scholarly journals Board 3: Engineering Technology Scholars-IMProving Retention and Student Success (ETS-IMPRESS): First Year Progress Report

2020 ◽  
Author(s):  
Nasser Alaraje ◽  
Lorelle Meadows ◽  
Laura Fiss ◽  
Susan Amato-Henderson ◽  
Guy Hembroff ◽  
...  
Author(s):  
Andrew Roncin ◽  
Husam Elsaid ◽  
Michael Krywy ◽  
Joe Carey

This paper provides an overview of the Introduction to Electrical Engineering Technology program, analyzes its success, and provides observations for administrators considering a similar initiative.A barrier to access for Science Technology Engineering and Math-based careers is the requirement for high school math and physics courses. To address this shortcoming, an Electrical Engineering Technology (EET) program at a major Manitoba college implemented a one term Introduction to Electrical Engineering Technology (Introduction to EET) program to upgrade student mathematical abilities, reduce the first-year workload, and help them identify a career that interest and motivate them.Student success is evaluated by comparing the retention and relative performance of the Introduction to EET students who entered the regular EET program with the performance of direct entry students in the same classes. The grades were analyzed using an ANOVA approach to determine if the two groups were statistically different. In the first cohort, statistical differences were observed in three courses with the direct entry students performing lower. In the second cohort, the Introduction to EET students performed poorer in mathematics than their direct entry peers. As students continued through the program, performance differences became harder to detect.


2018 ◽  
Vol 22 (3) ◽  
pp. 497-521 ◽  
Author(s):  
Yu (April) Chen ◽  
Sylvester Upah

Science, Technology, Engineering, and Mathematics student success is an important topic in higher education research. Recently, the use of data analytics in higher education administration has gain popularity. However, very few studies have examined how data analytics may influence Science, Technology, Engineering, and Mathematics student success. This study took the first step to investigate the influence of using predictive analytics on academic advising in engineering majors. Specifically, we examined the effects of predictive analytics-informed academic advising among undeclared first-year engineering student with regard to changing a major and selecting a program of study. We utilized the propensity score matching technique to compare students who received predictive analytics-informed advising with those who did not. Results indicated that students who received predictive analytics-informed advising were more likely to change a major than their counterparts. No significant effects was detected regarding selecting a program of study. Implications of the findings for policy, practice, and future research were discussed.


2020 ◽  
Author(s):  
Timothy Hinds ◽  
S. Patrick Walton ◽  
Mark Urban-Lurain ◽  
Daina Briedis

Author(s):  
Mark Hoyert ◽  
Cynthia O'Dell

The scholarship of teaching and learning literature is replete with examples of pedagogical techniques that have been demonstrated to be effective in improving learning, motivation, and student success. The extension of these techniques beyond the original context has tended to be slow, difficult, and incomplete. The following paper examines an intervention designed to encourage the exploration and use of a variety of pedagogical techniques by faculty in a traditional, four-year college faculty within the context of the AASCU Re-imagining the First Year Initiative. Small groups of six to eight faculty, joined and created communities of practice. The groups were known as Pedagogical Interest Groups, or PIGs for short. The faculty read about and analyzed a series of pedagogical techniques and committed to introducing at least one technique into their courses to further explore the techniques. When the techniques were successful, the faculty members redesigned entire classes to expand the impact. The communities of practice were successful in encouraging faculty to explore a wide variety of techniques. The average faculty group explored eight different pedagogical techniques. Faculty were able to use the opportunity to experiment with techniques with the support from their colleagues in their PIG. A dozen techniques were explored across the PIGs and dozens of class sections have been completely redesigned. To date, over 2000 students have experienced redesigned courses. Measures of student success, satisfaction, and interest in those sections have increased. The effort has been accompanied by a robust increase in the campus-wide retention rates. ​


Author(s):  
Niki Weller ◽  
Julie Saam

Experiential-learning provides opportunities for students that feature a variety of high-impact practices including first-year seminars, internships, community learning, collaborative projects, and capstone seminars. To offer these high-impact practices for students, faculty from across disciplines and majors must be willing to incorporate these opportunities within their courses and degrees. Indiana University Kokomo has offered two successful programs to support these high-impact practices. One program, the Kokomo Experience and You (KEY), supports faculty in the development and implementation of events and activities to support student learning. The other, the Student Success Academy Faculty Fellows Program, provided faculty members the opportunity to examine research and concepts so that they can better promote student success in their classrooms. Building on the success of these two programs, a third initiative, the Experiential Learning Academy (ELA), was launched in 2018, funded by a Reimagining the First Years mini-grant from AASCU.


Author(s):  
Regina L. Garza Mitchell ◽  
Gina L. Cano-Monreal

This chapter describes how one innovative practice evolved to become an integral part of the college's efforts to increase student preparedness and success in courses so that they will be employable and competitive in the global workforce. Texas State Technical College Harlingen aimed to enhance student success in online education through implementing a mandatory class, Student Online Learning Orientation, for new online students. The course was developed as the result of faculty research and recommendations regarding online learning at the college. The majority of students at the college are underprepared and from low socioeconomic backgrounds, putting them at a disadvantage in taking these courses. Rather than a barrier to taking online classes, the goal of this class is to provide students with the necessary tools and skills to be successful. Results of the program show an increase in persistence and completion of online courses, and the course has become an integral part of the college's training and first-year experience for all students.


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