MHT CET · Maths · Indefinite Integration
\(\int \frac{3 x-2}{(x+1)(x-2)^2} d x=\)
(where \(C\) is a constant of integration.)
- A \(\frac{-5}{9} \log (x+1)+\frac{5}{9} \log (x-2)-\frac{4}{3} \times \frac{1}{(x-2)}+C\)
- B \(\frac{1}{9} \log (x+1)+\frac{5}{9} \log (x-2)-\frac{4}{3} \times \frac{1}{(x-2)}+C\)
- C \(\frac{-5}{9} \log (x+1)+\frac{5}{9} \log (x-2)-\frac{4}{3} \times \frac{1}{x-2}+C\)
- D \(\frac{-5}{9} \log (x+1)+\frac{1}{9} \log (x-2)+\frac{1}{x-2}+C\)
Answer & Solution
Correct Answer
(A) \(\frac{-5}{9} \log (x+1)+\frac{5}{9} \log (x-2)-\frac{4}{3} \times \frac{1}{(x-2)}+C\)
Step-by-step Solution
Detailed explanation
\(\int \frac{3 x-2}{(x+1)(x-2)^2} d x=\int\left\{\frac{-5}{9(x+1)}+\frac{5}{9(x-2)}+\frac{4}{3(x-2)^2}\right\} d x\)
[Using partial fraction]
\(=-\frac{5}{9} \log |x+1|+\frac{5}{9} \log |x-2|-\frac{4}{3(x-2)}+C\)
[Using partial fraction]
\(=-\frac{5}{9} \log |x+1|+\frac{5}{9} \log |x-2|-\frac{4}{3(x-2)}+C\)
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