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Choose the correct alternative:
If = `((sqrt(3) + "i")^3 (3"i" + 4)^2)/(8 + 6"i")^2`, then |z| is equal to
Concept: undefined >> undefined
Choose the correct alternative:
If z is a non zero complex number, such that 2iz2 = `bar(z)` then |z| is
Concept: undefined >> undefined
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Choose the correct alternative:
If |z – 2 + i| ≤ 2, then the greatest value of |z| is
Concept: undefined >> undefined
Choose the correct alternative:
If (1 + i)(1 + 2i)(1 + 3i) ……. (l + ni) = x + iy, then 2.5.10 …… (1 + n2) is
Concept: undefined >> undefined
Choose the correct alternative:
If α and β are the roots of x² + x + 1 = 0, then α2020 + β2020 is
Concept: undefined >> undefined
Choose the correct alternative:
The value of `((1 + sqrt(3)"i")/(1 - sqrt(3)"i"))^10` is
Concept: undefined >> undefined
Choose the correct alternative:
If f and g are polynomials of degrees m and n respectively, and if h(x) = (f o g)(x), then the degree of h is
Concept: undefined >> undefined
Choose the correct alternative:
A polynomial equation in x of degree n always has
Concept: undefined >> undefined
Find the domain of the following functions:
`tan^-1 (sqrt(9 - x^2))`
Concept: undefined >> undefined
Find the domain of the following functions:
`1/2 tan^-1 (1 - x^2) - pi/4`
Concept: undefined >> undefined
Find the value of `tan^-1(tan (5pi)/4)`
Concept: undefined >> undefined
Find the value of `tan^-1 (tan(- pi/6))`
Concept: undefined >> undefined
Find the value of `tan(tan^-1((7pi)/4))`
Concept: undefined >> undefined
Find the value of `tan(tan^-1(1947))`
Concept: undefined >> undefined
Find the value of `tan(tan^-1(- 0.2021))`
Concept: undefined >> undefined
Find the value of `tan(cos^-1 (1/2) - sin^-1 (- 1/2))`
Concept: undefined >> undefined
Find the value of `sin(tan^-1 (1/2) - cos^-1 (4/5))`
Concept: undefined >> undefined
Find the value of `cos(sin^-1 (4/5) - tan^-1 (3/4))`
Concept: undefined >> undefined
Find the equation of the tangent at t = 2 to the parabola y2 = 8x (Hint: use parametric form)
Concept: undefined >> undefined
Find the equations of the tangent and normal to hyperbola 12x2 – 9y2 = 108 at θ = `pi/3`. (Hint: use parametric form)
Concept: undefined >> undefined
