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iVinArrow [24]
3 years ago
10

Solve for x for the first and second question.

Mathematics
1 answer:
vredina [299]3 years ago
8 0

Answer:

Step-by-step explanation:

I assume the figures are parallelograms, then

1). KL = MJ and

12x - 22 = 7x - 2

12x - 7x = 22 - 2

5x = 20

<em>x = 4 </em>

2). m∠RQT + m∠QTS = 180°

(<u><em>The picture is not clear and I might be wrong about coefficients by x for ∠RQT and ∠QTS</em></u>)

(3x + 5)° + (9x - 17)° = 180°

12x - 12 = 180

12x = 192

<em>x = 16</em>

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69

Step-by-step explanation:

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7 0
3 years ago
This pattern repeats every 5 terms. The pattern is trapezoid, square, triangle, pentagon, square. What is the 17th term of this
qaws [65]

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b Square

Step-by-step explanation:

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3 0
3 years ago
Given the circle with the equation (x - 3)2 + y2 = 49, determine the location of each point with respect to the graph of the cir
Bas_tet [7]
To find out if a point is inside, on, or outside a circle, we need to substitute the ordered pair into the equation of the circle:
(x-xc)^2+(y-yc)^2=r^2
where (xc,yc) is the centre of the circle, and r=radius of the circle.

If the left-hand side [(x-xc)^2+(y-yc)^2] is less than r^2, then point (x,y) is INSIDE the circle.  If the left-hand side is equal to r^2, the point is ON the circle.
Finally, if the left-hand side is greater than r^2, the point is OUTSIDE the circle.

For the given problem, we have xc=3, yc=0, or centre at (3,0), r=sqrt(49)=7
(x-xc)^2+(y-yc)^2=r^2 => (x-3)^2+y^2=7^2

A. (-1,1), 
(x-3)^2+y^2=7^2 => (-1-3)^2+1^2=16+1=17 <49  [inside circle]

B. (10,0)
(x-3)^2+y^2=7^2 => (10-3)^2+0^2=49+0=49  [on circle]

C. (4,-8)
(x-3)^2+y^2=7^2 => (4-3)^2+(-8)^2=1+64=65 > 49  [outside circle]


5 0
3 years ago
A rhombus is _____ a square. <br> A. always<br> B. sometimes<br> C. never
Lubov Fominskaja [6]
B sometimes
A rhombus MUST have 4 equal sides, but like a parallelogram,it can have matching pairs of angles that are supplementary
7 0
4 years ago
Read 2 more answers
Please help me out, and fast
ivolga24 [154]

The answer is c i think

8 0
3 years ago
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