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mojhsa [17]
2 years ago
10

Points H and F lie on circle c What is the length of line segment GH?

Mathematics
2 answers:
stiv31 [10]2 years ago
7 0

Answer:

The answer to this question is 6 units, just took the exam on edg 2020.

Step-by-step explanation:

Nina [5.8K]2 years ago
3 0

Answer:

6 units

Step-by-step explanation:

Given: Points H and F lie on  circle with center C. EG = 12, EC = 9 and ∠GEC = 90°.

To find: Length of GH.

Sol: EC = CH = 9 (Radius of the same circle are equal)

Now, GC = GH + CH

GC = GH + 9

Now In ΔEGC, using pythagoras theorem,

(Hypotenuse)^{2} = (Base)^{2} +(Altitude)^{2} ......(ΔEGC is a right triangle)

(GC)^{2} = (GE)^{2} +(EC)^{2}

(GH + 9)^{2} = (9)^{2} +(12)^{2}

(GH )^{2} + (9)^{2} + 18GH = 81 + 144

(GH )^{2} + 81 + 18GH = 81 + 144

(GH )^{2} + 18GH = 144

Now, Let GH = <em>x</em>

x^{2} +18x = 144

On rearranging,

x^{2} +18 x - 144 = 0

x^{2} - 6x +24x + 144 = 0

x (x-6) + 24 (x - 6) =0

(x - 6) (x + 24) = 0

So x = 6  and x = - 24

∵ x cannot be - 24 as it will not satisfy the property of right triangle.

Therefore, the length of line segment GH = 6 units. so, Option (D) is the correct answer.

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Answer:

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Step-by-step explanation:

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Which situation can be modeled by the inequality 50−12x≥8?
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Suppose you take the small prism and stack it on top of the larger prism. What will be the volume of the composite figure?
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Find the volume of the first figure, then find the volume of the second figure, then add them together.
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Leah borrows £10,000 over 5 years at a simple interest rate of 15%.
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She will pay $7,500 interest over the 5 years

She will have to pay back $17,500 in total

Step-by-step explanation:

Let us revise the rule of the simple interest

<em>I</em> = <em>Prt</em> and <em>A</em> = <em>P</em>(1 +<em> rt</em>) , where:

  • A = Total Accrued Amount (principal + interest)
  • P = Principal Amount
  • I = Interest Amount
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∵ Leah borrows £10,000 over 5 years at a simple interest rate of 15%.

∴ P = 10,000

∴ t = 5

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→ Substitute them in the first rule to find the interest

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∴ A = 17,500

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