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neonofarm [45]
3 years ago
8

Consider the relation {(−5, 8), (4, −2), (4, 1), (3, 0)} . What integer is in the domain?

Mathematics
1 answer:
White raven [17]3 years ago
4 0

Answer:

OPTION C:   - 5

Step-by-step explanation:

Domain of the function is the set of all possible values that the variable can take.

Let us say the function f(x) = x.

Then the set of all possible values that 'x' can take is called as Domain of the function.

The same definition applies to relation as well.

In the given relation Domain = {-5, 4, 4, 3}

Hence, OPTION C = - 5 is the correct answer,

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D. None of the above
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3 years ago
8 <br> 7<br> /<br> 8<br> + <br> 9 <br> 13<br> /<br> 16<br> what is this in a mixed number.
FinnZ [79.3K]

Answer:

18 and 11/16

Step-by-step explanation:

I converted the two numbers into improper fractions which leaves me with

71/8+157/16

I thenn made sure I had common denominators, which means I need to multiply the first number by 2/2 and I'm left with:

142/16+157/16

I can now add the 2 numbers together and I get:

299/16

now we just need to convert the number into a mixed number by dividing, and I am left with:

18 and 11/16

5 0
3 years ago
Which fraction is in its lowest terms?<br><br> 4/5<br> 3/9<br> 4/6<br> 2/8
artcher [175]

Answer:

4/5

Step-by-step explanation:

  1. 4/5 cannot be simplified
  2. 3/9 = 1/3
  3. 4/6 = 2/3
  4. 2/8= 1/4
6 0
3 years ago
In a rectangle FGHI, diagonals FH and GI intersect at E<br> What is the length of FH?
Hunter-Best [27]

Answer:

The length of \overline {FH} is;

D. 38 units

Step-by-step explanation:

The given parameters are;

The type of the given quadrilateral FGHI = Rectangle

The diagonals of the quadrilateral = \overline {FH} and \overline {GI}

The length of IE = 3·x + 4

The length of EG = 5·x - 6

We have from segment addition postulate, \overline {GI} = IE + EG

The properties of a rectangle includes;

1) Each diagonal bisects the other diagonal into two

Therefore,  \overline {FH} bisects \overline {GI}, into two equal parts, from which we have;

IE = EG

\overline {GI} = IE + EG

3·x + 4 = 5·x - 6

4 + 6 = 5·x - 3·x = 2·x

10 = 2·x

∴ x = 10/2 = 5

From which we have;

IE = 3·x + 4 = 3 × 5 + 4 = 19 units

EG = 5·x - 6 = 5 × 5 - 6 = 19 units

\overline {GI} = IE + EG = 19 + 19 = 38 units

\overline {GI} = 38 units

2) The lengths of the two diagonals are equal. Therefore, the length of segment \overline {FH} is equal to the length of segment \overline {GI}

Mathematically, we have;

\overline {FH} = \overline {GI} = 38 units

∴ \overline {FH} = 38 units.

5 0
3 years ago
Explain how to estimate square roots.<br><br> I'll mark you brainliest
wel

Answer:Image result for how to estimate square roots

Examples.

Finding square roots of of numbers that aren't perfect squares without a calculator.

Example: Calculate the square root of 10 ( ) to 2 decimal places.

Find the two perfect square numbers it lies between.

Divide 10 by 3. ...

Average 3.33 and 3. ( ...

Repeat step 2: 10/3.1667 = 3.1579.

More items...

Step-by-step explanation:

5 0
3 years ago
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