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Write the value of \[\sqrt{- 25} \times \sqrt{- 9}\].
Concept: undefined >> undefined
Write the sum of the series \[i + i^2 + i^3 + . . . .\] upto 1000 terms.
Concept: undefined >> undefined
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Write the value of \[\arg\left( z \right) + \arg\left( \bar{z} \right)\].
Concept: undefined >> undefined
If \[\left| z + 4 \right| \leq 3\], then find the greatest and least values of \[\left| z + 1 \right|\].
Concept: undefined >> undefined
For any two complex numbers z1 and z2 and any two real numbers a, b, find the value of \[\left| a z_1 - b z_2 \right|^2 + \left| a z_2 + b z_1 \right|^2\].
Concept: undefined >> undefined
If n ∈ \[\mathbb{N}\] then find the value of \[i^n + i^{n + 1} + i^{n + 2} + i^{n + 3}\] .
Concept: undefined >> undefined
Find the real value of a for which \[3 i^3 - 2a i^2 + (1 - a)i + 5\] is real.
Concept: undefined >> undefined
If \[\left| z \right| = 2 \text { and } \arg\left( z \right) = \frac{\pi}{4}\],find z.
Concept: undefined >> undefined
Write the argument of \[\left( 1 + i\sqrt{3} \right)\left( 1 + i \right)\left( \cos\theta + i\sin\theta \right)\].
Disclaimer: There is a misprinting in the question. It should be \[\left( 1 + i\sqrt{3} \right)\] instead of \[\left( 1 + \sqrt{3} \right)\].
Concept: undefined >> undefined
The value of \[(1 + i)(1 + i^2 )(1 + i^3 )(1 + i^4 )\] is.
Concept: undefined >> undefined
If `(3+2i sintheta)/(1-2 i sin theta)`is a real number and 0 < θ < 2π, then θ =
Concept: undefined >> undefined
If\[z = \cos\frac{\pi}{4} + i \sin\frac{\pi}{6}\], then
Concept: undefined >> undefined
The polar form of (i25)3 is
Concept: undefined >> undefined
If i2 = −1, then the sum i + i2 + i3 +... upto 1000 terms is equal to
Concept: undefined >> undefined
If \[z = \frac{- 2}{1 + i\sqrt{3}}\],then the value of arg (z) is
Concept: undefined >> undefined
If a = cos θ + i sin θ, then \[\frac{1 + a}{1 - a} =\]
Concept: undefined >> undefined
The principal value of the amplitude of (1 + i) is
Concept: undefined >> undefined
The least positive integer n such that \[\left( \frac{2i}{1 + i} \right)^n\] is a positive integer, is.
Concept: undefined >> undefined
If z is a non-zero complex number, then \[\left| \frac{\left| z \right|^2}{zz} \right|\] is equal to
Concept: undefined >> undefined
If (x + iy)1/3 = a + ib, then \[\frac{x}{a} + \frac{y}{b} =\]
Concept: undefined >> undefined
