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==Misleading title?==
The title of this article seems misleading, since the term ''integration using complex analysis'' would usually be construed as meaning things like the [[residue calculus]]. [[User:Michael Hardy|Michael Hardy]] ([[User talk:Michael Hardy|talk]]) 15:15, 30 August 2008 (UTC)
:What do you think about the title "[[Complexifying the integral]]"? This is the terminology used by Prof. Mattuck of MIT [http://www.youtube.com/watch?v=CpM1jJ0lob8] [[User:Hamsterlopithecus|Hamsterlopithecus]] ([[User talk:Hamsterlopithecus|talk]]) 19:48, 6 August 2011 (UTC)
== 'extremely tedious' simply not true ==
It is just as straightforward to solve the 2nd integral using trig identities, no more than 3 lines of working using a total of 2 trig identities.
'extremely tedious' is in fact, extremely misleading <small><span class="autosigned">— Preceding [[Wikipedia:Signatures|unsigned]] comment added by [[User:Wikidness69|Wikidness69]] ([[User talk:Wikidness69|talk]] • [[Special:Contributions/Wikidness69|contribs]]) 05:52, 24 April 2015 (UTC)</span></small><!-- Template:Unsigned --> <!--Autosigned by SineBot-->
== Copied and pasted from another site ==
Seems like most if the stuff has been simply copied and pasted from this site:
https://handwiki.org/wiki/Integration_using_Euler%27s_formula#:~:text=In%20integral%20calculus%2C%20Euler's%20formula,i%20x%20and%20then%20integrated.
Please confirm [[User:Uddhav9|Uddhav9]] ([[User talk:Uddhav9|talk]]) 15:31, 30 October 2021 (UTC)
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