Open Access. Powered by Scholars. Published by Universities.®

Education Commons

Open Access. Powered by Scholars. Published by Universities.®

Articles 1 - 27 of 27

Full-Text Articles in Education

Educating The Space Scientists At Embry-Riddle Through Design, Build And Fly Rocketry Experience, Pedro Llanos, Robert E. Haley, Sathya Gangadharan Jan 2019

Educating The Space Scientists At Embry-Riddle Through Design, Build And Fly Rocketry Experience, Pedro Llanos, Robert E. Haley, Sathya Gangadharan

Pedro J. Llanos (www.AstronauticsLlanos.com)

Practical experience for students in rockets and payloads is very valuable in the space industry, and it is something that would give them an advantage over other applicants. Students in Embry-Riddle Aeronautical University’s Payload and Integration class were given the opportunity to build a level 1 rocket and gain experience developing, testing, and integrating payloads into a rocket. The students were given the tasks to come up with an idea for a payload, design the payload to fit within the rocket for flight, and assemble and launch the rocket with the payload in the payload bay. The tasks required for …


“Whole-Brained” Engineering Education In Undergraduate Studies At The University Of Dayton, Kylie Moellering Jan 2018

“Whole-Brained” Engineering Education In Undergraduate Studies At The University Of Dayton, Kylie Moellering

Kylie Moellering

In this case study concerning “Whole-Brained” Engineering Education for undergraduate-level students, Dr. Ken Bloemer, the Director of the Visioneering Center at the University of Dayton, provided valuable information regarding this field. Voices from scholarly literature pertaining to the conversation and other undergraduate engineering curricula were then used to reinforce and give deeper insight into the various aspects of the changing engineering education format. The major change in pedagogy can be seen in the transferring from isolated left brain engineering education to the well-rounded whole-brained engineering education approach, which collaborates both aspects of logic and creativity. This main topic created three …


Harnessing Wastewater For Renewable Energy (2013-2), Aaron Adalja, Chalida U-Tapao Nov 2017

Harnessing Wastewater For Renewable Energy (2013-2), Aaron Adalja, Chalida U-Tapao

Aaron Adalja

This case study explores the options for using wastewater to produce renewable energy in the context of a public wastewater treatment plant. It provides an opportunity for students to synthesize knowledge from resource economics, engineering, environmental science, agriculture, and public policy to develop a transdisciplinary approach to a socio-environmental issue. The case is designed for upper division undergraduate courses in resource economics or environmental engineering, but several modifications are provided graduate course applications. Students assume the role of a newly hired analyst at a consulting firm in Washington, DC, that specializes in renewable energy solutions. They are charged with proposing …


Driven By Beliefs: Understanding Challenges Physical Science Teachers Face When Integrating Engineering And Physics, Emily A. Dare, Joshua A. Ellis, Gillian H. Roehrig Jun 2017

Driven By Beliefs: Understanding Challenges Physical Science Teachers Face When Integrating Engineering And Physics, Emily A. Dare, Joshua A. Ellis, Gillian H. Roehrig

Joshua A. Ellis

It is difficult to ignore the increased use of technological innovations in today’s world, which has led to various calls for the integration of engineering into K-12 science standards. The need to understand how engineering is currently being brought to science classrooms is apparent and necessary in order to address these calls for integration. This multiphase, mixed-methods study investigated the classroom practices and beliefs of high school physical science teachers following an intensive professional development on physics and engineering integration. Classroom observations showed that teachers new to incorporating engineering into their physical science classrooms often struggled to maintain focus on …


Determining Graduation Rates In Engineering For Community College Transfer Students Using Data Mining, Marcia Laugerman, Diane T. Rover, Mack C. Shelley, Steven K. Mickelson Jun 2017

Determining Graduation Rates In Engineering For Community College Transfer Students Using Data Mining, Marcia Laugerman, Diane T. Rover, Mack C. Shelley, Steven K. Mickelson

Diane Rover

This study presents a unique synthesized set of data for community college students entering the university with the intention of earning a degree in engineering. Several cohorts of longitudinal data were combined with transcript-level data from both the community college and the university to measure graduation rates in engineering. The emphasis of the study is to determine academic variables that had significant correlations with graduation in engineering, and levels of these academic variables. The article also examines the utility of data mining methods for understanding the academic variables related to achievement in science, technology, engineering, and mathematics. The practical purpose …


