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 Multiple Choice QuestionsMultiple Choice Questions

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211.

If α and β are the roots of x2 - 2x + 4 = 0, then the value of α6 + β6 is

  • 32

  • 64

  • 128

  • 256


C.

128

Given, α, β are the roots of x2 - 2x + 4 = 0 α + β = 2      ...iand    αβ = 4      ...iiNow, α - β = α + β2 - 4αβ                    = 4 - 4 × 4 = - 12 α - β = 23i      ...iiiOn solving Eqs. (i) and (ii), we get        α = 2 + 23i2 = - 2- 1 - 3i2 =- 2w2and β = 2 - 23i2 = - 2- 1 + 3i2 =- 2wNow, α6 + β6 = - 2w26 + - 2w6                      = 64w34 + 64w32                      = 128         w3 = 1


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212.

If n is an integer which leaves remainder one when divided by three, then 1 + 3in + 1 - 3in equals

  • - 2n + 1

  • 2n + 1

  • - (- 2)n

  • - 2n


213.

Let α  1 be a real root of the equation x3 - ax2 + ax - 1 = 0, where a  - 1 is a real number. Then, a root of this equation, among the following, is

  • α2

  • - 1α

  • 1α

  • - 1α2


214.

If z = 1 + i3, then Arg z + Arg z = ?

  • 0

  • π3

  • π2

  • 2π3


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215.

If ω is a complex cube root of unity, (x + 1) (x + ω)(x - ω - 1) is equal to

  • x3 - 1

  • x3 + 1

  • x3 + 2

  • x3 - 2


216.

3 + i7 + 3 - i7 = ?

  • 1283

  • 2563

  • - 1283

  • - 2563


217.

If tan(A) and tan(B) are the roots of the quadratic equation x- px + q = 0, then sin2(A + B) is equal to

  • p2p2 + q2

  • p2p2 +q2

  • 1 -  p1 - q2

  • p2p2 + 1 - q2


218.

The value of a for which the equations x+ ax + 1 = 0 and x4 + ax2 + 1 = 0 have acommon root is

  • - 2

  • - 1

  • 1

  • 2


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219.

The locus of the complex number z such that argz - 2z +2 = π3 is 

  • a circle 

  • a straight line 

  • a parabola 

  • an ellipse


220.

1 +i20111 - i2009 = ?

  • - 1

  • 1

  • 2

  • - 2


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