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Wesley F. Reinhart; Reed Williams; Ryan Solnosky; R. Allen Kimel; Rebecca Napolitano – Advances in Engineering Education, 2025
Data science has become an increasingly popular topic among engineering students and practitioners as high-profile engineering applications of machine learning and artificial intelligence continue to make headlines. Companies in engineering domains are placing a growing emphasis on hiring engineers who can extract insights and create value from…
Descriptors: Engineering Education, Statistics Education, Education Work Relationship, Artificial Intelligence
Krishnasamy T. Selvan; Karl F. Warnick – Advances in Engineering Education, 2023
We examine the soundness of the idea and practice of engineering accreditation and look critically at the process as implemented in regions around the world. Based on our analysis of the effectiveness of current approaches, we suggest areas and methods for improvement and propose guidelines for a revised accreditation framework that addresses some…
Descriptors: Engineering Education, Curriculum Design, Educational Improvement, Accreditation (Institutions)
Loh, A. P.; Law, Elliot; Putra, Andi Sudjana; Koh, Edwin; Zuea, Tang Kok; Tat, Khoo Eng – Advances in Engineering Education, 2021
A quick literature survey shows that Engineering education has been undergoing change since more than a hundred years ago, largely due to the needs of industry. The current drive for change is not very different and comes from the perception that Engineering graduates of today are not able to function effectively in the workplace. This is in part…
Descriptors: Foreign Countries, Innovation, Design, Engineering Education
Jones, Sharon A.; Cairncross, Caitlin; VanDeGrift, Tammy; Kalnin, Julie – Advances in Engineering Education, 2021
We developed various retention programs to support first-year engineering students who start behind their cohort in terms of the Calculus sequence. We focused on increasing the persistence of these students via counseling along with opportunities for students to regain cohort status. Although the retention program evolved, we retained enough of…
Descriptors: Academic Persistence, Engineering Education, Calculus, College Freshmen
Zappe, Sarah E. – Advances in Engineering Education, 2018
The term "entrepreneurial mindset" is often included in the program objectives of engineering entrepreneurship programs. However, the definition of the term has been argued and debated by many in the community and in the literature, leading to challenges with how to best design assessment of engineering entrepreneurship programs. The…
Descriptors: Engineering Education, Entrepreneurship, Thinking Skills, Definitions
Merrett, Craig G. – Advances in Engineering Education, 2023
Students should be exposed to open-ended, complex design challenges during their courses to better prepare the students for the design challenges that they will encounter during their careers. This preparation may be achieved by combining flipped classroom instruction, case based learning in an active classroom, and authentic assessments. Between…
Descriptors: Flipped Classroom, Classroom Techniques, Case Method (Teaching Technique), Introductory Courses
Collofello, Jim; Fox, Derek; Jamieson, Leah H.; Johnson, Bart M.; Loughman, Joshua; Morgan, Jim; Oakes, William C.; Schoepf, Jared; Smith, Crystal – Advances in Engineering Education, 2021
The EPICS Program was created in 1995 with the dual purposes of improving engineering education and addressing compelling needs within our communities. The model broke with many traditional academic traditions, involving students in multidisciplinary teams of students from first-year to fourth years for multiple semesters or even years on projects…
Descriptors: Engineering Education, Service Learning, Higher Education, Undergraduate Students
Ulseth, Ron; Johnson, Bart; Kennedy, Christine – Advances in Engineering Education, 2021
In this paper, we address the achievements to date and the learnings from the development and ten-year implementation of the Iron Range Engineering (IRE) program while articulating its future directions. IRE uses research-based instructional strategies to implement a project-based learning (PBL) curriculum where authentic design sits at the heart…
Descriptors: Engineering Education, Curriculum Implementation, Student Projects, Active Learning
Gorbett, Luke J.; Chapamn, Kayla E.; Liberatore, Matthew W. – Advances in Engineering Education, 2022
Spreadsheets are a core computational tool for practicing engineers and engineering students. While Microsoft Excel, Google Sheets, and other spreadsheet tools have some differences, numerous formulas, functions, and other tasks are common across versions and platforms. Building upon learning science frameworks showing that interactive activities…
Descriptors: Spreadsheets, Computer Software, Engineering Education, Textbooks
Simmons, Denise R.; Lord, Susan M. – Advances in Engineering Education, 2019
Supporting diverse students in engineering education is considered a critical unsolved issue facing engineering education. The field continues to suffer from a lack of diversity and struggles to recruit and retain underrepresented students. We argue that structural barriers prevent equitable participation. In this paper, we examine structural…
Descriptors: Engineering Education, Student Diversity, Barriers, Racial Discrimination
Smith, Tori Rhoulac; Warner, Grant; Burge, Legand – Advances in Engineering Education, 2020
The lack of racial diversity in the technology industry has been widely acknowledged, especially since 2014 when many Silicon Valley companies, like Google, Facebook, and Intel, released racial diversity data. Howard University faculty involved in tech entrepreneurship noticed the racial disparity first-hand as entrepreneurs themselves and as…
Descriptors: Management Systems, Innovation, Black Colleges, Diversity
Karlsson-Bengtsson, Anna; Enelund, Mikael; Bingerud, Mattias – Advances in Engineering Education, 2021
In this contribution we describe and reflect on the organization of Chalmers University of Technology and how it benefits education development and innovation. Chalmer's matrix organization with a buyer-supplier management model for education has proven to be a driving force for change and quality enhancement and promotes the agility necessary for…
Descriptors: Universities, Technology Education, Educational Development, Educational Innovation
Safari, Mahsa; Asadi, Somayeh – Advances in Engineering Education, 2022
This paper outlines the result of an innovative program to develop a competency-based curriculum and a work process to engage students in energy assessment of small commercial buildings in their community. Throughout the resulting course, "Leadership in Building Energy Efficiency (LBEE)," students were trained to gather buildings'…
Descriptors: Energy, Energy Conservation, Program Descriptions, Educational Innovation
Finelli, Cynthia J.; Froyd, Jeffrey E. – Advances in Engineering Education, 2019
In this paper, we report and expand on research questions designed to improve undergraduate engineering education. These questions are based on a yearlong process that included a three-step Delphi study and a subsequent two-day workshop. The Delphi study, conducted during winter and spring of 2015, engaged subject matter experts from engineering…
Descriptors: Undergraduate Students, Engineering Education, Instructional Improvement, Educational Change
Korte, Russell – Advances in Engineering Education, 2018
An entrepreneurial mindset helps innovators find, interpret, evaluate, and pursue opportunities for their innovations. It is a concept having multiple definitions and contradictions variously focused on individual traits, behaviors, attitudes, or beliefs. Robinson claimed that across the various definitions of an entrepreneurial mindset there was…
Descriptors: Entrepreneurship, Self Concept, Social Theories, Engineering Education