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Full-Text Articles in Education

A Multi-Decade Response To The Call For Change, Bart Johnson, Ron Ulseth, Mike Raich Aug 2022

A Multi-Decade Response To The Call For Change, Bart Johnson, Ron Ulseth, Mike Raich

Integrated Engineering Department Publications

Engineering and society have always been intertwined, especially with the accepted realization of technology's significant and rapidly increasing influence on the evolution of society. As a profession, engineering has a vital role in sustainably meeting needs and exploring opportunities that are ever changing and evolving. As societal and industry needs have evolved, engineering education itself has raised the call several times for evolving the way engineers are educated; however, the recent history of engineering education is, overall, one of missed opportunities. This was brought to a headline recently as ASEE leadership authored an article entitled “Stuck in 1955, Engineering Education …


Engineering Stress Culture In Project-Based Engineering Programs, Lin Chase, Catherine Sleezer, Robert Sleezer, Michelle Soledad Aug 2022

Engineering Stress Culture In Project-Based Engineering Programs, Lin Chase, Catherine Sleezer, Robert Sleezer, Michelle Soledad

Integrated Engineering Department Publications

Background: This research paper examines engineering stress culture in the context of project-based learning engineering programs at the university level. Multiple authors have reported that the culture of engineering and engineering education can be stressful and exclusive. A study conducted by Jensen and Cross [9] found that measures of inclusion such as "Department Caring" and "Department Pride" were negatively correlated with stress, anxiety, and depression. We used the approach developed by Jensen and Cross to examine stress culture in the context of three project-based learning engineering programs.

Purpose: Our goal was to establish a baseline of measures of mental health …


"But I'M Not An Engineer"...Collaboration Between A Librarian And An Upper Division Project-Based Engineering Program, Heidi J. Southworth, Rebecca Bates, Robert Sleezer Jun 2022

"But I'M Not An Engineer"...Collaboration Between A Librarian And An Upper Division Project-Based Engineering Program, Heidi J. Southworth, Rebecca Bates, Robert Sleezer

Library Services Publications

Since 2013, a librarian at Minnesota State University, Mankato has collaborated with faculty and students in an upper division project-based engineering program. While having several years of experience in university libraries plus advanced degrees in history, the librarian had a limited background in science, engineering, and technology, and lacked a formal engineering degree. At first glance, this match may appear to be a recipe for failure. Indeed, in those first few years, the librarian’s angst about the missing engineering degree caused many sleepless nights of worry and concern. However, there came a time when the words “but I am not …


"But I'M Not An Engineer"...Collaboration Between A Librarian And An Upper Division Project-Based Engineering Program, Heidi J. Southworth, Rebecca Bates, Robert Sleezer Jun 2022

"But I'M Not An Engineer"...Collaboration Between A Librarian And An Upper Division Project-Based Engineering Program, Heidi J. Southworth, Rebecca Bates, Robert Sleezer

Library Services Publications

Since 2013, a librarian at Minnesota State University, Mankato has collaborated with faculty and students in an upper division project-based engineering program. While having several years of experience in university libraries plus advanced degrees in history, the librarian had a limited background in science, engineering, and technology, and lacked a formal engineering degree. At first glance, this match may appear to be a recipe for failure. Indeed, in those first few years, the librarian’s angst about the missing engineering degree caused many sleepless nights of worry and concern. However, there came a time when the words “but I am not …


Engineering Technology Programs Outreach To K-12, Alok Verma Jan 2021

Engineering Technology Programs Outreach To K-12, Alok Verma

Engineering Technology Faculty Publications

The Engineering Technology (ET) degree emphasizes hands-on application and implementation. Graduates holding this degree play a valuable role in economically growing the US and keeping it internationally competitive. However, “engineering and engineering technology, are widely misunderstood… the public sector (employers, students, high-school counselors, politicians and the general public) needs to be educated as to the particular value of each,” according to Engineering.com [1]. The National Academy of Engineering states, “Unlike the much better-known field of engineering, engineering technology is unfamiliar to most Americans and goes unmentioned in most policy discussions about the US technical workforce. This is even though workers …


Iron Range Engineering - An Overview Of Design And Open-Ended Problem Solving Activities In An Interdisciplinary, Project-Based Learning Program, Elizabeth Pluskwik Jun 2019

Iron Range Engineering - An Overview Of Design And Open-Ended Problem Solving Activities In An Interdisciplinary, Project-Based Learning Program, Elizabeth Pluskwik

