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The two adjacent sides of a cyclic quadrilateral are 2 and 5 and the angle between them is 60º.if the area of the quadrilatetal is 4root(3) ,then the perimeter of the quadrilateral is?
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The two adjacent sides of a cyclic quadrilateral are 2 and 5 and the a...
- **Given information:**
- Two adjacent sides of the cyclic quadrilateral are 2 and 5.
- The angle between them is 60º.
- The area of the quadrilateral is 4√3.
- **Finding the diagonal:**
- Using the law of cosines, we can find the diagonal of the cyclic quadrilateral.
- Let the diagonal be 'd'.
- Using the formula: \( d^2 = a^2 + b^2 - 2ab \cos(\theta) \), where a = 2, b = 5, θ = 60º.
- \( d^2 = 2^2 + 5^2 - 2(2)(5)\cos(60º) \)
- \( d^2 = 4 + 25 - 20(\frac{1}{2}) \)
- \( d^2 = 4 + 25 - 10 \)
- \( d^2 = 19 \)
- \( d = \sqrt{19} \)
- **Calculating the perimeter:**
- The perimeter of the cyclic quadrilateral is the sum of all its sides.
- Given two adjacent sides are 2 and 5, and the diagonal is \( \sqrt{19} \).
- The other two sides can be found using the Pythagorean theorem, as the quadrilateral is cyclic.
- Let the other two sides be x and y.
- \( x^2 = 2^2 + (\sqrt{19})^2 \)
- \( x^2 = 4 + 19 = 23 \)
- \( x = \sqrt{23} \)
- Similarly, \( y^2 = 5^2 + (\sqrt{19})^2 \) gives \( y = \sqrt{44} = 2\sqrt{11} \)
- Therefore, the perimeter is: 2 + 5 + \( \sqrt{23} \) + \( 2\sqrt{11} \)
- **Final answer:**
- The perimeter of the cyclic quadrilateral is 7 + \( \sqrt{23} \) + \( 2\sqrt{11} \).
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The two adjacent sides of a cyclic quadrilateral are 2 and 5 and the angle between them is 60º.if the area of the quadrilatetal is 4root(3) ,then the perimeter of the quadrilateral is?
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