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Scovazzo, Paul – Chemical Engineering Education, 2023
Length of the Unused Bed (LUB) methods for scaling sorbers have confusing and complicated pedagogically elements. One method limits feeds to C/C[subscript F] < 0.3; a limitation not stated in the established textbooks. Discussed is a new LUB method with no limitation on the feed C/C[subscript F]. It fixes the pedagogically confusing and…
Descriptors: Chemical Engineering, Engineering Education, Teaching Methods, Misconceptions
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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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Liberatore, Matthew W.; Morrish, Rachel M.; Vestal, Charles R. – Advances in Engineering Education, 2017
The utility of Just-In-Time-Teaching (JITT) is compared across course topics and groups of students not receiving JITT exercises in class. JITT feedback incorporated various active learning exercises based on students' performance on online homework problems from Sapling Learning. With over 200 students in two sections participating in the…
Descriptors: Academic Achievement, Thermodynamics, Introductory Courses, Teaching Methods
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Pejuan, Arcadi; Antonijuan, Josefina – Research in Post-Compulsory Education, 2019
In first-year engineering students, a common teacher-centred, passive learning and deficient secondary educational backgrounds are often observed. However, there is a problematic difference whether the individual background is vocational education and training (VAT) or baccalaureate. This implies an educational need to level up these backgrounds,…
Descriptors: Engineering Education, Student Centered Learning, Educational Background, Academic Education
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Van Meter, Peggy N.; Firetto, Carla M.; Turns, Stephen R.; Litzinger, Thomas A.; Cameron, Chelsea E.; Shaw, Charlyn W. – Journal of Engineering Education, 2016
Background: We tested the effects of an intervention on the learning of introductory thermodynamics principles. This intervention, OEM-Thermo, is designed to prompt the cognitive operations of meaningful learning: organization, elaboration, and monitoring. We also sought evidence to show that execution of these operations was associated with…
Descriptors: Thermodynamics, Teaching Methods, Intervention, Prompting
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Clark, Renee; Kaw, Autar; Lou, Yingyan; Scott, Andrew; Besterfield-Sacre, Mary – International Journal for the Scholarship of Teaching and Learning, 2018
With the literature calling for comparisons among technology-enhanced or active-learning pedagogies, a blended versus flipped instructional comparison was made for numerical methods coursework using three engineering schools with diverse student demographics. This study contributes to needed comparisons of enhanced instructional approaches in STEM…
Descriptors: Blended Learning, Educational Technology, Technology Uses in Education, Engineering Education
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Desai, Niranjan; Stefanek, George – American Journal of Engineering Education, 2017
Student access to the Internet has made it much easier for students to find solutions to traditional homework problems online and thereby has made this traditional assessment method of monitoring student progress and gauging the assimilation of knowledge in engineering and technology courses less reliable. This paper presents an in-class,…
Descriptors: Academic Achievement, Homework, Technology, Tests
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Meyers, Kerry Lynn – Journal of STEM Education: Innovations and Research, 2016
A 1 credit hour First-Year Engineering Course which provides background to students on the engineering disciplinary options available to them was redesigned to help inform the selection of their engineering major for future study. Initially, course administration was a large lecture class but was transformed into smaller classes that were…
Descriptors: Blended Learning, Educational Technology, Homework, Technology Uses in Education
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Saterbak, Ann; Volz, Tracy; Wettergreen, Matthew – Advances in Engineering Education, 2016
Faculty at Rice University are creating instructional resources to support teaching first-year engineering design using a flipped classroom model. This implementation of flipped pedagogy is unusual because content-driven, lecture courses are usually targeted for flipping, not project-based design courses that already incorporate an abundance of…
Descriptors: Engineering Education, Educational Technology, Technology Uses in Education, Teaching Methods
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Clark, Renee M.; Kaw, Autar; Besterfield-Sacre, Mary – Advances in Engineering Education, 2016
Blended, flipped, and semi-flipped instructional approaches were used in various sections of a numerical methods course for undergraduate mechanical engineers. During the spring of 2014, a blended approach was used; in the summer of 2014, a combination of blended and flipped instruction was used to deliver a semi-flipped course; and in the fall of…
Descriptors: Engineering Education, Undergraduate Students, Blended Learning, Educational Technology
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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
Conway Hughston, Veronica – ProQuest LLC, 2014
Since 1996 ABET has mandated that undergraduate engineering degree granting institutions focus on learning outcomes such as professional skills (i.e. solving unstructured problems and working in teams). As a result, engineering curricula were restructured to include team based learning--including team charters. Team charters were diffused into…
Descriptors: Engineering Education, Undergraduate Students, Teamwork, Contracts
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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
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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
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Frank, Timothy; Scharf, Lauren F. V – Journal of the Scholarship of Teaching and Learning, 2013
This project studied the effect of individualized, voluntary learning contracts for 18 students who performed poorly in the first part of the semester. Contracts were hypothesized to increase commitment and motivation, and lead to changes in behaviors and course performance. Self-reported prioritization and learning-related behaviors (completion…
Descriptors: Undergraduate Students, Contracts, Academic Achievement, Student Behavior
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