Integrated Engineering Department Publications

Project-based learning (PBL) in engineering education is growing at a rapid pace. The Iron Range Engineering (IRE) Program of Minnesota State University Mankato, is an upper division (3rd and 4th year) undergraduate engineering education program based on the Aalborg, Denmark PBL model. Students work in teams to solve industry-sourced projects each semester. The learning of engineering is accomplished in three domains - technical learning of engineering concepts, professionalism, and design, which we call the “three-legged stool” of engineering education. The program promotes entrepreneurial mindset and innovative open-ended problem-solving in context. Fifty students are enrolled in 3rd and 4th-year studies at …


Scaffolding Project-Based Learning In An Engineering And Education Partnership Using Open-Access Technology, Pilar Pazos, Stacie I. Ringleb, Jennifer Kidd, Rachel Jones Jan 2019

Scaffolding Project-Based Learning In An Engineering And Education Partnership Using Open-Access Technology, Pilar Pazos, Stacie I. Ringleb, Jennifer Kidd, Rachel Jones

Engineering Management & Systems Engineering Faculty Publications

This paper describes the use of a freely-accessible open-source platform based on Google Apps for Education that combines Google Sites, Google Docs, Google Drive, Google Hangouts and script language in a custom-based interface that supports collaborative service-learning projects for teams of Engineering and Education students. The approach discussed in this paper was successful in promoting collaboration among students from two different disciplines working remotely. The analysis suggests that balanced participation in the team, presence of shared goals and clear roles that emphasized individual and collective responsibilities were key to a successful interdisciplinary project experience. While many students still reported struggling …


Growing Entrepreneurial Mindset In Interdisciplinary Student Engineers: Experiences Of A Project-Based Engineering Program, Elizabeth Pluskwik, Eleanor Leung, Andrew Lillesve Jun 2018

Growing Entrepreneurial Mindset In Interdisciplinary Student Engineers: Experiences Of A Project-Based Engineering Program, Elizabeth Pluskwik, Eleanor Leung, Andrew Lillesve

Integrated Engineering Department Publications

Engineering education models have recently embraced the entrepreneurial mindset as a desired outcome of undergraduate engineering education. Interdisciplinary active learning strategies have been suggested as an effective pedagogy for engaging student engineers in undergraduate engineering education. Recent research suggests that active, social learning in context can lead to improvements in learner innovation, problem-solving, curiosity, retention and accessibility of knowledge, value-creation, and other desired learning outcomes. Much of the recent adoption of active and collaborative learning, self-directed learning, problem-based and project-based learning (PBL), peer to peer learning, and other similar learning strategies are aimed at developing innovative and entrepreneurial mindset skills, …


Effectiveness Of Gamification Activities In A Project-Based Learning Classroom, Eleanor Leung, Elizabeth Pluskwik Jun 2018

Effectiveness Of Gamification Activities In A Project-Based Learning Classroom, Eleanor Leung, Elizabeth Pluskwik

Integrated Engineering Department Publications

The purpose of this research is to analyze the effectiveness, and student's self-reported engagement with gamification tools on a student's learning of technical concepts when used in a project-based learning (PBL) engineering classroom environment. Gamification, as defined in this study, is the use of game-based elements such as online audience response systems with automated feedback in non-game situations. By adding gamification to the classroom, we hope to further build on the active and collaborative learning environment that our PBL program already provides. Five gamification activities were implemented during the Fall 2017 semester with junior and senior student engineers enrolled in …


Work In Progress: Teaching Game Design And Robotics Together: A Natural Marriage Of Computing And Engineering Design In A First-Year Engineering Course, Adam R. Carberry, Ashish Amresh Apr 2018

Work In Progress: Teaching Game Design And Robotics Together: A Natural Marriage Of Computing And Engineering Design In A First-Year Engineering Course, Adam R. Carberry, Ashish Amresh

Ashish Amresh

The increased dependence on computer programming in engineering has made it essential for engineering students to learn about programming throughout their undergraduate education. In the same vein, computing students benefit when given an opportunity to learn more about engineering design and systematic thinking. This paper discusses how one college embedded computing and engineering into a combined first-year introductory course. The course fuses computing and engineering using game design and robotics as an offering for both cohorts of students to work together in a multidisciplinary environment. Over the course of the semester, students learn introductory computing and engineering design concepts by …


