Skuxxgolfer
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Especially stupid_girls integrals. My friend and I tried the last one but couldn't get it out.I like how the thread originally started with "Post integration questions within scope of MX2", but now it's just whatever goes haha.
What book are these questions from?Yes I just checked it on wolfram, its 1/2. Answer in the book must've been wrong. Will update post.
Admittedly, I went through a lengthy process (including looking up a standard integral table for ) and it was only at the end I realised that everything I did could be compressed into one substitution.Nice one, didn't think of that haha, trivial using a smart substitution!
These are all beyond the scope of the syllabus.
My method is similar to yours. DI table may make the integration by parts neater.I have a feeling this is not the fastest method...
(the proof is left as an exercise to the reader.)
From here, I will use the result , which is not difficult to verify via the appropriate double angle identity.
Note that the absolute value is important when evaluating the lower bound.
Have anyone figured out?This one is challenging if you can't think of a useful substitution.
This integral itself should be quite routine. Getting the final answer in terms of pi is slightly tricky.This one is relatively routine.
intuition said it was φ-like but i didn't want to stay up that late to figure it out;Clearly, the useful substitution is
How are you supposed to know phi is a good sub here? I mean looking at the original question aloneHave anyone figured out?
The trick is:
Clearly, the useful substitution is
Inspection.How are you supposed to know phi is a good sub here? I mean looking at the original question alone
After dividing top and bottom by 27^x, the integral is in the form 1/(p^x+q^x+r^x). If this integral has an elementary form, then there must be a relationship between p,q and r. After some trial and error, you would get that relationship.How are you supposed to know phi is a good sub here? I mean looking at the original question alone