Work Integrated Learning In Stem In Australian Universities: Final Report: Submitted To The Office Of The Chief Scientist, Daniel Edwards, Kate Perkins, Jacob Pearce, Jennifer Hong Feb 2017

Work Integrated Learning In Stem In Australian Universities: Final Report: Submitted To The Office Of The Chief Scientist, Daniel Edwards, Kate Perkins, Jacob Pearce, Jennifer Hong

Kate Perkins

The Australian Council for Educational Research (ACER) undertook this study for the Office of the Chief Scientist (OCS). It explores the practice and application of Work Integrated Learning (WIL) in STEM, with a particular focus on natural and physical sciences, information technology, and agriculture departments in Australian universities. The project involved a detailed ‘stocktake’ of WIL in practice in these disciplines, with collection of information by interview, survey instruments, consultation with stakeholders and literature reviews. Every university in Australia was visited as part of this project, with interviews and consultation sessions gathering insight from more than 120 academics and support …


Work Integrated Learning In Stem In Australian Universities: Final Report: Submitted To The Office Of The Chief Scientist, Daniel Edwards, Kate Perkins, Jacob Pearce, Jennifer Hong Sep 2015

Work Integrated Learning In Stem In Australian Universities: Final Report: Submitted To The Office Of The Chief Scientist, Daniel Edwards, Kate Perkins, Jacob Pearce, Jennifer Hong

Dr Daniel Edwards

The Australian Council for Educational Research (ACER) undertook this study for the Office of the Chief Scientist (OCS). It explores the practice and application of Work Integrated Learning (WIL) in STEM, with a particular focus on natural and physical sciences, information technology, and agriculture departments in Australian universities. The project involved a detailed ‘stocktake’ of WIL in practice in these disciplines, with collection of information by interview, survey instruments, consultation with stakeholders and literature reviews. Every university in Australia was visited as part of this project, with interviews and consultation sessions gathering insight from more than 120 academics and support …


Work Integrated Learning In Stem In Australian Universities: Final Report: Submitted To The Office Of The Chief Scientist, Daniel Edwards, Kate Perkins, Jacob Pearce, Jennifer Hong Sep 2015

Work Integrated Learning In Stem In Australian Universities: Final Report: Submitted To The Office Of The Chief Scientist, Daniel Edwards, Kate Perkins, Jacob Pearce, Jennifer Hong

Dr Jacob Pearce

The Australian Council for Educational Research (ACER) undertook this study for the Office of the Chief Scientist (OCS). It explores the practice and application of Work Integrated Learning (WIL) in STEM, with a particular focus on natural and physical sciences, information technology, and agriculture departments in Australian universities. The project involved a detailed ‘stocktake’ of WIL in practice in these disciplines, with collection of information by interview, survey instruments, consultation with stakeholders and literature reviews. Every university in Australia was visited as part of this project, with interviews and consultation sessions gathering insight from more than 120 academics and support …


Engineering Assessment Development Report: Ahelo Feasibility Study, Jacob Pearce, Julian Fraillon, Hamish Coates, Sarah Richardson Aug 2015

Engineering Assessment Development Report: Ahelo Feasibility Study, Jacob Pearce, Julian Fraillon, Hamish Coates, Sarah Richardson

Julian Fraillon

No abstract provided.


Ieee Istas13- People As Sensors: The Social Implications Of Living In A Smart World, Alexander Hayes, Katina Michael, Nick Rheinberger Jun 2015

Ieee Istas13- People As Sensors: The Social Implications Of Living In A Smart World, Alexander Hayes, Katina Michael, Nick Rheinberger

Alexander Hayes Mr.

What is the technological trajectory of people wearing sensors? What are the benefits, risks and costs? What is the vibe going to be like at ISTAS13 with people like Marvin Minsky and Ray Kurzweil attending? What do you hope to gain from the meeting? Can we foresee a time that all glasses will be embedded with sensors? What are the implications? E.g. in the higher education sector? What about the gathering of evidence by law enforcement? What is point of eye?


