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Structural Engineering Calculations Exam summary

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This **Structural Engineering Calculation Exam Summary** is designed to help civil and structural engineering students master key concepts quickly and perform confidently in exams. The document simplifies complex topics into clear, easy-to-understand explanations, with a strong focus on calculations and problem-solving techniques commonly tested in exams. **What’s included:** • Step-by-step structural engineering calculations • Shear force and bending moment analysis • Beam analysis and support reactions • Stress and strain fundamentals • Key formulas and quick revision notes • Worked examples and solved problems • Exam-style questions for practice **Why this document is useful:** • Perfect for last-minute revision • Focuses on high-yield exam topics • Helps improve speed and accuracy in calculations • Suitable for undergraduate civil/structural engineering students This guide is ideal for students preparing for structural analysis exams, tests, or assignments, and is structured to make learning faster, easier, and more effective. Prepare smarter, understand better, and boost your exam performance with this complete structural engineering calculation summary.

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Structural Engineering Calculations Made
Easy




250+ Step-by-Step Worked Examples for Beams, Slabs, Columns, Foundations, Load Analysis,
and RC Design, Ideal for Students and Practicing Engineers




Shirley Clough




1

,All rights reserved.

No part of this book may be reproduced, stored in a retrieval system, or transmitted
in any form or by any means electronic, mechanical, photocopying, recording, or
otherwise without prior written permission from the publisher, except for brief
quotations in reviews or articles.

This is a work of nonfiction. Every effort has been made to ensure the accuracy of
the information presented.

However, the author and publisher assume no responsibility for errors, omissions, or
interpretations of the subject matter.




Copyright © 2025 by Shirley Clough




2

, Disclaimer
Structural Engineering Calculations Made Easy is provided strictly for educational and
reference purposes only.

All designs, calculations, examples, tables, and recommendations must be verified, certified, and
stamped by a qualified, licensed professional engineer (registered with COREN or the equivalent
regulatory body).

The author and publisher accept no liability for any errors, omissions, damages, losses, injuries,
or consequences arising from the use or application of this book.

This book is not a substitute for professional engineering judgment, site-specific investigation, or
compliance with the latest applicable codes and standards.

Use at your own risk.




3

, Table of Contents
Introduction: Embarking on the Journey of Structural Engineering Mastery............................................... 5
Chapter 1: Fundamentals of Structural Engineering .................................................................................. 14
History and Evolution of Structural Engineering .................................................................................... 14
Key Concepts, Terminology, and Design Principles ................................................................................ 19
Common Materials Used in Structural Design ........................................................................................ 22
Safety Factors, Codes, and Standards ..................................................................................................... 26
Chapter 2: Essential Calculations and Equations - Part 1 ........................................................................... 28
Equilibrium Equations and Free Body Diagrams ..................................................................................... 28
Stress, Strain, and Hooke's Law Applications ......................................................................................... 31
Moment of Inertia, Section Modulus, and Geometric Properties .......................................................... 35
Shear Force and Bending Moment Calculations ..................................................................................... 37
Chapter 3: Essential Calculations and Equations - Part 2 ........................................................................... 44
Deflection and Slope Equations for Beams and Frames ......................................................................... 44
Buckling Analysis and Euler's Formula .................................................................................................... 48
Dynamic Load Equations and Vibration Analysis .................................................................................... 50
Matrix Methods and Stiffness Equations for Structures......................................................................... 53
Chapter 4: Load Analysis in Structural Engineering .................................................................................... 56
Types of Loads: Dead, Live, Wind, Seismic, and Snow............................................................................ 56
Load Combinations and Factor of Safety Applications ........................................................................... 60
Load Distribution and Tributary Areas .................................................................................................... 62
Practical Examples of Load Take-Down in Multi-Story Buildings............................................................ 64
Chapter 5: Beam Design and Step-by-Step Examples................................................................................. 67
Simply Supported Beams: Analysis and Design ...................................................................................... 67
Continuous Beams: Moment Distribution Method ................................................................................ 70
Cantilever Beams: Shear and Moment Calculations............................................................................... 74
Over 50 Worked Examples for Beam Sizing and Reinforcement ............................................................ 75
Chapter 6: Slab Design and Step-by-Step Examples ................................................................................... 79
One-Way Slabs: Load Distribution and Reinforcement .......................................................................... 80
Two-Way Slabs: Direct Design Method .................................................................................................. 84
Flat Slabs and Punching Shear Considerations ....................................................................................... 88
Over 50 Worked Examples for Slab Thickness and Detailing.................................................................. 89



4

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April 28, 2026
Number of pages
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2025/2026
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