Iron Range Engineering Pbl Experience, Ron Ulseth, Bart Johnson Jul 2015

Iron Range Engineering Pbl Experience, Ron Ulseth, Bart Johnson

Integrated Engineering Department Publications

A new PBL model started in 2010 in Minnesota, United States. The PBL model is upper-division (the last two years of four-year bachelor’s of engineering degree). Entering students are graduates of Minnesota’s community colleges. The Aalborg PBL model served as an inspiration for the program’s development. Unique attributes of the program include industry clients, semester-long projects, emphasis on development of self-regulated learning abilities, dedicated project rooms, technical competence learned in one-credit, small (3-4 student) groups with one academic staff called learning competencies, and an emphasis on continuous improvement. The program has earned ABET accreditation. Seventy-five students have graduated and are …


Professional Competency Development In A Pbl Curriculum, Bart Johnson, Ron Ulseth Jul 2015

Professional Competency Development In A Pbl Curriculum, Bart Johnson, Ron Ulseth

Integrated Engineering Department Publications

Substantial dialogue exists regarding the needs of the engineering profession and the changes in engineering education necessary to meet them. Important to this change is an increased emphasis on the professional competencies as identified by the Washington Accord and the ABET professional skills for engineering graduates and how to educate for them. This paper will explore the potential for a project based learning engineering curriculum model to meet this need. It will summarize a newly developed upper-division undergraduate project-based learning (PBL) engineering program in the U.S. engineering educational system and its approach to professional competency development. Based on the ABET …


Leading Large-Scale Change In An Engineering Program, Cheryl Allendoerfer, Rebecca Bates, Jennifer Karlin, Ron Ulseth, Dan Ewert Jun 2015

Leading Large-Scale Change In An Engineering Program, Cheryl Allendoerfer, Rebecca Bates, Jennifer Karlin, Ron Ulseth, Dan Ewert

Integrated Engineering Department Publications

While many efforts have been made to improve technical and professional skills in engineering graduates, there has been little comprehensive change in the pedagogy of most engineering education institutions in the U.S. Many of these efforts involve changing only one or two aspects of the curriculum, and therefore are less likely to make significant changes in the student learning outcomes. For better success, engineering curricular changes will need to address the entire education system. In order to see real, sustainable improvement in engineering education practice, both the behaviors of the participants and the systems within which these participants act must …


Student Self-Efficacy In Introductory Project-Based Learning Courses, Geoffrey Pleiss, Madeline Perry, Yevgeniya Zastavker Oct 2012

Student Self-Efficacy In Introductory Project-Based Learning Courses, Geoffrey Pleiss, Madeline Perry, Yevgeniya Zastavker

Yevgeniya V. Zastavker

The purpose of this study is to determine how introductory Project-Based Learning (PjBL) courses affect the self-efficacy of first-year engineering students. Grounded theory is used to analyze twelve interviews with first-year students about their experiences in two PjBL courses, Engineering Design and Physics Laboratory. Data indicate that students' self-efficacy within each course is correlated with the extent to which their course goal perceptions align with those intended by faculty. In Engineering Design, students' recognition of the faculty's intended course goals corresponds to higher levels of self-efficacy. Conversely, in Physics Laboratory, students' low self-efficacy is correlated with a large gap between …


Work In Progress - Using Video And Self-Reflection To Enhance Undergraduate Teams, Nick Tatar, Debbie Chachra, Yevgeniya Zastavker, Jonathan Stolk Jul 2012

Work In Progress - Using Video And Self-Reflection To Enhance Undergraduate Teams, Nick Tatar, Debbie Chachra, Yevgeniya Zastavker, Jonathan Stolk

Yevgeniya V. Zastavker

Engineers today must be able to communicate and collaborate in teams. They also must be comfortable making adjustments within the team to maintain flow and progress toward project goals. With these goals in mind, students in a first-semester engineering seminar course were asked to videotape a team meeting in their design course and to write a self-reflection paper after viewing their video. After analyzing the video, students were asked to provide clear suggestions in their self-reflection paper for improving their own and their team's performance. Our preliminary analysis showed that video-supported reflections: 1) may be more effective than memory for …


Work In Progress - Using Video And Self-Reflection To Enhance Undergraduate Teams, Nick Tatar, Debbie Chachra, Yevgeniya Zastavker, Jonathan Stolk Jul 2012

Work In Progress - Using Video And Self-Reflection To Enhance Undergraduate Teams, Nick Tatar, Debbie Chachra, Yevgeniya Zastavker, Jonathan Stolk

