addresses the global literacy needs of professionalsinvolved with global engineering. To support achieving these outcomes, the School alsoapproved several best practices to guide the development and improvement of relevantengineering programs.IntroductionProducing globally competent engineers for the 21st century is increasingly important in aworld that is “flat” and more globally connected. Engineers are now facing the distinctpossibility that they will be working for a multinational company, or NGO that requiresmulticultural awareness, some degree of foreign language proficiency, and the ability tocommunicate effectively across cultures and time zones. However, data from the Institute forInternational Education show that few US science and
withinternational collaborations, preparing for an international conference, observations as youtravel, challenges, and expectations.2. a) What did you learn from the Wednesday plenary and the Women in STEM and Diversitypanels? b) Is there a research benefit to meeting someone in person versus using technology toconnect?3. a) Please describe the impact of having a mixed group of faculty (external to your university)and graduate students. b) Has this trip facilitated any collaborations or research ideas that moveyou closer to your academic goals? c) How can an excursion like this one contribute to career-life balance? Page 19.30.104. How does this picture of
-independency that is expected from graduate students when it comesto research. Some of the students anticipated more guidance and/or daily contact with the facultyhost and felt a little lost at the beginning. Better preparing the students for that environment willallow them to engage in the research project and adjust to the lab environment more quickly.The program was designed to provide intensive language training in the morning. For that, thecollaboration of Texas A&M University’s English Language Institute was crucial. The EnglishLanguage Institute integrated the 50 students into their regular summer session while creating atailored TOEFL preparation class for the group and designating conversation partners that wouldaddress each student’s
and international competitions.5. Work perspectives.Graduates of the SE program work as the developers and software architects, software qualitymanagers in industrial companies, research centers and governmental agencies.Philosophically, the aim of the program leading to the Bachelor of Software Engineeringdegree is to provide students with a strong theoretical and practical background in computersoftware along with the engineering analysis, design and implementation skills.In 2014, Higher School of Economics modified its educational standards on the bachelordegree level. The main purpose of the reform was to improve the quality of education bydecreasing the number of courses students take simultaneously (4 to 5 + foreign language)and
c American Society for Engineering Education, 2015 Successful Academic Partnership in the Development of an International Construction Practices CourseAbstractThe challenge of working effectively with multicultural teams will continue to grow inimportance. Students graduating from engineering and construction management programs needto be functional in this global environment. To address this need, this paper discusses asuccessful partnership among several international universities to develop a constructionpractices course designed to prepare engineers for the global workforce. The course specificallyfocuses on sharing global construction engineering and management practices and includespartnerships primarily with
undergraduate, graduate and industrial programs.Dr. Carl-Henric Lennart Nilsson, Technology management Associate Professor Carl-Henric Nilsson is a business development specialist focused on industrialization processes with a PhD in Industrial Management. He has founded several startups and is currently CEO of Kunskapspartner AB and researcher at Lund University specializing in pedagogics, entrepreneurship, business development and industrialization. Page 19.7.1 c American Society for Engineering Education, 2015 Design as an integrating factor in an international cross
evaluates programmatic inter- ventions designed to recruit, retain and advance diverse faculty at UMBC. Dr. Reed also routinely dis- seminates best practices learned from UMBC’s diversity initiatives at national and international venues. Dr. Reed is on the advisory board for the Mid-Atlantic Higher Education Recruitment Consortium.Dr. Renetta G. Tull, University of Maryland, Baltimore County Renetta Garrison Tull is Associate Vice Provost for Graduate Student Professional Development & Post- doctoral Affairs at the University of Maryland, Baltimore County (UMBC: An Honors University in Mary- land), where she is the Co-PI and Founding Director for the National Science Foundation’s PROMISE: Maryland’s Alliance for
