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Temka [501]
3 years ago
9

What is the total length of my arm span

SAT
2 answers:
shutvik [7]3 years ago
8 0

Try taking a mesure instrument of any kind (like a ruler or measuring tape) and put it along your arm.

muminat3 years ago
4 0

Hello!

Everyone's specific arm span varies between people. In order to find yours, you must grab a meter stick or a tape measure and have somebody or yourself measure the length of your arms.

I hope it helps!

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-4(h - 10) < 7h(2+3)
REY [17]

Answer:

h > 40/39

Explanation:

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2 years ago
Which premise would best fit in a work of dystopian fiction.
Marat540 [252]

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5 0
2 years ago
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Look at the drawing and answer the following questions with the most logical affirmative or negative expressions as indicated. R
Anastasy [175]

Answer:

Sí, hay alguien pescando.

No, no veo ninguna parrillada.

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Explanation:

Use the verbs that the voices use.

7 0
2 years ago
The vertices of square cdef are c(1, 1), d(3, 1), e(3,−1) and f(1,−1). Which of the following shows that its diagonals are congr
maks197457 [2]

The equation -1 = -\frac {1}{1} shows that the diagonals are congruent perpendicular bisectors.

The vertices of the square are given as:

  • c = (1,1)
  • d = (3,1)
  • e =(3,-1)
  • f = (1,-1)

<h3>How to determine the congruent perpendicular bisectors.</h3>

Start by calculating the slope of diagonal ce using:

m = \frac{y_2 -y_1}{x_2  -x_1}

So, we have:

m = \frac{-1-1}{3  -1}

m = \frac{-2}{2}

m_1 = -1

Next, calculate the slope of diagonal df using:

m = \frac{y_2 -y_1}{x_2  -x_1}

So, we have:

m = \frac{-1-1}{1-3}

m = \frac{-2}{-2}

m_2 = 1

The slopes of both diagonals are:

m_1 = -1

m_2 = 1

By comparing both slopes, we have:

m_1 = -\frac {1}{m_2}

i.e.

-1 = -\frac {1}{1}

Hence, -1 = -\frac {1}{1} shows that the diagonals are congruent perpendicular bisectors.

Read more about perpendicular bisectors at:

brainly.com/question/11006922

8 0
2 years ago
1-10 how good is hamilton?
kvv77 [185]

Answer:

9.5

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it good but starwars/harry potter us like og sssssooooo ye

may i have brainlyist

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