Jonathan Stolk

Engineers today must be able to communicate and collaborate in teams. They also must be comfortable making adjustments within the team to maintain flow and progress toward project goals. With these goals in mind, students in a first-semester engineering seminar course were asked to videotape a team meeting in their design course and to write a self-reflection paper after viewing their video. After analyzing the video, students were asked to provide clear suggestions in their self-reflection paper for improving their own and their team's performance. Our preliminary analysis showed that video-supported reflections: 1) may be more effective than memory for …


Work In Progress - Using Video And Self-Reflection To Enhance Undergraduate Teams, Nick Tatar, Debbie Chachra, Yevgeniya Zastavker, Jonathan Stolk Jul 2012

Work In Progress - Using Video And Self-Reflection To Enhance Undergraduate Teams, Nick Tatar, Debbie Chachra, Yevgeniya Zastavker, Jonathan Stolk

Debbie Chachra

Engineers today must be able to communicate and collaborate in teams. They also must be comfortable making adjustments within the team to maintain flow and progress toward project goals. With these goals in mind, students in a first-semester engineering seminar course were asked to videotape a team meeting in their design course and to write a self-reflection paper after viewing their video. After analyzing the video, students were asked to provide clear suggestions in their self-reflection paper for improving their own and their team's performance. Our preliminary analysis showed that video-supported reflections: 1) may be more effective than memory for …


A Comparison Study Of Project-Based-Learning In Upper-Division Engineering Education, Ron Ulseth, Bart Johnson, Rebecca Bates Nov 2011

A Comparison Study Of Project-Based-Learning In Upper-Division Engineering Education, Ron Ulseth, Bart Johnson, Rebecca Bates

Integrated Engineering Department Publications

A new model for engineering education was launched in January 2010 in northeastern Minnesota. The Iron Range Engineering (IRE) model is a project-based-learning (PBL) methodology that focuses on producing graduates with integrated technical and professional knowledge and competencies. A unique and important element of the IRE model has 100% of IRE student learning taking place in the context of industry projects. Students at IRE are upper-division engineering students who transferred from Minnesota community college lower-division engineering programs. To understand the impact that IRE methodology may have on preparing engineers with the competencies needed for the future workplace, a comparison study …


The Iron Range Engineering Pbl Curriculum: How Students Adapt To And Function Within Pbl, Rose M. Marra, Betsy Palmer, Ron Ulseth, Bart Johnson Nov 2011

The Iron Range Engineering Pbl Curriculum: How Students Adapt To And Function Within Pbl, Rose M. Marra, Betsy Palmer, Ron Ulseth, Bart Johnson

Integrated Engineering Department Publications

Iron Range Engineering is a unique complete-PBL curriculum for upper division students. Rather than studying about engineering in traditional engineering courses, IRE students solve complex and ill-structured industry problems in mining, milling, and manufacturing industries. To support students’ transition to PBL and to facilitate deep approaches to learning technical and professional competencies required for the engineers of the future, faculty have created a variety of structures. This paper describes IRE’s PBL implementation and reports the results of a qualitative study of their students.


A New Model Of Project Based Learning, Ron Ulseth, Jefferey E. Froyd, Thomas A. Lotzinger, Dan Ewert, Bart Johnson Jun 2011

A New Model Of Project Based Learning, Ron Ulseth, Jefferey E. Froyd, Thomas A. Lotzinger, Dan Ewert, Bart Johnson

Integrated Engineering Department Publications

A new model for engineering education has been developed and funded. The model is 100% project based learning (PBL) where the students develop their own learning objectives. The projects are authentic needs contributed by collaborating industries. Students monitor the acquisition of 32 technical competencies and all of the design and professionalism competencies required of new practicing engineers. The reasons for the new model, description of the model, research supporting the model, methods for evaluating the model and its transportability are discussed.


Entrepreneurship In The Iron Range Engineering (Ire) Model, Dan Ewert, Ron Ulseth, Bart Johnson, Jeff Wandler, Andrew Lillesve Jun 2011

Entrepreneurship In The Iron Range Engineering (Ire) Model, Dan Ewert, Ron Ulseth, Bart Johnson, Jeff Wandler, Andrew Lillesve

Integrated Engineering Department Publications

The aim of this paper is to describe a new model for engineering education that has entrepreneurship, in its many form, as a focus. Issues involved with integrating student-based entrepreneurship into the educational process are also described.