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Very nice, Prof PK. Pierre and I spent part of our lunch yesterday looking at this problem.
That's awesome to hear! Haha, lunch time integration sounds like a great time 👍👍👍
Tremendous problem and explanation professor
This is very nice indeed professor
Thank you kindly👍👍👍
Excellent presentation.
Thank you so much for your support👍👍👍
I like this one better than Feynmans trick🎉
Haha thanks a lot my friend👍👍👍
This one is so nice professor
Thanks a lot my friend👍👍👍
It's much easier to first use a substitution u=ln(x), and then using taylor series of sin(u). You end up directly with a sum of gamma functions which gives you the (2n)!, et voilà !
Nice! Thanks for sharing👍👍👍
awesome
1, 0 , sin(ln 1), ln 1, sin 1 (scientific solution)
Alex the stupiiiiidddddddddd Chan
Alex the crasey chan
Alex the out of mind Chan
Alex the mess chan
Very nice, Prof PK. Pierre and I spent part of our lunch yesterday looking at this problem.
That's awesome to hear! Haha, lunch time integration sounds like a great time 👍👍👍
Tremendous problem and explanation professor
This is very nice indeed professor
Thank you kindly👍👍👍
Excellent presentation.
Thank you so much for your support👍👍👍
I like this one better than Feynmans trick🎉
Haha thanks a lot my friend👍👍👍
This one is so nice professor
Thanks a lot my friend👍👍👍
It's much easier to first use a substitution u=ln(x), and then using taylor series of sin(u). You end up directly with a sum of gamma functions which gives you the (2n)!, et voilà !
Nice! Thanks for sharing👍👍👍
awesome
Thanks a lot my friend👍👍👍
1, 0 , sin(ln 1), ln 1, sin 1 (scientific solution)
Alex the stupiiiiidddddddddd Chan
Alex the crasey chan
Alex the out of mind Chan
Alex the mess chan