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Lavi, Rea; Bathe, Mark; Hosoi, Anette; Mitra, Amitava; Crawley, Ed – Advances in Engineering Education, 2021
In Fall 2016, the School of Engineering at the Massachusetts Institute of Technology (MIT) chartered the New Engineering Education Transformation (NEET) initiative. NEET aims to educate young engineers to build the new machines and systems that will address societal needs of the 21st century. Students enter NEET in their sophomore year and join…
Descriptors: Technical Institutes, Engineering Education, Undergraduate Students, Interdisciplinary Approach
Reeping, David; McNair, Lisa – Advances in Engineering Education, 2020
The Department of Electrical and Computer Engineering (ECE) at Virginia Tech is in the fourth year of a large-scale change project called "Revolutionizing Engineering Departments" (NSF RED) (Lord et al., 2018). Our project has three interrelated goals: (1) broaden the range of students entering the department, (2) expand the boundaries…
Descriptors: Systems Approach, Engineering Education, College Faculty, Teacher Attitudes
Bertel, Lykke Brogaard; Askehave, Inger; Brohus, Henrik; Geil, Olav; Kolmos, Anette; Ovesen, Nis; Stoustrup, Jakob – Advances in Engineering Education, 2021
Since its establishment in 1974, Aalborg University has aimed to deliver cutting-edge research and innovative practices in engineering education. However, increasing complexity related to rapid developments in digitalization and emerging societal challenges offer new opportunities, requirements, and expectations across disciplines for educational…
Descriptors: Interdisciplinary Approach, Problem Based Learning, Student Projects, Active Learning
Bekki, Jennifer M.; Huerta, Mark; London, Jeremi S.; Melton, Doug; Vigeant, Margot; Williams, Julia M. – Advances in Engineering Education, 2018
Entrepreneurship is always challenging the status quo; it's an engine of human progress. We view Entrepreneurial Mindset (EM) as a pathway to improve upon the status quo and improve individuals, organizations, and communities and promote health, education, and prosperity. In this brief paper, we lay out the case for why EM is beneficial for…
Descriptors: Entrepreneurship, World Views, Engineering Education, College Students
Wu, Yi; de Vries, Charlotte; Dunsworth, Qi – Advances in Engineering Education, 2018
System Dynamics is a required course offered to junior Mechanical Engineering students at Penn State Erie, the Behrend College. It addresses the intercoupling dynamics of a wide range of dynamic systems: including mechanical, electrical, fluid, hydraulic, electromechanical, and biomedical systems. This course is challenging for students due to the…
Descriptors: Toys, Teaching Methods, Case Studies, Computer Software
Bozkurt, Ipek; Helm, James – Advances in Engineering Education, 2013
This paper develops a systems engineering-based framework to assist in the design of an online engineering course. Specifically, the purpose of the framework is to provide a structured methodology for the design, development and delivery of a fully online course, either brand new or modified from an existing face-to-face course. The main strength…
Descriptors: Engineering Education, Online Courses, Curriculum Design, Program Implementation
McCarthy, Joseph J.; Parker, Robert S.; Abatan, Adetola; Besterfield-Sacre, Mary – Advances in Engineering Education, 2011
Increasing knowledge integration has gained wide-spread support as an important goal in engineering education. The Chemical Engineering Pillars curriculum at the University of Pittsburgh, unique for its use of block scheduling, is one of the first four-year, integrated curricula in engineering, and is specifically designed to facilitate knowledge…
Descriptors: Chemical Engineering, Engineering Education, Undergraduate Students, Integrated Curriculum
Delale, Feridun; Liaw, Benjamin M.; Jiji, Latif M.; Voiculescu, Ioana; Yu, Honghui – Advances in Engineering Education, 2011
From October 2003 to April 2008 a systemic reform of the Mechanical Engineering program at The City College of New York was undertaken with the goal of incorporating emerging technologies (such as nanotechnology, biotechnology, Micro-Electro-Mechanical Systems (MEMS), intelligent systems) and new teaching methodologies (such as project based…
Descriptors: Engineering, Engineering Education, Teaching Methods, College Curriculum
Hayden, Nancy J.; Rizzo, Donna M.; Dewoolkar, Mandar M.; Neumann, Maureen D.; Lathem, Sandra; Sadek, Adel – Advances in Engineering Education, 2011
This paper presents a brief overview of the changes made during our department level reform (DLR) process (Grant Title: "A Systems Approach for Civil and Environmental Engineering Education: Integrating Systems Thinking, Inquiry-Based Learning and Catamount Community Service-Learning Projects") and some of the effects of these changes on…
Descriptors: Systems Approach, Engineering Education, Civil Engineering, Environmental Education
Hamilton, Eric; Lesh, Richard; Lester, Frank; Brilleslyper, Michael – Advances in Engineering Education, 2008
This article introduces Model-Eliciting Activities (MEAs) as a form of case study team problem-solving. MEA design focuses on eliciting from students conceptual models that they iteratively revise in problem-solving. Though developed by mathematics education researchers to study the evolution of mathematical problem-solving expertise in middle…
Descriptors: Engineering Education, Mathematics Education, Educational Research, Models