Engineering Education


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A Summary of Research 1995


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Merging Languages and Engineering


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At the University of Rhode Island over 25% of engineering undergraduates simultaneously complete a second degree in German, French, Spanish, or Chinese. They furthermore spend an entire year abroad, one semester as exchange students at a partner university and six months as professional engineering interns at a cooperating company. With a close-to 100% placement rate, over 400 graduates, and numerous national awards, the URI International Engineering Program (IEP) is a proven path of preparation for young engineers in today's global workplace. The author of this volume, John Grandin, is an emeritus professor of German who developed and led the IEP for twenty-three years. In these pages, he provides a two-pronged approach to explain the origin and history of this program rooted in such an unusual merger of two traditionally distinct higher education disciplines. He looks first at himself to explain how and why he became an international educator and what led him to his lasting passion for the IEP. He then provides an historical overview of the program's origin and growth, including looks at the bumps and bruises and ups and downs along the way. Grandin hopes that this story will be of use and value to other educators determined to reform higher education and align it with the needs of the 21st Century. Table of Contents: How I became a Professor of German / My Unexpected Path to Engineering / Building a Network of Support / Sidetracked by a Stint in the Dean's Office / Reshaping the Language Mission / Struggling to Institutionalize / Partnering with Universities Abroad / Going into the Hotel and Restaurant Business / Taking the Lead Nationally / Building the Chinese IEP / Staying Involved after Retirement / The Broader Message for Higher Education / Conclusions




Engineering Education


Book Description

A synthesis of nearly 2,000 articles to help make engineers better educators While a significant body of knowledge has evolved in the field of engineering education over the years, much of the published information has been restricted to scholarly journals and has not found a broad audience. This publication rectifies that situation by reviewing the findings of nearly 2,000 scholarly articles to help engineers become better educators, devise more effective curricula, and be more effective leaders and advocates in curriculum and research development. The author's first objective is to provide an illustrative review of research and development in engineering education since 1960. His second objective is, with the examples given, to encourage the practice of classroom assessment and research, and his third objective is to promote the idea of curriculum leadership. The publication is divided into four main parts: Part I demonstrates how the underpinnings of education—history, philosophy, psychology, sociology—determine the aims and objectives of the curriculum and the curriculum's internal structure, which integrates assessment, content, teaching, and learning Part II focuses on the curriculum itself, considering such key issues as content organization, trends, and change. A chapter on interdisciplinary and integrated study and a chapter on project and problem-based models of curriculum are included Part III examines problem solving, creativity, and design Part IV delves into teaching, assessment, and evaluation, beginning with a chapter on the lecture, cooperative learning, and teamwork The book ends with a brief, insightful forecast of the future of engineering education. Because this is a practical tool and reference for engineers, each chapter is self-contained and may be read independently of the others. Unlike other works in engineering education, which are generally intended for educational researchers, this publication is written not only for researchers in the field of engineering education, but also for all engineers who teach. All readers acquire a host of practical skills and knowledge in the fields of learning, philosophy, sociology, and history as they specifically apply to the process of engineering curriculum improvement and evaluation.




Proceedings of 4th World Congress on Chromatography 2017


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August 07-09, 2017 Rome, Italy Key Topics : Adsorption Chromatography, Partition Chromatography, Ion Exchange Chromatography, Molecular Exclusion Chromatography, Separation Techniques in Chemistry, Spectroscopy, Affinity Chromatography, Gas Chromatography, High Performance Liquid Chromatography, Special Techniques in Chromatography, Advancement in Chromatography, Applications of Chromatography, Novel Techniques in Chromatography, Market Growth of Chromatography,







Proceedings of 4th World Conference on Climate Change 2017


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October 19-21, 2017 Rome, Italy Key Topics : Climate Change & Climatology, Evidence of Climate Changes, Global Warming Effects & Causes, Climate Change: Biodiversity Scenarios, Carbon Cycle, Climate Hazards, Risks of Climate Change, Effective Adaptation, Energy Policy, Climate Change Challenges, Climate Change Law & Policy, Oceans & Climate Change, Sustainability & Climate Change, Pollution & its Effects on Climate, CO2 Responsible Climate Change?, Renewable Energy to Mitigate Climate Change, Solutions for Climate Change, CO2 Capture and Sequestration, Climate Change Economics, Climate Change & Health, Space Monitoring of Climate Variables,




Managing and Implementing the Digital Transformation


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This book shows how companies can practically implement the advantages of Industry 4.0 and digitalization and also addresses the current challenges with regard to engineering education for Industry 4.0. In this book, we collect the contributions of the 1st Symposium on Industrial Engineering and Automation (ISIEA 2022), which took place from June 21–22, 2022 at the Free University of Bolzano. The contributions cover three basic areas: (1) best practice examples and technical solutions for the implementation of Industry 4.0 in production and logistics, (2) management-oriented approaches for the digital transformation in companies, and (3) addressing Industry 4.0 in engineering education. The book targets different readers. Researchers find approaches to current research topics regarding Industry 4.0. Practitioners find valuable examples for technological implementations as well as management approaches for introducing digitalization. Students and lecturers find hints on how Industry 4.0 can be integrated into university teaching.