Engineering A Dynamic Science Learning Environment For K-12 Teachers, Patricia Hardré, Mark Nanny, Hazem Refai, Chen Ling, Janis Slater Apr 2015

Engineering A Dynamic Science Learning Environment For K-12 Teachers, Patricia Hardré, Mark Nanny, Hazem Refai, Chen Ling, Janis Slater

Dr. Chen Ling

The present study follows a cohort of 17 K-12 teachers through a six-week resident learning experience in science and engineering, and on into the planning and implementation of applications for their classrooms. This Research Experiences for Teachers (RET) program was examined using the strategic approach of design-based research, with its fluid, adaptive management of the complexity of authentic learning "in situ" and its attentive documentation of expected and unexpected events, in process and products, to capture the richness of teachers' and mentors' experiences. Research on effective teacher professional development, adult learning, situated cognition, and learning transfer were utilized to inform …


A Whole New Engineer, David Goldberg, Mark Somerville Oct 2014

A Whole New Engineer, David Goldberg, Mark Somerville

Mark Somerville

A Revolution Is Coming. It Isn’t What You Think. This book tells the improbable stories of Franklin W. Olin College of Engineering and the iFoundry incubator at the University of Illinois. That either one survived is story enough, but what they found out together changes the course of education transformation forever: How trust is key to unleashing young, courageous engineers. How engineers need to move from a narrow technical education to one that actively engages six minds. How emotion and culture–not content, curriculum & pedagogy–are the crucial elements of change. How all stakeholders can collaborate to disrupt the status quo.status …


Graduate Curricula In Software Engineering And Software Assurance: Need And Recommendations, T. B. Hilburn, Andrew J. Kornecki Oct 2014

Graduate Curricula In Software Engineering And Software Assurance: Need And Recommendations, T. B. Hilburn, Andrew J. Kornecki

Andrew J. Kornecki

In discussions about the development and use of computer systems and software products, the term “professional software engineer” is used repeatedly. In the last two decades there has been significant effort devoted to enhancing and advancing the state of professional software engineering (SwE) – new software engineering processes, methods, tools, and practices; creation of a software engineering body of knowledge [1]; development of a code of ethics and professional conduct [2], and software certification and licensing programs [3] . In 1989 the Software Engineering Institute (SEI) of Carnegie Mellon University published a landmark report on graduate education in software engineering …


Olin College: Re-Visioning Undergraduate Engineering Education, Lynn Stein, Mark Somerville, Jessica Townsend, Vincent Manno Jun 2014

Olin College: Re-Visioning Undergraduate Engineering Education, Lynn Stein, Mark Somerville, Jessica Townsend, Vincent Manno

Jessica Townsend

The Franklin W. Olin College of Engineering was created to address several perceived needs for engineering graduates of the future and to be an experimental laboratory for engineering education. As such, Olin College is not only dedicated to innovation within its boundaries but also to catalyzing change throughout the engineering enterprise. The curriculum aims to support life-long learning, teamwork, communication, and contextual understanding, along with rigorous quantitative and qualitative skills.


Olin College: Re-Visioning Undergraduate Engineering Education, Lynn Stein, Mark Somerville, Jessica Townsend, Vincent Manno Jun 2014

Olin College: Re-Visioning Undergraduate Engineering Education, Lynn Stein, Mark Somerville, Jessica Townsend, Vincent Manno

Vincent P. Manno

The Franklin W. Olin College of Engineering was created to address several perceived needs for engineering graduates of the future and to be an experimental laboratory for engineering education. As such, Olin College is not only dedicated to innovation within its boundaries but also to catalyzing change throughout the engineering enterprise. The curriculum aims to support life-long learning, teamwork, communication, and contextual understanding, along with rigorous quantitative and qualitative skills.


Olin College: Re-Visioning Undergraduate Engineering Education, Lynn Stein, Mark Somerville, Jessica Townsend, Vincent Manno Jun 2014

Olin College: Re-Visioning Undergraduate Engineering Education, Lynn Stein, Mark Somerville, Jessica Townsend, Vincent Manno

Lynn Andrea Stein

The Franklin W. Olin College of Engineering was created to address several perceived needs for engineering graduates of the future and to be an experimental laboratory for engineering education. As such, Olin College is not only dedicated to innovation within its boundaries but also to catalyzing change throughout the engineering enterprise. The curriculum aims to support life-long learning, teamwork, communication, and contextual understanding, along with rigorous quantitative and qualitative skills.