theircurricula, and this travel course can be a technical elective. The other program does not include atechnical elective in its existing curriculum, so this travel course does not count as a majorcourse, but can still count towards the total credits for graduation.To answer the third question, it was agreed that the travel course should be an elective in thePBL course sequence, and a project would be an essential component. The PBL course sequenceranges from freshman seminar to senior capstone projects, and gradually deepens the students’knowledge to carry out practical projects, and prepares our students to succeed in their capstoneprojects as well as engineering jobs in industry after graduation. This travel course aims atincorporating the global
from the United States Naval Academy at Annapolis focusing on digital electronics design. Doug was one of 40 Ph.D. students selected globally to present his research at the International Conference on Information Systems (ICIS) Doctoral Consortium in Shanghai, China. His research has been nominated Best Paper at the Hawaii International Conference on Systems Science (HICSS), and his work has been published three times in publications of the Japan Society of Information and Management (JSIM). He was recently selected to teach a one week intensive course to graduate students at the Regensburg University of Applied Sciences in Germany. Prior to academia, Doug worked as an IT manager and consultant in the electric
small proportion of students majoring inhigh-demand fields such as engineering. The National Science Foundation(NSF) reports that 39% of URMs "plan to major" in science and engineeringfields as freshman, but less than half of these earn an undergraduateengineering degree; rates are startlingly lower for Blacks and Hispanics.One way to increase retention and graduation rates in engineering for allstudents is to enhance their overall skills and readiness for engineering-related work by way of cooperative education (i.e., co-op) and internships1that offer students "real-life, hands on" experience in their major subject. TheCenter for Postsecondary Research at Indiana University identifies suchexperiences as a "high-impact practice" that likely
and machine design. Coordinator of the Undergraduate Program in Mechanical Engineering and Faculty Advisor if the PACE Global Vehicle ProjectMr. Brendan P. Sullivan , New Mexico State University Brendan P. Sullivan is a MS graduate student in the Department of Industrial Engineering at New Mexico State University (NMSU) where his research focuses on additive manufacturing and systems engineering. He holds a Masters Degree in Political Science with a concentration in international relations and security issues. Brendan has served as team lead for the NMSU institutional involvement in the Partnership for the Advancement of Engineering Education (PACE), is vice chair of the Institute for Industrial Engineers student
analytics (data-mining and reasoning) of practice-based andexperiential STEM. This data is used to create analytics support tools for teachers, learners andadministrators, providing frameworks for evidence-based curriculum design and learning systems.The PELARS project creates behavioral recording inputs, proving a new learning analytic that isscalable in application, and bridge qualitative and quantitative methods through reasoning andfeedback from input data. The project serves to better understand learners' knowledge in physicalactivities in laboratory and workshop environments, as well as informal learning scenarios.PELARS traces and helps assess learner progress through technology enhancement, in novel waysbuilding upon current research. The
David A. Delaine has a Ph.D. in electrical engineering from Drexel University, in Philadelphia, USA. He currently serves as an executive member of the International Federation of Engineering Education Societies (IFEES), as Vice President for Student Engagement, Diversity, and Inclusion. IFEES aims to strengthen engineering education practices around the world. He has recently completed his tenure as a Fulbright Scholar and is currently performing research as a FAPESP postdoctoral researcher with Prof. Dr. Jose Roberto Cardoso at the Escola Polit´ecnica da Universidade de S˜ao Paulo for his project titled ”Assessing the Impact of One Boundary Spanner on University-wide STEM Educational engagement” where he will
to medicines for Africa and developing nations, and to advance discovery in manufacturing technology, quality of medicines, and rare disease research. This mission is accomplished through innovative knowledge-based programs in STEM areas with an emphasis on interdisciplinary col- laboration. Dr. Clase teaches multiple courses covering topics in biotechnology, bioinformatics, biolog- ical design and drug discovery to engineers, scientists and technologists. Her currently funded projects include collaborators from multiple disciplines and an impact that spans K-12 to graduate education.Mrs. Lauren Ann Terruso, Purdue University Lauren Terruso is the Operations Manager of the Biotechnology Innovation and Regulatory
