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Faulkner, Brian; Johnson-Glauch, Nicole; Choi, Dong; Herman, Geoffrey L. – Journal of Engineering Education, 2020
Background: Many engineering students fail to proceed through required prerequisite mathematics courses. Since these courses strongly influence engineering student attrition, we should examine to what degree these courses truly serve as prerequisites for following engineering coursework. Purpose/Hypothesis: We examined two research questions:…
Descriptors: Engineering Education, Calculus, Course Content, Required Courses
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Davis, Kirsten A.; Mogg, William A.; Callaghan, David P.; Birkett, Greg R.; Knight, David B.; O'Brien, Katherine R. – European Journal of Engineering Education, 2021
In this paper, we introduce 'Concept Questions,' a weekly writing assignment that has been incorporated into multiple upper-level engineering courses at a single university with the intent of enhancing students' conceptual understanding of the course content. To explore the influence of this activity on students in these courses, we compared…
Descriptors: Questioning Techniques, Writing Assignments, Course Content, Concept Formation
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Amy M. Leman; Rebecca Mott – Journal of Human Sciences & Extension, 2023
Societal changes brought about by the COVID-19 pandemic have shown the importance of both intrapersonal and interpersonal skills in virtual environments. Two midwestern university instructors joint-taught their spring 2021 agricultural education and training program development courses, bringing students together in virtual teams during the…
Descriptors: Outcomes of Education, Program Development, Higher Education, Online Courses
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Siverling, Emilie A.; Suazo-Flores, Elizabeth; Mathis, Corey A.; Moore, Tamara J. – School Science and Mathematics, 2019
Engineering design-based STEM integration is one potential model to help students integrate content and practices from all of the STEM disciplines. In this study, we explored the intersection of two aspects of pre-college STEM education: the integration of the STEM disciplines, and the NGSS practice of engaging in argument from evidence within…
Descriptors: STEM Education, Engineering Education, Integrated Curriculum, Elementary School Students
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Lawrence Angrave; Jiaxi Li; Ninghan Zhong – Grantee Submission, 2022
To efficiently create books and other instructional content from videos and further improve accessibility of our course content we needed to solve the scene detection (SD) problem for engineering educational content. We present the pedagogical applications of extracting video images for the purposes of digital book generation and other shareable…
Descriptors: Instructional Materials, Material Development, Video Technology, Course Content
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Grohs, Jacob R.; Knight, David B.; Young, Glenda D.; Soledad, Michelle M. – International Journal of Education in Mathematics, Science and Technology, 2018
Situated in the second year of an engineering curriculum, undergraduate engineering mechanics courses represent a significant barrier to persistence in engineering. This study seeks to inform and improve these educational environments by examining academic performance paths over time in a course and explore how students in each path compare in the…
Descriptors: Academic Achievement, Learning Strategies, Engineering Education, Course Content
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Ding, Lin – International Journal of Science and Mathematics Education, 2014
Though many research-based problem types have been shown effective in promoting students' conceptual understanding and scientific abilities, the extent of their use in actual classrooms remains unclear. We interviewed and surveyed 16 physics and engineering faculty members at a large US Midwest research university to investigate how university…
Descriptors: Introductory Courses, Textbooks, College Faculty, Teacher Attitudes
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Le Doux, Joseph M.; Waller, Alisha A. – Advances in Engineering Education, 2016
This paper describes the problem-solving studio (PSS) learning environment. PSS was designed to teach students how to solve difficult analytical engineering problems without resorting to rote memorization of algorithms, while at the same time developing their deep conceptual understanding of the course topics. There are several key features of…
Descriptors: Problem Solving, Apprenticeships, Engineering Education, Teaching Methods
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Strimel, Greg – Technology and Engineering Teacher, 2014
Students are seldom given an authentic experience within school that allows them the opportunity to solve real-life complex engineering design problems that have meaning to their lives and/ or the greater society. They are often confined to learning environments that are limited by the restrictions set by course content for assessment purposes and…
Descriptors: STEM Education, Problem Based Learning, Engineering Education, Design
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Hanyak, Michael E., Jr. – Advances in Engineering Education, 2015
In an introductory chemical engineering course, the conceptual framework of a holistic problem-solving methodology in conjunction with a problem-based learning approach has been shown to create a learning environment that nurtures deep learning rather than surface learning. Based on exam scores, student grades are either the same or better than…
Descriptors: Chemical Engineering, Problem Solving, Teaching Methods, Problem Based Learning
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Merrick, K. E. – IEEE Transactions on Education, 2010
This correspondence describes an adaptation of puzzle-based learning to teaching an introductory computer programming course. Students from two offerings of the course--with and without the puzzle-based learning--were surveyed over a two-year period. Empirical results show that the synthesis of puzzle-based learning concepts with existing course…
Descriptors: Introductory Courses, Course Content, Computers, Programming
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Narode, Ronald B. – Journal of Pre-College Engineering Education Research, 2011
Using an apparently simple problem, ''Design a cylindrical can that will hold a liter of milk,'' this paper demonstrates how engineering design may facilitate the teaching of the following ideas to secondary students: linear and non-linear relationships; basic geometry of circles, rectangles, and cylinders; unit measures of area and volume;…
Descriptors: Mathematics Instruction, Engineering Education, Interdisciplinary Approach, Problem Solving
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Barroso, Luciana R.; Morgan, James R. – Advances in Engineering Education, 2012
This paper describes the creation and evolution of an undergraduate dynamics and vibrations course for civil engineering students. Incorporating vibrations into the course allows students to see and study "real" civil engineering applications of the course content. This connection of academic principles to real life situations is in…
Descriptors: Civil Engineering, Undergraduate Study, Program Development, Undergraduate Students
Southern Regional Education Board (SREB), 2012
Schools that give students access to STEM (science, technology, engineering and mathematics) studies are accomplishing several objectives: introducing students to higher-level academic and career studies, expanding project-based learning in the curriculum, enticing students to remain in school until graduation, and preparing students for…
Descriptors: Majors (Students), High Schools, Course Content, STEM Education
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Woods, Donald R. – Chemical Engineering Education, 1983
Describes a graduate or senior elective course combining fundamentals of surface phenomena with practical problem-solving structured around a series of case problems. Discusses topics covered and their development through acquiring new knowledge applied to the case problem, practical calculations of solutions, and applications to additional…
Descriptors: Chemical Engineering, Course Content, Course Descriptions, Engineering Education
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