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Streiner, Scott Charles; Bodnar, Cheryl Anne – Advances in Engineering Education, 2019
Implementation of educational innovations on a local scale requires consideration of a variety of different factors including stakeholders, curriculum design, classroom context, and culture. Although theories exist for dimensions of scale and diffusion of educational innovations across multiple institutions, they do not focus on the elements…
Descriptors: Curriculum Development, Educational Games, Homework, College Freshmen
Quan, Xinfeng – Advances in Engineering Education, 2020
Challenges posed to the online classes during the COVID-19 epidemic, which prevented instant face-to-face communication and forced physical separation, were tentatively resolved by a teaching strategy shift to foster and improve student self-study skills. Class slides, teaching formats, as well as learning activities were redesigned and…
Descriptors: Distance Education, Online Courses, Electronic Learning, Independent Study
Schrlau, Michael G.; Stevens, Robert J.; Schley, Sara – Advances in Engineering Education, 2016
Flipped classrooms support learner-centered approaches to improve conceptualization, comprehension, and problem solving skills by delivering content outside the classroom and actively engaging students inside the classroom. While literature in engineering and science education supports and encourages the use of inverted instruction, many core…
Descriptors: Engineering Education, Heat, Thermodynamics, Technology Uses in Education
Clark, Renee M.; Besterfield-Sacre, Mary; Budny, Daniel; Bursic, Karen M.; Clark, William W.; Norman, Bryan A.; Parker, Robert S.; Patzer, John F., II; Slaughter, William S. – Advances in Engineering Education, 2016
In the 2013-2014 school year, we implemented the "flipped classroom" as part of an initiative to drive active learning, student engagement and enhanced learning in our school. The flipped courses consisted of freshman through senior engineering classes in introductory programming, statics/mechanics, mechanical design, bio-thermodynamics,…
Descriptors: Engineering Education, Technology Uses in Education, Educational Technology, Homework
Karabulut-Ilgu, Aliye; Jahren, Charles – Advances in Engineering Education, 2016
Engineering educators call for a widespread implementation of hybrid learning to respond to rapidly changing demands of the 21st century. In response to this call, a junior-level course in the Construction Engineering program entitled Construction Equipment and Heavy Construction Methods was converted into a hybrid learning model. The overarching…
Descriptors: Program Evaluation, Blended Learning, Construction Industry, Engineering Education
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
Riddell, William T.; Courtney, Jennifer; Constans, Eric; Dahm, Kevin; Harvey, Roberta; von Lockette, Paris – Advances in Engineering Education, 2010
An integrated technical writing and design course has been developed at Rowan University. This course was developed using aspects of project-based learning and recent discussions about design education, as well as pedagogical approaches from the write-to-learn and the writing in the disciplines (WID) movements. The result is a course where the…
Descriptors: Technical Writing, Writing Instruction, Student Projects, Design