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Michelle Alvarado; Katie Basinger-Ellis; Behshad Lahijanian; Meserret Karaca; Diego Alvarado – Advances in Engineering Education, 2023
Student preferences for digital learning and the COVID-19 pandemic have increased demand for asynchronous learning activities, including pre-recorded video lectures. However, there are varying recommendations and a lack of data-driven results for how long video lectures should be. This study has two purposes: (1) To determine and understand…
Descriptors: Student Attitudes, Engineering Education, Electronic Learning, Educational Technology
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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
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Reck, Rebecca M. – Advances in Engineering Education, 2020
For the 2020 spring term, courses needed to switch from traditional in-person formats to an online format in about a week due to the COVID-19 pandemic. This paper presents the process and tools used to flip the course content and deliver a dynamic systems and controls course online. Initial feedback was gathered through end of term evaluations and…
Descriptors: Teaching Methods, COVID-19, Pandemics, Educational Technology
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Morelock, John R.; Sochacka, Nicola W.; Lewis, Racheida S.; Walther, Joachim; Culloty, Christian M.; Hopkins, Jacob S.; Vedanarayanan, Shweta; Ofunne, Chukwuemeka K. – Advances in Engineering Education, 2020
This paper describes the use of a novel research platform called SenseMaker® to collect and analyze real-time data in the form of participants' qualitative accounts of COVID-19 along with online learning experiences and participants' own quantitative assessments of those experiences. Participants were faculty, students, and staff in the College of…
Descriptors: COVID-19, Pandemics, Online Courses, Distance Education
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Orange, Amy; Heinecke, Walter; Berger, Edward; Krousgrill, Charles; Mikic, Borjana; Quinn, Dane – Advances in Engineering Education, 2012
Between 2006 and 2010, sophomore engineering students at four universities were exposed to technologies designed to increase their learning in undergraduate engineering courses. Our findings suggest that students at all sites found the technologies integrated into their courses useful to their learning. Video solutions received the most positive…
Descriptors: Higher Education, Engineering Education, Undergraduate Students, Technology Integration
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Chyung, Seung Youn; Moll, Amy; Marx, Brian; Frary, Megan; Callahan, Janet – Advances in Engineering Education, 2010
During the 2006-2007 academic year, five faculty members from the College of Engineering at Boise State University initiated a curriculum augmentation project using new instructional technologies with the intention to help improve undergraduate engineering students' cognitive and affective preparedness for their classroom learning. The…
Descriptors: Engineering Education, Student Attitudes, Multimedia Instruction, Electronic Learning
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Pinder-Grover, Tershia; Green, Katie R.; Millunchick, Joanna Mirecki – Advances in Engineering Education, 2011
In large lecture courses, it can be challenging for instructors to address student misconceptions, supplement background knowledge, and identify ways to motivate the various interests of all students during the allotted class time. Instructors can harness instructional technology such as screencasts, recordings that capture audio narration along…
Descriptors: Tutorial Programs, Computer Mediated Communication, Electronic Learning, Student Needs
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Cameron, Ian; Crosthwaite, Caroline; Norton, Christine; Balliu, Nicoleta; Tadé, Moses; Hoadley, Andrew; Shallcross, David; Barton, Geoff – Advances in Engineering Education, 2008
This work presents a unique education resource for both process engineering students and the industry workforce. The learning environment is based around spherical imagery of real operating plants coupled with interactive embedded activities and content. This Virtual Reality (VR) learning tool has been developed by applying aspects of relevant…
Descriptors: Engineering Education, Industry, Electronic Learning, Simulated Environment