Paper ID #49763Mindset Matters: Exploring Grit and Attitudes in Engineering and CS Undergradsin an NSF S-STEM funded programDr. Tina Johnson Cartwright, Marshall University Dr. Tina Cartwright is a professor of science education at Marshall University. She collaborates with colleagues across both the Colleges of Science and Engineering and Computer Science to support student success in STEM.Julie Lynn Snyder-Yuly, Marshall University Julie Snyder-Yuly, Associate Professor Department of Communication Studies, Marshall University (Ph.D. University of Utah, 2017). Dr. Snyder-Yuly’s research engages qualitative and
conducted by Balgopal, two teachers werehired through these networks who created an integrated STEM curriculum combined withgeometry with construction principles. The reform was driven by professional satisfaction, andwillingness to take risks and these factors empowered these teachers to pursue and sustain theefforts of reforms (Balgopal, 2020). However, the extent to which this influence appears varies because of the demographiccharacteristics of study participants and the structure of the education sector in the country. Thereexists a gap in the previously published research studies regarding longitudinal studies to find thelong-term impacts of automation, robots, and coding clubs on deciding careers in STEM fields.(Tran, 2018). Thus, to
can be taught using themost efficient pedagogy to reach expected outcomes.Step 4 - Integration of sub-systems: the groups meet regularly to exchange information so thatthe various aspects can be easily assembled. Steps 2 to 4 are done in loop until the initialspecifications are satisfied.Step 5 - An oral presentation with a real or virtual prototype system closes the project and a finalnote is given to each group.Benefits: students learn by themselves, they acquire research skills, they understand therequirements of working inside a small group but in coherence with the larger group, they faceearly in their study the obligation to design a system that works and they realize the necessity forengineers to efficiently communicate on what they
engage in meaningful problem-solving whilegaining an appreciation for stormwater management. The overwhelmingly positive feedbackfrom students and teachers underscores the importance of such initiatives in addressingworkforce shortages in engineering fields. Future iterations of this activity could exploreextended formats to facilitate deeper discussions on trade-offs and calculations to enrich thelearning experience. This effort provides a transferable model for integrating real-worldengineering concepts into outreach activities, with the goal to bring awareness about engineeringcareers in water related job market.References1. https://money.usnews.com/careers/best-jobs/rankings/best-engineering-jobs Accessed 12.31.20242. https://www.bcg.com
productive, as it fostersadaptability while ensuring structure. However, for undergraduate students transitioning from astructured K-12 system to an open academic setting, a structured pathway to student successbecomes essential. Without clear guidance, excessive freedom may lead to distractions,impacting learning and retention. By integrating flexible learning pathways, education canmaintain academic rigor while allowing adaptive approaches that support student success acrossvaried learning needs [4].Figure 1: Challenges in Conventional Education (Courtesy: National Center for Education Statistics -2022)The pie chart titled "Challenges in Conventional Education in the USA" illustrates four keyissues that impact traditional educational models: 1
. The emphasis is on building the technical skills around understandingmaterial properties, and knowledge of how materials respond to various loads. At the same time,this subject offers an opportunity to introduce other practical project variables. This paper willdemonstrate an example of integrating concepts of environmental and economic sustainability inthe material selection process using Ashby diagrams (charts) [3]. Ashby charts are visual toolswhere variables are plotted against each other, such as strength versus density, to enable theengineer to weigh trade-offs between multiple variables. Further, when students use the Ashbycharts they practice the skills in making informed decisions based on data and projectrequirements.The activity
the clicker study where questions from the end-of-course evaluations did notreveal any apparent differences between the clicker and control classes2. The NSSE annualsurvey of freshmen and seniors asks students how often they have, for example, participated inprojects that required integrating ideas or information from various sources, used e-mail tocommunicate with an instructor, asked questions in class or contributed to class discussions,received prompt feedback from faculty on their academic performance, participated incommunity- based projects, or tutored or taught other students. The findings are used todetermine how successful a university is at engaging students4.Sometimes student feedback contradicts the results associated with
sustainability and its incorporation into engineering curricula and engineeringdesign are of paramount importance across all engineering disciplines due to several factors,such as environmental protection, resource management, economic benefits, innovation/competitiveness, and social responsibility. Furthermore, with the increased focus onaccreditation criteria emphasizing engineering ethics and professional responsibilities across allfour ABET commissions, the topic of sustainability has been considered an essential addition tothe engineering technology curriculum. The engineering department at Cuyahoga CommunityCollege (Tri-C) initiated the process to determine how sustainability can be included in thecurriculum. The process was executed in the
and associated projects are presented in Table6 as an example of what is possible. Intangible course outcomes include statements from PTXstudents that the new course was the “most valuable course they took” in their program.ConclusionsThe integration of design project-based learning, problem-solving, and peer review into graduate-level statistics education at Wright State University has provided a robust framework foraddressing traditional challenges in the field. Through these methods, students not only gainedtechnical proficiency in statistical tools and methods but also developed critical thinking,collaboration, and communication skills. Evaluation of these approaches showed promisingoutcomes, with increased student engagement and improved
Paper ID #49762Structured Pathways for Student Success: A Strategic Approach to CourseOptimization and Academic ExcellenceDr. Ragavanantham Shanmugam, Fairmont State University Dr. Ragavanantham Shanmugam is working as Department Chair and Associate Professor of Engineering Technology at Fairmont State University, Fairmont, WV. He has over 25 years’ experience in Engineering Higher Education and research and also an award-winning teacher and active engineer. His academic qualifications allow him to coordinate successful research activities, but his true talent is teaching all students by engaging them in STEM by