The Supplement includes the entire Uniform Commercial Code as of May 2023, excluding Article 6, and also includes a selection of other federal statutes and regulations, uniform state laws, and Restatement provisions, aiming to include those items most commonly used in commercial law courses. This leads, among other things, to the inclusion of the Truth in Lending Act, Electronic Funds Transfer Act, the Federal Tax Lien Act, the Uniform Electronic Transactions Act, excerpts from the CISG, and from the ICC’s uniform rules for letters of credit. The Bankruptcy Code, as of April 1, 2023, is reproduced in full. Unlike the UCC, there are no official comments for the Bankruptcy Code, and the legislative history is spotty at best. As a result, only the Code is offered here. In addition, selections from Title 18 and Title 28 of the United States Code that are relevant to bankruptcy law are included.
The first textbook on the design of FRP for structural engineering applications Composites for Construction is a one-of-a-kind guide to understanding fiber-reinforced polymers (FRP) and designing and retrofitting structures with FRP. Written and organized like traditional textbooks on steel, concrete, and wood design, it demystifies FRP composites and demonstrates how both new and retrofit construction projects can especially benefit from these materials, such as offshore and waterfront structures, bridges, parking garages, cooling towers, and industrial buildings. The code-based design guidelines featured in this book allow for demonstrated applications to immediately be implemented in the real world. Covered codes and design guidelines include ACI 440, ASCE Structural Plastics Design Manual, EUROCOMP Design Code, AASHTO Specifications, and manufacturer-published design guides. Procedures are provided to the structural designer on how to use this combination of code-like documents to design with FRP profiles. In four convenient sections, Composites for Construction covers: * An introduction to FRP applications, products and properties, and to the methods of obtaining the characteristic properties of FRP materials for use in structural design * The design of concrete structural members reinforced with FRP reinforcing bars * Design of FRP strengthening systems such as strips, sheets, and fabrics for upgrading the strength and ductility of reinforced concrete structural members * The design of trusses and frames made entirely of FRP structural profiles produced by the pultrusion process
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