and applicant’s desires provides arobust environment to explore whether professional skills truly matter in the hiring process. Content analysis of job advertisements was used to research recruitment effectiveness[33] and to identify gaps between skills needed on the job and skills advertised [34]. For this study, the development of a list of terms from the existing literature (Table 4)provides a framework to support the identification of soft skills being sought by employers. Thelist of specific skills in Table 4 represents an aggregation across 5 years of academic researchinto engineering education, based on responses from students, alumni, professionals, andacademics. This additional validation step checks the skills
can be more genuine with my class, it makes it more impactful to them.Another interviewee who is chair of a civil/environmental engineering department with five ofits six faculty members holding profession engineering licenses noted that students have positivereceptions to this perspective because it relates to what they might encounter after graduation. If you have a faculty member who has done professional work or you have a professional engineer from industry who is working as an adjunct, that’s looked upon different than someone from the history department who students perceive as not really ever having a job.Although not all engineering faculty have industry experience, those who do can leverage thisexperience in their ESI
three and half years as the Associate Dean for Academic and Student Affairs of the College of Engineering. c American Society for Engineering Education, 2018 Developing an Integrated Curriculum-wide Teamwork Instructional StrategyAbstractGraduating engineering students need many technical and professional skills to be successful intheir careers, including those in communication and teamwork. The School of Chemical,Biological and Environmental Engineering (CBEE) at Oregon State University administers threeundergraduate degree programs, and the curriculums have many courses, which incorporateteamwork and group activities (often multidisciplinary). However, until recently
. This is hugely significant and successful and surprising, asstudents in a projects course have lectures on prototyping, manufacturing, and other “cool”hands-on topics. For a large group of mostly 18-19 year-olds to show overwhelming interest inEngineering Ethics is a victory for the instructors.ConclusionsThis small study on ethics in a first-year engineering projects course provides insights toinstructors teaching the courses and leaves room for future exploration. One overall, broadtakeaway is that the Ethics lectures are popular and successful. The case study theme and layoutof the lectures captivates students’ interest and they are often able to make connections from themajor event to their own career as an Engineer.These Ethics lectures
-technical audiences are too significant to ignore. In this time of ongoing discord betweenscientists, policymakers, and the public, the ways in which scientists communicate with thoseoutside of their profession is critical to improving scientific literacy [14], [15]. As Chan [16]argues, “In order for the lay public to shape an informed opinion of scientific discoveries andcontroversial developments, it is critical that scientists can communicate about research and theimplications of that research to promote awareness, clarity, as well as to respond to publicconcerns. These are the abilities that are lacking amongst many new science graduates.”Currently, there is a dearth of research regarding undergraduate students’ creative explanationsin their
addition, we had informal conversationsabout the work that was occurring and how the chapter is run. Extensive fieldnotes were taken torecord these experiences and interactions.ResultsImpacts on StudentsEWB membership typically begins in universities, and students are often drawn to the servicelearning opportunity through activity fairs, club showcases, or similar campus-wide,extra-curricular events. As an organization reliant on its volunteers, a major goal is to impactstudents in such ways that they continue on as either faculty or professional members. For reasonswe will explore elsewhere, cultivating and sustaining faculty and professional members isparticularly challenging, given the realities of tenure and promotion expectations in the
ofprogrammatic benefit of the University’s final year STS courses can be transposed to otherschools. It does require cultural acceptance of the validity of this type of training by faculty intraditional departments, and an embrace of diverse ways of knowing by the administration all theway from the Dean’s office to the Undergraduate curriculum committee. However, the pay-offin student learning and ability to function in diverse environments is more than worth it.International Standards: Exploring the Problems and Possibilities of Global InnovationCo-author Ku designed and implemented an STS-informed STEM course curriculum,"Standards in Action: A Global Perspective", which was funded by the National Institute ofStandards and Technology (NIST). The
faculty member at Oklahoma State University working on terahertz frequencies and engineering educa- tion. While at Oklahoma State, he developed courses in photonics and engineering design. After serving for two and a half years as a program director in engineering education at the National Science Founda- tion, he took a chair position in electrical engineering at Bucknell University. He is currently interested in engineering design education, engineering education policy, and the philosophy of engineering education.Dr. Jennifer Karlin, Minnesota State University, Mankato Jennifer Karlin spent the first half of her career at the South Dakota School of Mines and Technology, where she was a professor of industrial
. She teaches Properties of Reservoir Fluids, Mechanics of Petroleum Production, Petroleum Seminar, Field Session, Fossil Energy, Environmental Law and Sustainability, and Corporate Social Responsibility. In addition to teaching in the Petroleum Engineering program at Mines, Linda teaches courses in the Leadership in Social Respon- sibility, Humanitarian Engineering, Energy, and Midstream Minor programs and the Natural Resources and Energy Policy graduate program at Mines. Linda is an active member of the Society of Petroleum Engineers (SPE) Health, Safety, Security, Environment and Social Responsibility (HSSE-SR) Advisory Committee and is Chair of the Sustainable Development Technical Section. She is also a member
provides opportunities for students to talk directly with membersfrom various stakeholder groups in the VA coalfields including state regulators, industrymembers and local citizens.3. SurveyAppendix A includes the survey instrument used in the first year of the study analyzed here. Itwas designed to measure students’ knowledge, abilities, and attitudes [15] related to CSR andcollect relevant background information to explore possible connections between those and thedemographic information, students’ motivations for pursuing engineering, their career desires,and their civic activities. The survey reflects feedback from an expert panel of engineeringeducators and industry practitioners, as well as “talk alouds” with students. Going through thefirst