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Ellis, Brett D.; Graveson, Jeff – Advances in Engineering Education, 2022
Graduating approximately 150,000 engineering and engineering technology students per year, the engineering education system seeks to teach students to solve problems via analysis and design. Unfortunately, many curricula emphasize analysis at the expense of design, often relegating design activities to cornerstone and capstone design courses and…
Descriptors: Engineering Education, Capstone Experiences, Class Activities, Active Learning
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Miller, Callie – Advances in Engineering Education, 2020
Students in the Department of Engineering at James Madison University choose the program for opportunities to build close relationships and experience high impact teaching. The shift to online learning due to COVID-19 resulted in a potential loss of these opportunities and a decrease in student motivation. In my Statics and Dynamics course I…
Descriptors: Mentors, Student Motivation, Active Learning, Student Projects
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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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Secules, Stephen; Lawson, Wesley – Advances in Engineering Education, 2019
This paper compares an innovative approach to teaching a required introductory C programming course to a traditional C programming course for electrical engineering (EE) students. The novel course utilizes hardware-based projects to motivate students to master language syntax and implement key programming concepts and best practices. In a mixed…
Descriptors: Programming, Introductory Courses, Required Courses, Engineering Education
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Marshall, Jill; Bhasin, Amit; Boyles, Stephen; David, Bernard; James, Rachel; Patrick, Anita – Advances in Engineering Education, 2018
Our study used a natural experiment to compare a project-based cornerstone course with the traditionally-taught introductory course in civil engineering. During the study, two sections of the course were organized around an overarching project, the design of an event center, and the remaining sections used guest lectures, a textbook, and…
Descriptors: Active Learning, Student Projects, Civil Engineering, Student Attitudes
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Velegol, Stephanie Butler; Zappe, Sarah E.; Mahoney, Emily – Advances in Engineering Education, 2015
Engineering students benefit from an active and interactive classroom environment where they can be guided through the problem solving process. Typically faculty members spend class time presenting the technical content required to solve problems, leaving students to apply this knowledge and problem solve on their own at home. There has recently…
Descriptors: Engineering Education, Blended Learning, Educational Technology, Homework
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Koretsky, Milo D.; Falconer, John L.; Brooks, Bill J.; Gilbuena, Debra M.; Silverstein, David L.; Smith, Christina; Miletic, Marina – Advances in Engineering Education, 2014
This paper describes the "AIChE Concept Warehouse," a recently developed web-based instructional tool that enables faculty within the discipline of chemical engineering to better provide their students concept-based instruction. It currently houses over 2,000 concept questions and 10 concept inventories pertinent to courses throughout…
Descriptors: Teaching Methods, Scientific Concepts, Educational Philosophy, Computer Assisted Instruction
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Morgan, James R.; Barroso, Luciana R.; Simpson, Nancy – Advances in Engineering Education, 2009
Demonstrations can be very effective at enhancing student learning and represent a mechanism for embedding laboratory experiences within a classroom setting. A key component to an effective demonstration is active student engagement throughout the entire process, leading to a guided laboratory experience in a lecture setting. Students are involved…
Descriptors: Demonstrations (Educational), Learner Engagement, Student Participation, Models