Session XXXX Integrating Artificial Intelligence into Construction Education: Assessing the Impact on Students’ Perception of Knowledge, Confidence, and Relevance to Career Chinedu Okonkwo, Roy Lan, Ibukun Awolusi, Ph.D., and Jiannan Cai, Ph.D. School of Civil & Environmental Engineering, and Construction Management The University of Texas at San Antonio AbstractIn technical and professional disciplines such as construction, the importance of creating andimplementing positive improvements in the educational curriculum to meet the dynamic andcomplex needs of the world cannot be overemphasized. There is a rising need
Patricia Rodriguez The University of Texas at San Antonio AbstractExamining changes in confidence, identity, and attitudes toward science, technology, engineering,and mathematics (STEM) careers among Latina/o middle and high school students who are at-riskand low-income is essential for promoting equitable educational opportunities. Conducting thoroughdata collection from community-based STEM programs helps us understand these changes and canguide targeted interventions that empower students in their academic journeys.This quantitative study investigates the effects of an intensive summer pre-engineering programtailored for middle and high school students in a large urban
experiences expose students toaerospace research projects and help them build a supportive community of peers and mentors,which is critical for their persistence in graduate programs and/or careers. The impact of suchprograms extends beyond skill development, as they also play a crucial role in fostering self-efficacyand sense of belonging in the aerospace engineering community. This is particularly important giventhat URM students often face additional challenges, including imposter syndrome and a lack ofrepresentation among faculty and industry professionals [1]. Furthermore, the intersectionality ofmarginalization based on ethnicity and social class compounds the challenges faced by URMstudents, making it essential to consider multiple dimensions
1Robotic Opportunities for Rural Communities: Building a STEM Pipeline for K-12 Students Fiona Litiku, Thomas Pierson, Matthew Tyrrell, Dr. Curtis O’Malley Mechanical Engineering Department New Mexico Institute of Mining and TechnologyAbstractThe Mechanical Engineering Department at New Mexico Tech hosts a robot combat competitionannually, with attendance from K-12 schools across the state. The goal of the competition, as partof the mechanical engineering outreach program, is to build students' interest in engineering androbotics while developing a pathway to a career in STEM. As attendance for the competitionincreases each year, students and teachers get more
as phasechange, phase transition temperature, crystallization, and ice nucleation, in existing universitycourses. We educated a diverse group of students and exposed them to state-of-the-art techniquesearly in their academic careers to consider pursuing a STEM career and higher education. Asoutreach, we also trained graduate students, as well as students from an adjacent communitycollege (CC). The developed curricular activities provided students with experience inexperimentation, data analysis, and technical writing. Based on the ABET assessment of learningoutcomes, we assessed our goals to educate students on 1) using multidisciplinary science,engineering, and mathematical skills to evaluate and address complex issues emergent in
-partner input,community college and 4-year university collaborations, and published workforce data, identified apressing need to develop an Engineering Technology program. To that end, SUSLA developed a2+2+2 Matriculation Model within the Engineering Technology associate of applied science degreeprogram designed as a gateway to enable early education, persistence to post-secondary credentials ofvalue, and high-quality career outcomes. Programs with similar demographics may be able to use thisas a model which aims to do four things: 1) facilitate the early engagement of students decreasing thenumber of academically underprepared learners entering college, 2) expand postsecondaryeducational opportunities to improve outcomes fostering economic
the percentage of students who graduate within four years of starting high school. • Extended Graduation Rates: Includes five-year and six-year graduation rates to account for students who take longer to complete their education.3. English Language Proficiency • Progress of English Learners: Evaluates the improvement in English language proficiency for students identified as English learners.4. College, Career, and Military Readiness (CCMR) • College Readiness: Measures the percentage of students meeting college readiness benchmarks on standardized tests like SAT, ACT, or Texas Success Initiative (TSI) assessments. • Career Readiness: Assesses the percentage of students earning industry-recognized
academic disciplines. We aim to conduct studies tracking changes in students’ perceptions to AI Tool over their academic careers focusing on how early exposure to these technologies’ influences learning
of the 2025 ASEE Gulf-Southwest Annual Conference TheUniversityofTexasatArlington,Arlington,TX Copyright ã 2025, American Society for Engineering Education 2 Welcome LettersWe created a Welcome Letter that highlighted university and departmental resources, such as healthand safety offices, career support services, facilities for personal growth and relaxation, and keystudent organizations. The Welcome Letter introduced the idea that graduate students join a researchlab through which they will form mentoring relationships with faculty and other lab members. Inkeeping with prior research on the ways in
undergraduate education enables students to complete projectsmore effectively and equips them with essential competencies for their future careers. By fosteringthese abilities, engineering programs can better prepare students to navigate the collaborative nature Proceedings of the 2025 ASEE Gulf-Southwest Annual Conference The University of Texas at Arlington, Arlington, TX Copyright © 2025, American Society for Engineering Education 2of professional engineering work. Therefore, integrating teamwork skill development into theengineering curriculum is critical to cultivating the next generation of engineers