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Civil Engineering Reference Manual for the PE Exam, 14th Ed, by Michael R. Lindeburg PE
Ebook Free Civil Engineering Reference Manual for the PE Exam, 14th Ed, by Michael R. Lindeburg PE
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Comprehensive Civil Engineering Coverage You Can Trust
The Civil Engineering Reference Manual is the most comprehensive textbook for the NCEES Civil PE exam. This book’s time-tested organization and clear explanations start with the basics to help you quickly get up to speed with common civil engineering concepts. Together, the 90 chapters provide an in-depth review of all of the topics, codes, and standards listed in the NCEES Civil PE exam specifications. The extensive index contains thousands of entries, with multiple entries included for each topic, so you’ll find what you’re looking for no matter how you search.
Due to the changes in codes for the 2015 NCEES PE exam, there are some updates to this edition. Though not all of PPI's products reflect the adopted editions of the new design standards, in most cases the principles change very little. While specific procedures, equations, or values may change gradually from one edition of a design or reference standard to the next, PPI’s books continue to provide an appropriate overview of the design concepts presented, and will prepare you for the upcoming exams.
This book features:
- over 100 appendices containing essential support material
- over 500 clarifying examples
- over 550 common civil engineering terms defined in an easy-to-use glossary
- thousands of equations, figures, and tables
- industry-standard terminology and nomenclature
- equal support of U.S. customary and SI units
After you pass your exam, the Civil Engineering Reference Manual will continue to serve as an invaluable reference throughout your civil engineering career.
Topics Covered
- Construction: Earthwork Construction and Layout; Estimating Quantities and Costs; Construction Operations and Methods; Scheduling; Material Quality Control and Production; Temporary Structures; Worker Health, Safety, and Environment
- Geotechnical: Subsurface Exploration and Sampling; Engineering Properties of Soils and Materials; Soil Mechanics Analysis; Earth Structures; Shallow Foundations; Earth Retaining Structures; Deep Foundations
- Structural: Loadings; Analysis; Mechanics of Materials; Materials; Member Design; Design Criteria
- Transportation: Traffic Analysis; Geometric Design; Transportation Planning; Traffic Safety
- Water Resources and Environmental: Closed Conduit Hydraulics; Open Channel Hydraulics; Hydrology; Groundwater and Well Fields; Wastewater Treatment; Water Quality; Water Treatment; Engineering Economics
- Sales Rank: #64311 in Books
- Published on: 2014-07-01
- Original language: English
- Number of items: 1
- Dimensions: 11.00" h x 2.25" w x 8.50" l,
- Binding: Hardcover
- 1584 pages
About the Author
Michael R. Lindeburg, PE, is one of the best-known authors of engineering textbooks and references. His books and courses have influenced millions of engineers around the world. Since 1975, he has authored more than 30 engineering reference and exam preparation books. He has spent thousands of hours teaching engineering to students and practicing engineers. He holds bachelor of science and master of science degrees in industrial engineering from Stanford University.
Excerpt. © Reprinted by permission. All rights reserved.
1. INTRODUCTION
Structural members subjected to axial compressive loads are often called by names identifying their functions. Of these, the best-known are columns, the main vertical compression members in a building frame. Other common compression members include chords in trusses and bracing members in frames.
The selection of a particular shape for use as a compression member depends on the type of structure, the availability, and the connection methods. Load-carrying capacity varies approximately inversely with the slenderness ratio, so stiff members are generally required. Rods, bars, and plates, commonly used as tension members, are too slender to be used as compression members unless they are very short or lightly loaded.
For building columns, W shapes having nominal depths of 14 in or less are commonly used. These sections, being rather square in shape, are more efficient than others for carrying compressive loads. (Deeper sections are more efficient as beams.) Pipe sections are satisfactory for small or medium loads. Pipes are often used as columns in long series of windows, in warehouses, and in basements and garages. In the past, square and rectangular tubing saw limited use, primarily due to the difficulty in making bolted or riveted connections at the ends. Modern welding techniques have essentially eliminated this problem.
Built-up sections are needed in large structures for very heavy loads that cannot be supported by individual rolled shapes. For bracing and compression members in light trusses, single-angle members are suitable. However, equal-leg angles may be more economical than unequal-leg angles because their least radius of gyration values are greater for the same area of steel. For top chord members of bolted roof trusses, a pair of angles (usually unequal legs, with long legs back-to-back to give a better balance between the radius of gyration values about the x-and y-axes) are used with or without gusset plates. In welded roof trusses, where gusset plates are unnecessary, structural tees are used as top chord members.
Most helpful customer reviews
11 of 12 people found the following review helpful.
I highly recommend buying a separate construction study guide
By Bb
I gave it three stars because I took the Construction Depth exam, and this reference has very little construction information. I highly recommend buying a separate construction study guide. However, this reference was quite useful to me during the morning exam for the non-construction problems.
HUGE reference, and it has way more information than you would need for any PE exam. I do not recommend using this as a study guide (except for the example problems), just a pure reference like the design standards. Once you narrow down the sections specific to your exam, the material is very useful. Some of the problems were representative of the exam, and others were so complex, they could never be solved in the average 6 minutes per problem (at least not by me). It is good to work those more complex problems for your depth area, so you have a better understanding of the topic. For the exam though, you might have to do two or three steps of those really complex problems.
20 of 23 people found the following review helpful.
WHY WOULD I BUY THIS BOOK!?!?
By JakeTheSnake35
Hold on a second . . . I'm confused why anyone is even buying this book other than just wanting to expand their personal library!
First off, from the 13th edition to the 14th edition the only code that updated is the AASHTO that went from 2010 to 2012. All the others (ACI 318, ACI 530, AISC, ASCE 7, IBC, and NDS) stayed the exact same as the 13th edition! AND even though the AASHTO code was updated it is STILL out of date of the current NCEES PE Exam tested material. Here's a link to NCEES design codes tested for the Civil/Structural:
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