If cosα + isinα, b = co

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 Multiple Choice QuestionsMultiple Choice Questions

721.

The principal amplitude of sin40° + icos40°5 is

  • 70°

  • - 110°

  • 110°

  • - 70°


722.

If the relation between direction ratios of two lines are given by a + b + c = 0 and 2ab + 2ac - bc = 0, then the angle between the lines is

  • π

  • 2π3

  • π2

  • π3


723.

The value of 2cos56°15' +isin56°15'8

 

  • - 16i

  • 16i

  • 8i

  • 4i


724.

If a = i^ - j^ + 2k^ and b = 2i^ - j^ +k^, then the angle θ between a and b is given by

  • tan-11

  • sin-112

  • sec-11

  • tan-113


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725.

At t = 0, the function f(t) = sintt has

  • a minimum

  • a discontinuity

  • a point of inflexion

  • a maximum


726.

If r = 2r - 1Crm1m2 - 12mm + 1sin2m2sin2msin2m + 1, then the value of r = 0mr

  • 1

  • 0

  • 2

  • None of these


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727.

If cosα + isinα, b = cosβ + isinβ, c = cosγ + isinγ and bc + ca + ab = 1, then cosβ - γ + cosγ - α + cosα - β is equal to

  • 32

  • 32

  • 0

  • 1


D.

1

We have,

a = cosα + isinαb = cosβ + isinβc = cosγ + isinγ

Now, bc =  cosβ + isinβcosγ + isinγ × cosγ - isinγcosγ - isinγ= cosβ . cosγ + sinβ . sinγ + isinβ . cosγ - sinγ . cosβ           bc = cosβ - γ + isinβ - γ              ...(i)Similarly, ca = cosγ - α + isinγ - α              ...(ii)and          ab = cosα - β + isinα - β             ...(iii)On adding Eqs. (i),(ii), and (iii), we getcosβ - γ + cosγ - α + cosα - β + isinβ - γ + sinγ - α + sinα - β= 1                     as given bc + ca + ab = 1On equating real parts, we getcosβ - γ + cosγ - α + cosα - β = 1

 


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728.

The maximum value of 4 sin2(x) - 12sin(x) + 7 is

  • 25

  • 4

  • does not exist

  • None of the above


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729.

A line making angles 45° and 60° with the positive directions of the axes of x and y makes with the positive direction of z-axis, an angle of

  • 60°

  • 120°

  • 60° or 120°

  • None of these


730.

If I = 1001, J = 01- 10 and B = cosθsinθ- sinθcosθ, then B is equal to

  • I cosθ + Jsinθ

  • I sinθ + Jcosθ

  • I cosθ - Jsinθ

  • - I cosθ + Jsinθ


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