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Reinforced Concrete Design

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ISBN-10: 0471262862

ISBN-13: 9780471262862

Edition: 7th 2007 (Revised)

Authors: Chu Kia Wang, Charles G. Salmon, Jos� A. Pincheira, Chu-Kia Wang, Jos_ A. Pincheira

List price: $215.95
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Provides a philosophical approach to reinforced concrete design that has gained wide acceptance since the first edition was published in 1965. The strength and behavior of concrete elements are treated with the primary objective of explaining and justifying the rules and formulas of the ACI Building Code. This edition has a new co-author who teaches at one of the top schools for concrete design. * Emphasis throughout on the ACI approach involving strength and serviceability "limit states" and factored loads. * Up to date, reflecting recent changes that have occurred in design procedures for reinforced concrete structures.
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Book details

List price: $215.95
Edition: 7th
Copyright year: 2007
Publisher: John Wiley & Sons, Incorporated
Publication date: 7/28/2006
Binding: Hardcover
Pages: 960
Size: 8.25" wide x 10.25" long x 1.25" tall
Weight: 3.740
Language: English

Chu-Kia Wang, is Professor Emeritus in the Department of Civil and Environmental Engineering at the University of Wisconsin - Madison. His fields of interest include structural engineering, structural analysis and design, and computerized matrix method of analysis.

Conversion Factors
Introduction, Materials, and Properties
Design Methods and Requirements
Strenght of Rectangular Sections in Bending
Rectangular Sections in Bending Under Service Load Conditions
Shear Strenght and Shear Reinforcement
Development of Reinforcement
Continuity in Building Frames if Reinforced Concrete
Design of One-Way Slabs
T-Sections in Bending
Continuous Slab-Beam-Girder and Concrete
Monolithic Beam-to-Column Joints
Cantilever Retainiing Walls
Members in Compression and Bending
Length Effect on Columns
Design of Two-Way Floor Systems
Equivalent Frame Analysis of Two-Way Floor Systems in Unbraced Frames
Yield Line Theory of Slabs
Introduction to Prestressed Concrete
Composite Construction