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Solution Manual for Structural Load Determination: 2024 IBC and ASCE/SEI 7-22 (2nd Edition) by David A. Fanella – Complete step-by-step solutions aligned with the main text’s load-determination chapters, covering dead, live, snow, rain, wind, earthquake,

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This Solution Manual for Structural Load Determination: 2024 IBC and ASCE/SEI 7-22 (2nd Edition) by David A. Fanella is an essential resource for structural engineering students, instructors, and practicing engineers working with the latest building-code load provisions. The main textbook provides up-to-date guidance on determining structural loads in accordance with the 2024 edition of the International Building Code (IBC) and the ASCE/SEI 7‑22 standard. VitalSource +1 This solution manual mirrors the textbook’s structure, offering fully worked-out solutions to all the example and end-of-chapter problems, helping users verify their answers and understand the detailed methodology behind each calculation. The manual begins with load-combination topics and continues through the spectrum of load types: dead loads, live loads (including reduction provisions), rain, snow, and ice loads; lateral loads including wind (with new tornado provisions), earthquake, flood and tsunami loads. ICC Store +1 Each solution includes clear explanation of the applicable code provisions, assumptions made, unit consistency (including metric conversions), and commentary on interpretation of key sections of the IBC/ASCE standard. This context is particularly valuable for students bridging theory with practice, and for professionals ensuring compliance with the latest code changes. The manual is especially helpful in teaching and self-study contexts: students can attempt the problems on their own, then consult the manual to check for accuracy, methods, and logic. Instructors can use it to design assignments, exams, or classroom discussions with confidence, having a reliable reference for correct answers. For practicing engineers, it serves as a quick reference when reviewing code-based load calculations, or when verifying work by junior engineers or design teams. What makes this edition useful is its alignment with the latest code cycle: it incorporates metric units in all chapters and examples, broadening its applicability globally. Barnes & Noble +1 The detailed solutions allow users to trace through each step of the load-determination process, not just for one type of load but for a full set of building-design relevant loads, including gravity and lateral systems, and how load-paths and interactions are handled per code. In summary, if you are studying or teaching structural load determination, or you are a design professional needing to ensure code-compliant load calculations under the 2024 IBC and ASCE/SEI 7-22, this solution manual is a comprehensive, trusted companion. It supports deeper understanding of structural loads, reinforces disciplined engineering reasoning, and enhances readiness for both academic assessment and professional practice.

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Uploaded on
October 31, 2025
Number of pages
148
Written in
2025/2026
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SOLUTIONS

, CHAPTER 2
Load Combinations

Problem 2.1

SOLUTION

Table P2.1 Summary of Load Combinations Using Strength Design for Beam in Problem 2.1
Load Combination
IBC Equation No. Equation Exterior Interior
Positive
Negative Negative
16-1 1.4D –18.6 61.5 –74.5
16-2 1.2D + 1.6L –36.6 120.7 –146.4
16-3, 16-4, 16-5 1.2D + 0.5L –22.4 73.9 –89.6
16-6, 16-7 0.9D –12.0 39.5 –47.9




Problem 2.2

SOLUTION

Table P2.2 Summary of Load Combinations Using Strength Design for Beam in
Problem 2.2
Load Combination
IBC Equation
Equation Bending Moment Shear Force
No.
Support Midspan Support
16-1 1.4D –80.6 57.5 16.5
16-2 1.2D + 1.6L –105.1 75.2 21.5
1.2D + 0.5L –80.4 57.4 16.5
16-3 1.2D + 0.5W –42.1 49.3 11.8
1.2D – 0.5W –96.1 49.3 16.6
1.2D + 1.0W + 0.5L –26.4 57.4 11.7
16-4
1.2D – 1.0W + 0.5L –134.4 57.4 21.3
16-5 1.2D + 0.5L –80.4 57.4 16.5
0.9D + 1.0W 2.2 37.0 5.8
16-6
@SOLUTIONSSTUDY

, 100891
0.9D – 1.0W –105.8 37.0 15.4




16-7 0.9D –51.8 37.0 10.6

1 @Seismicisolation
@Seismicisolation

Copyright © 2018 ICC. ALL RIGHTS RESERVED. Accessed by Mohammed Mujtaba Hammed (), (-) Order Number #100891294 on May 30, 2020 08:24 PM (PDT) pursuant to License
Agreement with ICC. No further reproduction, no further reproductions by any third party, or distribution authorized. Single user only, copying and networking prohibited. ANY UNAUTHORIZED
REPRODUCTION OR DISTRIBUTION IS A VIOLATION OF THE FEDERAL COPYRIGHT ACT AND THE LICENSE AGREEMENT, AND SUBJECT TO CIVIL AND CRIMINAL PENALTIES THEREUNDER

, 2 Solutions Manual to Structural Loads


Problem 2.3

SOLUTION

Table P2.3 Summary of Load Combinations Using Basic Allowable Stress Design for Beam in
Problem 2.3
Load Combination
IBC Equation
Equation Bending Moment Shear Force
No.
Support Midspan Support
16-8, 16-10 D –57.6 41.1 11.8
16-9 D+L –80.1 57.3 16.4
16-11, 16-14 D + 0.75L –74.5 53.3 15.3
D + 0.6W –25.2 41.1 8.9
16-12
D – 0.6W –90.0 41.1 14.7
D + 0.75(0.6W) + 0.75L –50.2 53.3 13.1
16-13
D – 0.75(0.6W) + 0.75L –98.8 53.3 17.4
0.6D + 0.6W –2.2 24.7 4.2
16-15
0.6D – 0.6W –67.0 24.7 10.0
16-16 0.6D –34.6 24.7 7.1




Problem 2.4

SOLUTION

Table P2.4 Summary of Load Combinations Using Alternative Basic Allowable Stress Design
for Beam in Problem 2.4
Load Combination
IBC Equation
Equation Bending Moment Shear Force
No.
Support Midspan Support
16-17, 16-21 D+L –80.1 57.3 16.4
D + L + 0.6 W –38.0 57.3 12.7
16-18, 16-19
D + L – 0.6 W –122.2 57.3 20.1
D + L + 0.6 W/2 –59.0 57.3 14.5
16-20
D + L – 0.6 W/2 –101.2 57.3 18.3
16-22 0.9D –51.8 37.0 10.6




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