Masonry Structural Design, Third Edition: TMS 402/602-22 and ASCE 7-22, 9781266171239
Hardcover
Master masonry design: TMS 402⁄602-22 & ASCE 7-22 explained.
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Masonry Structural Design, Third Edition: TMS 402/602-22 and ASCE 7-22

$473.53

  • Hardcover

    528 pages

  • Release Date

    5 September 2025

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Summary

Master Masonry Design: TMS 402⁄602-22 and ASCE 7-22

Get completely up to date on the masonry requirements in the TMS 402 Building Code Requirements for Masonry Structures

Masonry Structural Design, Third Edition, provides the information and insights you need to ensure that beams, columns, walls, and other building elements are designed to exceed ASCE 7 factored loads.

This comprehensive guide written by top experts in the field shows how to…

Book Details

ISBN-13:9781266171239
ISBN-10:1266171231
Author:Jennifer Eisenhauer Tanner
Publisher:McGraw-Hill Education
Imprint:McGraw-Hill Education
Format:Hardcover
Number of Pages:528
Edition:3rd
Release Date:5 September 2025
Weight:912g
About The Author

Jennifer Eisenhauer Tanner

Jennifer Eisenhauer Tanner, PhD, PE, is an associate professor of Civil and Architectural Engineering at the University of Wyoming. She is chair of ACI Committee 526, Autoclaved Aerated Concrete, and served as a member of TMS 402 (masonry code) for 12 years. Tanner earned the ACI Young Member Award for Professional Achievement and was made an ACI Fellow in 2016. Her research interests include laboratory and field testing; nondestructive testing; concrete and masonry durability, building performance, and material performance.

Richard E. Klingner, PhD, is emeritus professor of Civil, Architectural, and Environmental Engineering at the University of Texas. He was active in numerous technical committees including The Masonry Society, the American Concrete Institute, the American Society of Civil Engineers, and the American Society for Testing and Materials, and he served as Chair of the Masonry Standards Joint Committee. Klinger’s research interests include the behavior and design of masonry structures for earthquake loads.

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