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so true
finally it all makes sense to me ☺☺ thanks dude.
np !!!!!!
Thank you so much!! Helped me understand this right before a quiz :D
Excellent!
It was really helpful :)
awesome!
Thanks sir, really helpful ✨🥺
👍
3:00 isn't this supposed to be 2 sqrt(3) ? because 3 / (x^2 + 3) = 1 / ( x / sqrt (3) )^2 + 1) right?
awesome! it is sort of making sense now!
+alopez1360 good!!
How do we get v= X pretty confused about it and one of my teachers said it gets cancelled out with the integral
You set u = ln (x²+3) and set dv = dx. That equation states that the derivative of v (dv) is the derivative of x (dx), so v must be x
I guess you didnt feel the need to explain wtf you were doing at the 1:50 mark. Fucking great
What would u call these type of problems i been looking for the all pver yt but all i find is integration of just ln(x)
"Integration by parts with ln(x)" is what I assume it'd be called.
hello, Please can you help me, I need help you to solve the equation, integral [ x * e^2x * ln(4-x^2)] dxIf you can help me now please 🥺
so true
finally it all makes sense to me ☺☺ thanks dude.
np !!!!!!
Thank you so much!! Helped me understand this right before a quiz :D
Excellent!
It was really helpful :)
awesome!
Thanks sir, really helpful ✨🥺
👍
3:00 isn't this supposed to be 2 sqrt(3) ? because 3 / (x^2 + 3) = 1 / ( x / sqrt (3) )^2 + 1) right?
awesome! it is sort of making sense now!
+alopez1360 good!!
How do we get v= X pretty confused about it and one of my teachers said it gets cancelled out with the integral
You set u = ln (x²+3) and set dv = dx. That equation states that the derivative of v (dv) is the derivative of x (dx), so v must be x
I guess you didnt feel the need to explain wtf you were doing at the 1:50 mark. Fucking great
What would u call these type of problems i been looking for the all pver yt but all i find is integration of just ln(x)
"Integration by parts with ln(x)" is what I assume it'd be called.
hello, Please can you help me, I need help you to solve the equation,
integral [ x * e^2x * ln(4-x^2)] dx
If you can help me now please 🥺