their teaching throughout theprogram. However, only one graduate student was a TA and had full access to undergraduaterecitation sessions; two other graduate students were teaching assistants but were involved withgrading and minimal classroom instruction. For this reason, the focus of the program was shiftedtoward learning about and discussing inclusive teaching, and away from implementation andformative feedback. In future iterations, consistent classroom, laboratory, and/or recitationinstruction will be a criterion to participate. It is expected that the TAs’ real-time classroomexperiences and the feedback cycle will generate rich discussion, challenge TAs’ thinking aboutinclusion and equity in STEM, and enhance TA and undergraduate
solutions that facilitate onlineeducation by offering tools for attending classes, accessing study materials, delivering content,and tracking teaching progress across different locations and time zones. Dillenbourg et al. [16]argued that VLE is not simply a trendy phrase used to describe educational software solutions.Instead, they define VLEs as planned spaces, either informational or social, where educationalinteractions happen not only as a form of distance learning but also to improve activities in aclass. In VLEs, students play an active role in constructing the virtual space that can berepresented in various forms, ranging from text-based platforms to fully immersive 3D worlds.VLEs bring together different technologies and pedagogical
engineering coursework. Professor Finelli is a fellow of both the Institute for Electrical and Electronics Engineers (IEEE) and the American Society of Engineering Education (ASEE). She previously served as deputy editor for the Journal of Engineering Education, associate editor for the European Journal of Engineering Education, and associate editor for IEEE Transactions on Education. She founded the Center for Research on Learning and Teaching in Engineering at University of Michigan in 2003 and served as its Director for 12 years. ©American Society for Engineering Education, 2025WIP: Perceptions of InstructionalPractices among EngineeringCollege Students with Attention-Deficit/Hyperactivity
to be engaged teacher-scholars who: (1) teach introductory and advanced engineering classes atthe undergraduate level; (2) teach first year and upper-level interdisciplinary topical courses to majors and nonmajors alike; (3) establish avigorous, externally supported research program (in domains that could include fundamental and applied engineering as well as teaching andlearning) that will include undergraduate students in meaningful projects; and (4) serve the department and university through studentadvising, undergraduate mentoring, active participation in faculty governance, and establishing links to industrial and community partners. Allfaculty are expected to participate in and support the department’s curriculum and program design
patent for pioneering work titled, ”Methods, Systems and Computer Readable Media for applying multi-push acoustic radiation force to samples and monitoring a response to quantify mechanical properties of samples,” showcasing her expertise in applied engineering. She is also a respected author, having co-authored two textbooks. Her debut, ”Algebra Essentials,” emerged during her tenure teaching Mathematics at Wake Tech Community College, while her second publication, ”Creating a Better World: Innovation, Ingenuity, and Engineering,” serves as a cornerstone in first-year engineering courses at NC State. In addition to her roles in curriculum development and instruction, Dr. Qaqish is deeply involved in research and
ManagerTransfer Specialist, [Cedric Trice], who works in conjunction with both program directors andMorehouse College and Georgia Tech registrars to determine the CStoCompE dual-degreecurriculum and designate the number of required transfer credits; Morehouse College postdoc,[Christopher Thomas], who serves as a program instructor and tutor; Morehouse Collegeinstructors, [David Cherry] and [Whitney Nelson], who manage the Summer Bridge Programcurriculum and teach pre-first-year student summer sessions; Georgia Tech ECE PhD graduateassistant, [Christian Ford], who serves as tutor and mentor in the Morehouse CollegeUndergraduate Student Support Lab; and Morehouse College students enrolled in the 2024 Pre-First-Year Computer Science cohort, who will also
Paper ID #45233Grassroots Approach to Advancing Inclusion, Diversity, Equity, and Accessin EngineeringDr. Ashleigh R. Wright, University of Illinois at Urbana - Champaign Ashleigh R. Wright, PhD is the Associate Director of the Institute for Inclusion, Diversity, Equity, and Access and Assistant Teaching Professor in the Department of Materials Science and Engineering at the Grainger College of Engineering. She is responsible for collaborating with college and departmental leaders and stakeholders to identify needs and priorities, developing and implementing evidence-based strategies, and measuring progress and
Paper ID #45202Empowering Hispanic Engineers’ Success Towards Graduate Education withHybrid MentorshipFederico Cifuentes-Urtubey, University of Illinois Urbana-Champaign Federico Cifuentes-Urtubey is a Ph.D. Candidate in Computer Science at the University of Illinois Urbana-Champaign. His research develops wireless system privacy enhancements for Wi-Fi protocols. While at Illinois, he interned at Apple, Johns Hopkins University Applied Physics Laboratory, and Sandia National Labs. He served as the Graduate Ambassador in the SHPE chapter on campus to support a community of Hispanic graduate students in engineering. He has
State University. Through her interdependent roles in research, teaching, and service, Jean is actively breaking down academic and social barriers to foster an environment where diverse and creative people are successful in the pursuit of engineering and computing degrees. Jean’s efforts have been recognized with numerous awards including the National Science Foundation Faculty Early Career Development award, the American Society for Engineering Education John A. Curtis Lecturer award, and the Bagley College of Engineering Service award. Jean earned her B.S. and M.S. in computer engineering from Mississippi State University, and her Ph.D. in engineering education from Virginia Tech
uniquely positioned as agentsfor diversity, equity, and inclusion (DEI) reform via shaping and maintaining the STEM cultureand provide critical levers for systems change [17]. In particular, Societies, members andsupporters from diverse STEM influencers across academia and industry, government, and nonprofits provide ‘multiple levers’ for DEI reform by shaping disciplinary culture and serving awide range of stakeholders [3], [18]. Academic literature often defines the role of STEMprofessional societies as multifaceted—spanning across varied disciplinary functions—frequently collaborating with other STEM system gatekeepers, (i.e., corporate entities,laboratories, and academic organizations) to optimize the engagement of all STEM talent andfoster