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15
Math.TechQA.Club
2020-09-24 18:46:27
122
Views
Taylor expansion of a function defined by a sum.
Published on
24 Sep 2020 - 18:46
#real-analysis
#complex-analysis
#taylor-expansion
#laurent-series
54
Views
Laurent series and rearrangement of its terms
Published on
25 Sep 2020 - 14:45
#sequences-and-series
#complex-analysis
#laurent-series
67
Views
Convergence of a sum of two power series
Published on
25 Sep 2020 - 21:26
#sequences-and-series
#complex-analysis
#laurent-series
39
Views
Function computing the order of a pole
Published on
29 Mar 2026 - 7:21
#complex-analysis
#laurent-series
#singularity
119
Views
Expand $\frac{1}{(z^2+1)^2}$ in a Laurent Series in the neighborhood of $z=i$
Published on
11 Oct 2020 - 20:26
#complex-analysis
#laurent-series
151
Views
Series Expansion of $f(z) =$ $\frac{e^z}{z^3}$
Published on
13 Oct 2020 - 0:38
#complex-analysis
#complex-numbers
#power-series
#taylor-expansion
#laurent-series
31
Views
Obtaining a Laurent expansion
Published on
23 Oct 2020 - 9:51
#complex-analysis
#laurent-series
56
Views
Why isn't $\sum_{k=0}^\infty (-1)^kz^{-2k-1}=\sum_{-\infty}^{-1}\frac{z^m}{i^{m+1}}$?
Published on
24 Oct 2020 - 14:26
#complex-analysis
#complex-numbers
#laurent-series
79
Views
Series expansion of $(x - 1)^{-1}$ about infinity
Published on
26 Oct 2020 - 20:13
#complex-integration
#laurent-series
94
Views
Laurent series and apparent essential singularity
Published on
28 Mar 2026 - 22:25
#complex-analysis
#laurent-series
#singularity
#singularity-theory
110
Views
Find all possible Laurent expansions
Published on
29 Oct 2020 - 6:23
#sequences-and-series
#complex-analysis
#laurent-series
79
Views
How do I find the Laurent series for $\frac{1}{(1+\cos z)^2}$ around $z_0=\pi$?
Published on
08 Nov 2020 - 21:42
#complex-analysis
#laurent-series
2.9k
Views
Find the residue of $1/(z^2+1)^{n+1}$ at $z=i$.
Published on
10 Nov 2020 - 2:03
#complex-analysis
#residue-calculus
#laurent-series
41
Views
solve for the Laurent series of the function $f(z) = \frac{z-12}{z^2+z-6}$ that is valid for $1<|z-1|<4$.
Published on
10 Nov 2020 - 7:27
#complex-analysis
#analysis
#laurent-series
199
Views
Find the Laurent Series expansion for $\displaystyle{f(z) = ze^{1/(z-1)}}$ valid for $\left|z-1\right|> 0$
Published on
10 Nov 2020 - 8:46
#complex-analysis
#complex-numbers
#complex-integration
#laurent-series
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