⚠️ DRAFT HANDOUT - NOT FINALIZED BY INSTRUCTOR - DO NOT PRINT YET

MATH-182 (Calculus II) Curriculum

Session 14 - Integration by Parts

Handout Worksheet
Fall Semester 2026
Session Objectives & Overview

By the end of this session, you will be able to:

  • Algebraic Bookkeeping and Boundary Tracking
  • Fluency in Core Calculus Operations (Moving in Both Directions)
  • Strategic Selection (The LIATE Rule & The Invisible 1 Trick)

Micro-Lecture

Engineering Context: Engineering Calculus II Application

Integration by parts transitions from a classroom exercise into a vital engineering tool whenever physical systems become dynamic, non-linear, or change over time. In mechanical and aerospace engineering, calculating critical structural properties like a chassis' center of mass or moment of inertia requires finding the volume of a solid, an operation that frequently forces engineers to integrate a distance variable multiplied by a geometric curve. Meanwhile, electrical and audio engineers rely on the technique daily to compute Laplace and Fourier transforms for signal processing, which isolates clean frequencies from messy data streams by integrating products of algebraic and exponential functions. Finally, in civil and chemical engineering, this math is fundamental to solving the complex differential equations that govern heat transfer or fluid dynamics; by utilizing partial integration to transform these intractable differential equations into a simplified "weak form," engineers can program Finite Element Method (FEM) simulators to predict exactly when and where a skyscraper or a nuclear reactor might fail under stress.

Skill Block 1

Regroup 1

  • Review common misconceptions and clarify key notations.

Skill Block 2

Regroup 2

  • Reflect on the physical modeling applications and mathematical setups.

Skill Block 3

Regroup 3

  • Verify calculations and mathematical reasoning.

Synthesis Wrap-up

  • Core takeaways from Session 14 and overview of homework homework assignment.