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Svetllana [295]
3 years ago
12

Please help me will mark brainliest

Mathematics
1 answer:
Leno4ka [110]3 years ago
5 0

Answer:

Pentagon, Don't remember what those are, and Regular

Step-by-step explanation:

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Free brainleist question<br><br> Whats (9+10) Times 15
Licemer1 [7]

Answer:

135

Step-by-step explanation:

(9+10)=19

19•15

135

3 0
3 years ago
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Help please!<br><br> What is the value of x?<br> picture below!
seropon [69]

Answer: 8

{10}^{2}  = 100 \\  {6}^{2}  = 36 \\ 100 - 36 = 64 \\  \sqrt{64}  = 8

4 0
3 years ago
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Find the measure of the arc. Please help!
kolbaska11 [484]

Answer:

The value of mEFD = 214°

Step-by-step explanation:

Given that the measure of the degree of one of the central angles of an inner circle is 146°.

We know that sum of all central angles is 360°.

In other words, in our case

mEFD + 146° = 360°

Thus, we can determine the mEFD using the equation

mEFD + 146° = 360°

so subtracting 146° to both sides

mEFD + 146° - 146°  = 360° - 146°

mEFD = 214°

Therefore, the value of mEFD = 214°

4 0
3 years ago
I need the answer ASAP! Please help me!
masha68 [24]

Answer:

Please check the explanation.

Step-by-step explanation:

<u>Determining the length of BC</u>

From the diagram, it is clear that

  • The point B is located at (-8, 10) and point C is located at (8, 10)

Since points A and C are located on a horizontal straight line. Thus, the length of BC can be determined by counting the x-axis units from reaching x = -8 to x = 8. i.e. 8-(-8) = 8+8 = 16

Thus, the length of BC = 16 units

<u>Determining the length of CD</u>

Given

  • C (8, 10)
  • D (2, -2)

The distance between C(8, 10) and D(2, -2)

\mathrm{Compute\:the\:distance\:between\:}\left(x_1,\:y_1\right),\:\left(x_2,\:y_2\right):\quad \sqrt{\left(x_2-x_1\right)^2+\left(y_2-y_1\right)^2}

CD=\sqrt{\left(2-8\right)^2+\left(-2-10\right)^2}

      =\sqrt{6^2+12^2}

      =\sqrt{36+144}

      =\sqrt{180}

      =\sqrt{36\times 5}

      =6\sqrt{5}

Thus, the length of CD =6\sqrt{5} units

<u>Determining the length of ED</u>

Given

  • E (-8, -4)
  • D (2, -2)

The distance between E(-8, -4) and D(2, -2)

ED=\sqrt{\left(2-\left(-8\right)\right)^2+\left(-2-\left(-4\right)\right)^2}

      =\sqrt{10^2+2^2}

      =\sqrt{100+4}

      =\sqrt{104}

       =\sqrt{26\times \:4}

        =2\sqrt{26}

Thus, the length of ED =2\sqrt{26} units

<u>Determining the length of EB</u>

From the diagram, it is clear that

  • The point E is located at (-8, -4) and the point B is located at (-8, 10)

Since points E and B are located on a vertical straight line. Thus, the length of EB can be determined by counting the y-axis units from reaching y = -4 to y = 10. i.e. 10-(-4) = 10+4 = 14

Thus, the length of EB = 14 units

4 0
3 years ago
. A right triangle is drawn inside a sphere, and the hypotenuse is 12 cm. What is the radius of the sphere? Round your final ans
Diano4ka-milaya [45]

Answer: How do you find the rate of change of volume?

The rate of change in volume is dV/dt. The question is asking for the rate that the side length is changing. That would be ds/dt. If we take the derivative of both sides of V = s^3 with respect to time, we get dV/dt = d/dt[s^3].

5 0
2 years ago
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