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How to solve an integral with a double exponential? (2022 MIT Integration Bee)
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🔥 Day 124 — 2025 MIT Integration Bee (Qualifying) Q7 Evaluate: ∫ [ x*log(x)cos(x) − sin(x) ] / [ xlog(x)^2 ] dx This looks nasty… until you reorganize it. Rewrite the integrand so the structure screams “reverse quotient rule.” If you can spot the right function in the numerator/denominator pairing, the antiderivative pops out immediately. 👉 Hints • Rearrange as: [ log(x)*cos(x) − (sin(x)/x) ] / [ log(x)^2 ]. • Ask: whose derivative has that exact pattern? Would you recognize it under speed-run
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🔥 Day 133 — 2025 MIT Integration Bee (Qualifying) Q17 Evaluate: ∫ sin(x) * sinh(x) dx Wild mix of circular and hyperbolic functions. The fastest path is a classic double “integration by parts” loop: set up I = ∫ sin(x) sinh(x) dx, integrate by parts twice, and watch I appear on both sides so you can solve for it. 👉 Hints • First parts: u = sin x, dv = sinh x dx. • Second parts (on the new integral): u = cos x, dv = cosh x dx. • You’ll end with 2I = (sin x) cosh x − (cos x) sinh x. Would you ca
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