3 and less than or equal to 1.

So, by definition of the set forms,

Roster Form of M  = {-2, -1 , 0, 1}

Set Builder Form of M = {x : x is an integer and -3  < x  ≤ 1 }

4 0
4 years ago
The function table shown matches y = 2x + 4. Find the missing value in the table.
Andru [333]

y=2x+4

-4 -4

-4=2x

-4/2 2x/2

-2=x

Im not 100% sure if this is correct.

3 0
3 years ago
Round to the given place: 340,413 (hundred thousands)
mojhsa [17]

Answer:

The answer is 300,000.

Step-by-step explanation:

Hundred thousand would be one hundred (100) and a thousand, which is three zeroes. So we put three zeroes after 100 and we get 100,000. So in this case we're rounding to 300,000.

8 0
3 years ago
Read 2 more answers
-4 + 3y = -43<br> what does y equal?
NeTakaya

Answer:

-13

Step-by-step explanation:

We remove the -4 by adding 4 to each side:

3y = -43 + 4

Now we simplify to give:

3y = -39

So now we divide both sides by 3 to give our answer of:

y = -39/3
y = -13
We can substitute this into the original equation to check our answer:

-4 + 3(-13) = -43

-4 + -39 = -43

✅

7 0
3 years ago
Read 2 more answers
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