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Engineering Materials 1

An Introduction to Properties, Applications and Design - Fifth Edition

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Widely adopted globally, this core materials science and engineering text serves third- and fourth-year undergraduate students, offering a broad introduction to the mechanical and environmental properties of materials in diverse engineering applications. The concise format presents each chapter as a single lecture, with content organized into groups focused on specific property classes. Each group includes definitions, measurement techniques, underlying principles, and materials selection methods, concluding with case studies that illustrate real-world engineering challenges. The 5th edition features expanded coverage of properties, new case studies, additional exercises, and enhanced pedagogy. It is suitable as a standalone text for a one-semester course or as an introductory resource alongside its companion volume for a two-semester sequence. New chapters address magnetic, optical, thermal, and electrical properties, complemented by relevant case studies. The pedagogy has been improved with more photographs, a new glossary, additional worked examples, and 50% more graded exercises. The discussion of supply and demand has been refined, and the text explores how nanomaterials differ from larger-scale materials. Additionally, new case studies focus on medical materials and biomaterials.

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Engineering Materials 1, David R. H. Jones, Michael F. Ashby

Taal
Jaar van publicatie
2018
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Titel
Engineering Materials 1
Ondertitel
An Introduction to Properties, Applications and Design - Fifth Edition
Taal
Engels
Jaar van publicatie
2018
Formaat
Paperback
Aantal pagina's
586
ISBN10
0081020511
ISBN13
9780081020517
Reeks
Beoordeling
4,55 van 5
Aantekening
Widely adopted globally, this core materials science and engineering text serves third- and fourth-year undergraduate students, offering a broad introduction to the mechanical and environmental properties of materials in diverse engineering applications. The concise format presents each chapter as a single lecture, with content organized into groups focused on specific property classes. Each group includes definitions, measurement techniques, underlying principles, and materials selection methods, concluding with case studies that illustrate real-world engineering challenges. The 5th edition features expanded coverage of properties, new case studies, additional exercises, and enhanced pedagogy. It is suitable as a standalone text for a one-semester course or as an introductory resource alongside its companion volume for a two-semester sequence. New chapters address magnetic, optical, thermal, and electrical properties, complemented by relevant case studies. The pedagogy has been improved with more photographs, a new glossary, additional worked examples, and 50% more graded exercises. The discussion of supply and demand has been refined, and the text explores how nanomaterials differ from larger-scale materials. Additionally, new case studies focus on medical materials and biomaterials.