Olin College: Re-Visioning Undergraduate Engineering Education, Lynn Stein, Mark Somerville, Jessica Townsend, Vincent Manno Jun 2014

Olin College: Re-Visioning Undergraduate Engineering Education, Lynn Stein, Mark Somerville, Jessica Townsend, Vincent Manno

Mark Somerville

The Franklin W. Olin College of Engineering was created to address several perceived needs for engineering graduates of the future and to be an experimental laboratory for engineering education. As such, Olin College is not only dedicated to innovation within its boundaries but also to catalyzing change throughout the engineering enterprise. The curriculum aims to support life-long learning, teamwork, communication, and contextual understanding, along with rigorous quantitative and qualitative skills.


An Interactive Exploration Of Gender And Engineering: Unpacking The Experience, Debbie Chachra, Lynn Stein, Alisha Sarang-Sieminski, Caitrin Lynch, Yevgeniya Zastavker Sep 2013

An Interactive Exploration Of Gender And Engineering: Unpacking The Experience, Debbie Chachra, Lynn Stein, Alisha Sarang-Sieminski, Caitrin Lynch, Yevgeniya Zastavker

Alisha L. Sarang-Sieminski

The engineering student experience is understood to differ for male and female students; gendered interactions affect the development of academic and professional role confidence, as well as engineering identity. The purpose of this session is twofold. First, we aim to introduce participants to concepts of gender schemas, privilege, and identity using a range of interactive activities, including brainstorming and structured discussion. Second, we intend to share information about and obtain feedback on a Gender Discussion Exploration Kit, which the participants will be encouraged to review, use, and share at their home institutions.


An Interactive Exploration Of Gender And Engineering: Unpacking The Experience, Debbie Chachra, Lynn Stein, Alisha Sarang-Sieminski, Caitrin Lynch, Yevgeniya Zastavker Oct 2012

An Interactive Exploration Of Gender And Engineering: Unpacking The Experience, Debbie Chachra, Lynn Stein, Alisha Sarang-Sieminski, Caitrin Lynch, Yevgeniya Zastavker

Debbie Chachra

The engineering student experience is understood to differ for male and female students; gendered interactions affect the development of academic and professional role confidence, as well as engineering identity. The purpose of this session is twofold. First, we aim to introduce participants to concepts of gender schemas, privilege, and identity using a range of interactive activities, including brainstorming and structured discussion. Second, we intend to share information about and obtain feedback on a Gender Discussion Exploration Kit, which the participants will be encouraged to review, use, and share at their home institutions.


An Interactive Exploration Of Gender And Engineering: Unpacking The Experience, Debbie Chachra, Lynn Stein, Alisha Sarang-Sieminski, Caitrin Lynch, Yevgeniya Zastavker Oct 2012

An Interactive Exploration Of Gender And Engineering: Unpacking The Experience, Debbie Chachra, Lynn Stein, Alisha Sarang-Sieminski, Caitrin Lynch, Yevgeniya Zastavker

Caitrin Lynch

The engineering student experience is understood to differ for male and female students; gendered interactions affect the development of academic and professional role confidence, as well as engineering identity. The purpose of this session is twofold. First, we aim to introduce participants to concepts of gender schemas, privilege, and identity using a range of interactive activities, including brainstorming and structured discussion. Second, we intend to share information about and obtain feedback on a Gender Discussion Exploration Kit, which the participants will be encouraged to review, use, and share at their home institutions.


An Interactive Exploration Of Gender And Engineering: Unpacking The Experience, Debbie Chachra, Lynn Stein, Alisha Sarang-Sieminski, Caitrin Lynch, Yevgeniya Zastavker Oct 2012

An Interactive Exploration Of Gender And Engineering: Unpacking The Experience, Debbie Chachra, Lynn Stein, Alisha Sarang-Sieminski, Caitrin Lynch, Yevgeniya Zastavker

Yevgeniya V. Zastavker

The engineering student experience is understood to differ for male and female students; gendered interactions affect the development of academic and professional role confidence, as well as engineering identity. The purpose of this session is twofold. First, we aim to introduce participants to concepts of gender schemas, privilege, and identity using a range of interactive activities, including brainstorming and structured discussion. Second, we intend to share information about and obtain feedback on a Gender Discussion Exploration Kit, which the participants will be encouraged to review, use, and share at their home institutions.


