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The sum of n terms of an A.P. is 3n2. The second term of this A.P. is ______.
Concept: undefined >> undefined
If the quadratic equation px2 − 2√5px + 15 = 0 has two equal roots then find the value of p.
Concept: undefined >> undefined
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Find the values of k for which the quadratic equation 9x2 - 3kx + k = 0 has equal roots.
Concept: undefined >> undefined
If -5 is a root of the quadratic equation 2x2 + px – 15 = 0 and the quadratic equation p(x2 + x)k = 0 has equal roots, find the value of k.
Concept: undefined >> undefined
If A, B, C are the interior angles of a triangle ABC, prove that `\tan \frac{B+C}{2}=\cot \frac{A}{2}`
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If (k – 3), (2k + l) and (4k + 3) are three consecutive terms of an A.P., find the value of k.
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Find the value of k for which the following equation has equal roots.
x2 + 4kx + (k2 – k + 2) = 0
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The 4th term of an A.P. is 22, and the 15th term is 66. Find the first term and the common difference. Hence, find the sum of the series to 8 terms.
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Without using trigonometric tables evaluate:
`(sin 65^@)/(cos 25^@) + (cos 32^@)/(sin 58^@) - sin 28^2. sec 62^@ + cosec^2 30^@`
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In the figure, m∠DBC = 58°. BD is the diameter of the circle. Calculate:
1) m∠BDC
2) m∠BEC
3) m∠BAC

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Solve for x using the quadratic formula. Write your answer corrected to two significant figures. (x - 1)2 - 3x + 4 = 0
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A two digit positive number is such that the product of its digits is 6. If 9 is added to the number, the digits interchange their places. Find the number.
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In the given figure, ∠BAD = 65°, ∠ABD = 70°, ∠BDC = 45°
1) Prove that AC is a diameter of the circle.
2) Find ∠ACB
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Solve the following equation:
`x - 18/x = 6` Give your answer correct to two significant figures.
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Calculate the area of the shaded region, if the diameter of the semicircle is equal to 14 cm. Take `pi = 22/7`

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When divided by x – 3 the polynomials x3 – px2 + x + 6 and 2x3 – x2 – (p + 3) x – 6 leave the same remainder. Find the value of ‘p’.
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Without solving the following quadratic equation, find the value of ‘p’ for which the roots are equal.
px2 – 4x + 3 = 0
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Using the Remainder Theorem, factorise each of the following completely.
3x3 + 2x2 – 23x – 30
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Factorise the expression f(x) = 2x3 – 7x2 – 3x + 18. Hence, find all possible values of x for which f(x) = 0.
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Given that x – 2 and x + 1 are factors of f(x) = x3 + 3x2 + ax + b; calculate the values of a and b. Hence, find all the factors of f(x).
Concept: undefined >> undefined