one of the most international universities in US with the 15% ofinternational undergraduate student body by the Best Colleges – US News and World Report[11]. With UB’s focused international characteristics, the University also has been incollaboration with various higher education institutions in different countries, for a variety ofcollaborative programs including exchange of faculty for instruction, research, lectures andestablishing collaborative academic programs for undergraduate and graduate degrees. Overthe course of a few years UB very successfully established and implemented collaborativedegree awarding programs with Chinese universities of high academic ranking. One goodexample of such a collaborative program is the US-WUST 2+2
persemester).An evaluation of the Eminent Scholar Mentoring program at UMBC demonstrated its success in Page 19.28.4addressing women’s exclusion mentoring relationships. Program participants report receivingadvice from their mentors about grant writing, networking at conferences, researchcollaborations, research presentation opportunities, nominations for research awards, mentoringstudents, and work-life balance. The Eminent Scholar mentors have also provided mentees withletters of support for tenure. Recognized within the ADVANCE community as a best practice,other ADVANCE institutions have replicated the Eminent Scholar Mentoring program (e.g
Education field, attending workshops in non-traditional majors, internships, student advising, and best practices. Page 19.9.1 c American Society for Engineering Education, 2015 Development of a Novel Interdisciplinary Engineering Student Exchange Program AbstractAs an initiative to prepare engineering graduates for the ever-changing global landscape and ajob market that is increasingly becoming more international and competitive, the WhitacreCollege of Engineering (WCOE) at Texas Tech University (TTU) requires that
Engineering Education’s (ASEE), Going theDistance report, 53.6% Hispanics, 61.4% Native Americans, 61.7% African Americans and 49%Female students who enter engineering programs do not graduate in this major.1 This translatesto an engineering workforce that comprise of about 6% Hispanics, 0.3% Native American, 4%African Americans and 13% females according to the latest National Science Foundation’sreport.2 With such high attrition rates among minorities and underrepresented groups, changingthe current engineering workforce’s diversity portfolio is of grave national importance andrequires a plethora of high impact approaches. In the aforementioned ASEE report, over 60strategies and best practices were proposed. High impact practices included first-year
about studying, doing research and/or interningabroad for a longer term at a more advanced stage of their studies. We will present J-termcourses to Chile, France and Germany and the outcomes of the Sojourn Readiness Assessmenttool we used to measure if students made any gains in their preparedness to go abroad.Summer faculty-led service learning programs are effective modules to keep students’ interest inthings international while getting practical experience in applying their technical and languageskills and have them engage with a new culture and engineering environment in a protected butintensive way. A summer service learning project in Guatemala will be showcased.The two short-term modules described above lead up to a year-long study
successful they will be at becoming an effective leader. The best time todevelop these skills are during the undergraduate education of an engineer. This is a time that thestudent can practice, without serious consequences for making mistakes. Therefore, the university’s role in providing programs to prepare students to not only belifelong learners, but also leaders, has gained a greater significance in the last ten years. In orderto meet industry’s growing demand for future technical leaders, university sponsoredundergraduate engineering leadership development programs have been increasing steadily. Table1 lists the rapid growth in the development of these programs.Table1. Engineering Leadership Program and the year they were foundedYet
Paper ID #17540Preparing globally competent and competitive STEM workforce of the 21stcentury in the Global STEM Classroom RDr. Vitaliy Popov, 1. University of San Diego. 2. The Global STEM Education Center Vitaliy Popov is a Post-Doctoral Research Scholar at the Mobile Technology Learning Center, University of San Diego, USA. In addition, Dr. Popov is a consultant at the Global STEM Education Center. For his PhD dissertation, he designed and implemented studies in which over 500 students from more than 55 countries worked together with the help of online collaborative technologies. As a postdoc he is currently conducting a
water filtration, thus improving overall health conditions within communities and greatly enhancing experiential learning in the field. Preliminary research suggests that our designs have reduced community infant mortality rates by more than 40%, saving the lives of more than 4,000 children worldwide. This clearly emphasizes engineering service and the need for sustainable infrastructure projects that produce positive results without negatively impacting future generations.Mr. Tyler Adam Brickles, Tyler is a graduate of the Virginia Military Institute where he obtained his Bachelor’s degree in Civil and Environmental Engineering. While at VMI Tyler conducted research on the implementation of off grid sanitation