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OpenStudy (kayders1997):
Okay
OpenStudy (kayders1997):
I just showed you what the problem looks like on twiddle so you can see it better
zepdrix (zepdrix):
Mmm I'm trying to remember how to do these,
jump back into the twiddla
zepdrix (zepdrix):
Oh maybe you went to bed hehe
OpenStudy (kayders1997):
@RhondaSommer
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OpenStudy (kayders1997):
@FortyTheRapper
RhondaSommer (rhondasommer):
can you do a screen shot?
OpenStudy (kayders1997):
No
OpenStudy (kayders1997):
@mathmale
OpenStudy (anonymous):
\[\frac{ 1 }{ x^2+2x-5 }dx\]is this equation right what you have typed
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OpenStudy (anonymous):
\[\int\limits_{1}^{4}\frac{ 1 }{ x^2+2x-5 }dx\]
OpenStudy (anonymous):
convert equation in perfect square \[x^2+2x-5 = (x+1)^2-6\]
and than use property of integration
\[\int\limits_{?}^{?}\frac{ 1 }{ x^2-b^2 }\]
than put value
OpenStudy (anonymous):
\[\int\limits_{1}^{4}x^2+2x-5\]
this was also same convert equation in perfect square than use property\[\int\limits_{1}^{4}(x^2-b^2)dx\]
OpenStudy (kayders1997):
I have to go through the long proof that takes a billion steps no joke