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ira [324]
2 years ago
11

At the most basic level, humans need which of the following to establish a successful inhabitable settlement.

Geography
2 answers:
Hoochie [10]2 years ago
7 0
The correct answer here is A. At its most basic level, human beings need arable land to establish a successful inhabitable settlement. Without this, they will not be able to grow the essential crops needed to eat and survive, or rear livestock.
nikklg [1K]2 years ago
6 0

Answer:

C. Arable land

Explanation:

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I would say Afghanistan or maybe North Korea
 
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map of the 9 provinces with symbols indicating the location of all airport required for domestic flights​
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The map of the provinces with symbols showing the location of all airport required for domestic flights​ is attached.

<h3>What makes a flight to be domestic?</h3>

A domestic flight is known to be a kind of flight that is said to go/take off and lands in the same country.

A good example of a domestic flight in the USA is the flight that left or depart from Los Angeles and did land in New York Los Angeles.

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Learn more about domestic flights​ from

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Which statement is true about scientific breakthroughs in Mars explorations? options: 1) They have made space exploration easier
Katen [24]

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3 years ago
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Which of the following best describes what the line labeled G measures?
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4 0
1 year ago
What is the value of X6? <br><br> Show the solution.
wariber [46]

Answer : The value of x_6 is \sqrt{7}.

Explanation :

As we are given 6 right angled triangle in the given figure.

First we have to calculate the value of x_1.

Using Pythagoras theorem in triangle 1 :

(Hypotenuse)^2=(Perpendicular)^2+(Base)^2

(x_1)^2=(1)^2+(1)^2

x_1=\sqrt{(1)^2+(1)^2}

x_1=\sqrt{2}

Now we have to calculate the value of x_2.

Using Pythagoras theorem in triangle 2 :

(Hypotenuse)^2=(Perpendicular)^2+(Base)^2

(x_2)^2=(1)^2+(X_1)^2

(x_2)^2=(1)^2+(\sqrt{2})^2

x_2=\sqrt{(1)^2+(\sqrt{2})^2}

x_2=\sqrt{3}

Now we have to calculate the value of x_3.

Using Pythagoras theorem in triangle 3 :

(Hypotenuse)^2=(Perpendicular)^2+(Base)^2

(x_3)^2=(1)^2+(X_2)^2

(x_3)^2=(1)^2+(\sqrt{3})^2

x_3=\sqrt{(1)^2+(\sqrt{3})^2}

x_3=\sqrt{4}

Now we have to calculate the value of x_4.

Using Pythagoras theorem in triangle 4 :

(Hypotenuse)^2=(Perpendicular)^2+(Base)^2

(x_4)^2=(1)^2+(X_3)^2

(x_4)^2=(1)^2+(\sqrt{4})^2

x_4=\sqrt{(1)^2+(\sqrt{4})^2}

x_4=\sqrt{5}

Now we have to calculate the value of x_5.

Using Pythagoras theorem in triangle 5 :

(Hypotenuse)^2=(Perpendicular)^2+(Base)^2

(x_5)^2=(1)^2+(X_4)^2

(x_5)^2=(1)^2+(\sqrt{5})^2

x_5=\sqrt{(1)^2+(\sqrt{5})^2}

x_5=\sqrt{6}

Now we have to calculate the value of x_6.

Using Pythagoras theorem in triangle 6 :

(Hypotenuse)^2=(Perpendicular)^2+(Base)^2

(x_6)^2=(1)^2+(X_5)^2

(x_6)^2=(1)^2+(\sqrt{6})^2

x_6=\sqrt{(1)^2+(\sqrt{6})^2}

x_6=\sqrt{7}

Therefore, the value of x_6 is \sqrt{7}.

5 0
2 years ago
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