An Interactive Exploration Of Gender And Engineering: Unpacking The Experience, Debbie Chachra, Lynn Stein, Alisha Sarang-Sieminski, Caitrin Lynch, Yevgeniya Zastavker Sep 2012

An Interactive Exploration Of Gender And Engineering: Unpacking The Experience, Debbie Chachra, Lynn Stein, Alisha Sarang-Sieminski, Caitrin Lynch, Yevgeniya Zastavker

Lynn Andrea Stein

The engineering student experience is understood to differ for male and female students; gendered interactions affect the development of academic and professional role confidence, as well as engineering identity. The purpose of this session is twofold. First, we aim to introduce participants to concepts of gender schemas, privilege, and identity using a range of interactive activities, including brainstorming and structured discussion. Second, we intend to share information about and obtain feedback on a Gender Discussion Exploration Kit, which the participants will be encouraged to review, use, and share at their home institutions.


Source Text Re-Use In Engineering Thesis And Dissertation Literature Reviews: A Comparison [Powerpoint Presentation], Edward J. Eckel Mr. Mar 2012

Source Text Re-Use In Engineering Thesis And Dissertation Literature Reviews: A Comparison [Powerpoint Presentation], Edward J. Eckel Mr.

Edward J Eckel

Using random samples of 150 engineering master's theses and 150 doctoral dissertations from the ProQuest Dissertations and Theses database, the author conducted 30 Google searches of random seven word strings from the literature review sections for each thesis/dissertation, looking for textual matches to scholarly sources. The author then did a statistical comparison for significance between the thesis and dissertation data for the following measures: length of the longest verbatim string found for each thesis/dissertation, and the number of verbatim matches found for each thesis/dissertation. This study is designed to explore the following research question: Do engineering master's theses have more …


Source Text Re-Use In Engineering Thesis And Dissertation Literature Reviews: A Comparison [Transcript], Edward J. Eckel Mr. Mar 2012

Source Text Re-Use In Engineering Thesis And Dissertation Literature Reviews: A Comparison [Transcript], Edward J. Eckel Mr.

Edward J Eckel

Using random samples of 125 engineering master's theses and 125 doctoral dissertations from the ProQuest Dissertations and Theses database, the author conducted 30 Google searches of random seven word strings from the literature review sections for each thesis/dissertation, looking for textual matches to scholarly sources. The author then did a statistical comparison for significance between the thesis and dissertation data for the following measures: length of the longest verbatim string found for each thesis/dissertation, and the number of verbatim matches found for each thesis/dissertation. This study is designed to explore the following research question: Do engineering master's theses have more …


Engineering Assessment Development Report: Ahelo Feasibility Study, Jacob Pearce, Julian Fraillon, Hamish Coates, Sarah Richardson Dec 2011

Engineering Assessment Development Report: Ahelo Feasibility Study, Jacob Pearce, Julian Fraillon, Hamish Coates, Sarah Richardson

Dr Jacob Pearce

No abstract provided.


Engineering Success: The Role Of Faculty Relationships With African American Undergraduates, Christopher B. Newman Jan 2011

Engineering Success: The Role Of Faculty Relationships With African American Undergraduates, Christopher B. Newman

Christopher B. Newman

Previous research has found that faculty–student relationships are a contributing factor to the retention of students at four-year institutions. In this study, the experiences of twelve African American engineers are explored through the lens of Fiske’s (Structures of Social Life: The Four Elementary Forms of Human Relations, Free Press, New York, 1991) social-relational models theory. The overall findings of this study suggest that faculty play an important role in encouraging or dissuading the African American engineers in this study to persist in their respective majors. Additionally, the involvement in faculty research laboratories and the referral by faculty to other opportunities …


North Carolina State University Center For Minority Engineer Development, Tony L. Mitchell, Sarah A. Rajala, Laura J. Bottomley, Mary Clare Robbins Aug 2000

North Carolina State University Center For Minority Engineer Development, Tony L. Mitchell, Sarah A. Rajala, Laura J. Bottomley, Mary Clare Robbins

Sarah A. Rajala

North Carolina State University, located in Raleigh, North Carolina, USA, is the largest state-supported university of the sixteen-campus University of North Carolina educational system. The College of Engineering at NC State University is among the best in the country, offering outstanding degree programs and preparing students for exciting and rewarding careers. Our graduates are heavily recruited internationally for positions in a variety of settings, including business management, construction, transportation, hardware and software development, computer engineering and design. The College of Engineering comprises 10 departments offering 16 BS, 17 MS, and 14 Ph.D. degree programs and conducts the largest undergraduate and …