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aleksley [76]
3 years ago
6

Drag each expression to the correct location on the table.

Mathematics
1 answer:
ololo11 [35]3 years ago
4 0

Answer:

see the picture

Step-by-step explanation:

attached

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PLEASE HELP WILL MARK BRAINLY
Romashka-Z-Leto [24]

Step-by-step explanation:

diameter is 84 thereare 2 time 42 .84.

follow me nice study bye .

7 0
3 years ago
If A(-5,7), B(-4,-5), C(-1,-6) and D(4,5) are the vertices of a quadrilateral, find the area of the quadrilateral ABCD.
MrMuchimi
After plotting the quadrilateral in a Cartesian plane, you can see that it is not a particular quadrilateral. Hence, you need to divide it into two triangles. Let's take ABC and ADC.

The area of a triangle with vertices known is  given by the matrix
M = \left[\begin{array}{ccc} x_{1}&y_{1}&1\\x_{2}&y_{2}&1\\x_{3}&y_{3}&1\end{array}\right]

Area = 1/2· | det(M) |
        = 1/2· | x₁·y₂ - x₂·y₁ + x₂·y₃ - x₃·y₂ + x₃·y₁ - x₁·y₃ |
        = 1/2· | x₁·(y₂ - y₃) + x₂·(y₃ - y₁) + x₃·(y₁ - y₂) |

Therefore, the area of ABC will be:
A(ABC) = 1/2· | (-5)·(-5 - (-6)) + (-4)·(-6 - 7) + (-1)·(7 - (-5)) |
             = 1/2· | -5·(1) - 4·(-13) - 1·(12) |
             = 1/2 | 35 |
             = 35/2

Similarly, the area of ADC will be:
A(ABC) = 1/2· | (-5)·(5 - (-6)) + (4)·(-6 - 7) + (-1)·(7 - 5) |
             = 1/2· | -5·(11) + 4·(-13) - 1·(2) |
             = 1/2 | -109 |
<span>             = 109/2</span>

The total area of the quadrilateral will be the sum of the areas of the two triangles:

A(ABCD) = A(ABC) + A(ADC) 
               = 35/2 + 109/2
               = 72
8 0
4 years ago
Can u help me of this problem
icang [17]
I've been answering lots of questions and this one's hard
8 0
4 years ago
(4+2x)+(3+1x) simplify!
larisa [96]

Answer:

3x+7

Step-by-step explanation:

8 0
3 years ago
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PLS PLS PLS HELP!!! I'LL MARK BRAINLIEST!!!
Dima020 [189]

Answer:

Its B

Step-by-step explanation:

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