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Katherine Picho-Kiroga; Marcela Valencia Serrano; Noel Bourne; Jerriel Hall – Advances in Engineering Education, 2024
Stereotype threat (ST) is implicated as a contributory factor to attrition in Science Technology Engineering and Math (STEM) fi elds. One of the mechanisms by which ST degrades performance is by impairing metacognitive monitoring (Schmader et al. 2008), which is positively related to learning and performance (Hadwin et al., 2017; Winne &…
Descriptors: Performance, African American Students, Engineering Education, Stereotypes
Christopher Greer; Devon Eichfeld; Sara Sattarzadeh; Siu Ling Leung – Advances in Engineering Education, 2024
When engineering students are unable to evaluate the validity of their solutions, they are unprepared to solve complex, real-world engineering problems that require decomposition or knowledge transfer. A proper framework is key to successful implementation and can encourage more institutions to adopt problem-solving engineering labs. This paper…
Descriptors: Problem Solving, Engineering Education, Learning Laboratories, Scientific Concepts
Alex Nuñez-Thompson; Ann Saterbak; Christina Rincon; Josh Stelling; Genevera Allen; Matthew Wettergreen – Advances in Engineering Education, 2023
At a small, private school in the southern US, an elective first-year design (FYD) course is offered in addition to the required capstone design course; both courses challenge student teams to tackle real-world problems. In FYD, positive team member effectiveness is cultivated through teaming instruction, demonstrations, and practice. In this…
Descriptors: Teamwork, Engineering Education, College Freshmen, Private Colleges
Yasmany García-Ramírez – Advances in Engineering Education, 2024
Due to its positive results, active learning has spread to most areas of knowledge of Civil Engineering. Many of these studies used only one technique, which is limiting given the diverse learning styles that the students may have. The road geometric design is the area that has been the least explored in Civil engineering. Therefore, the objective…
Descriptors: Engineering Education, Active Learning, Design, Civil Engineering
Nutwell, Emily; Mokashi, Prasad; Christy, Ann – Advances in Engineering Education, 2023
This paper describes the course design and evaluation results for an online continuing education program designed for working engineers. Engineering educators have long recognized the value of reducing the gap between the classroom and work environments. Implementing experiential learning in the undergraduate classroom brings much needed context…
Descriptors: Instructional Design, Online Courses, Engineering Education, Work Environment
Stabryla, Lisa M.; Clark, Renee M.; Gilbertson, Leanne M. – Advances in Engineering Education, 2022
Addressing complex global sustainability challenges requires a creative mindset, yet current engineering curriculum does not facilitate development of student creativity. Design thinking, as defined by the Hasso Plattner Institute of Design at Stanford, is a human-centered, creative design methodology that can be used to foster cognitive aspects…
Descriptors: Design, Thinking Skills, Creativity, Undergraduate Students
Emily Knaphus-Soran; Jessica Baldis; Sonya Cunningham; Donna Llewellyn; Jana Milford; Shelley Pressley; Eve Riskin – Advances in Engineering Education, 2024
There is a critical need to broaden access to engineering education in order to build a strong and diverse engineering workforce. However, four-year engineering programs are typically designed for students who are calculus-ready, so many students who wish to study engineering may need additional preparation and time to succeed. The NSF-funded…
Descriptors: Undergraduate Students, Engineering Education, Low Income Students, Academic Support Services
Michael C. Melville; Chad Hershock; B. Reeja-Jayan – Advances in Engineering Education, 2024
Due to limited laboratory facilities and other constraints, many engineering students may not have the opportunity to engage with practical, hands-on learning experiences. Although some research suggests that game-based learning can provide students with these pedagogical benefits, much of that work does not directly assess the impact of such…
Descriptors: Video Games, Engineering Education, Visualization, Game Based Learning
Dalton, Elizabeth Dolin; Estrada, Tomas – Advances in Engineering Education, 2023
Students' mental health and well-being are increasingly recognized as urgent and important needs in engineering education. Mindfulness-based interventions, in which students learn and practice present-focused techniques such as meditation and deep breathing, have been demonstrated to positively affect college students' well-being. The use of such…
Descriptors: Program Implementation, Feasibility Studies, Metacognition, Intervention
Michelle Alvarado; Katie Basinger-Ellis; Behshad Lahijanian; Meserret Karaca; Diego Alvarado – Advances in Engineering Education, 2023
Student preferences for digital learning and the COVID-19 pandemic have increased demand for asynchronous learning activities, including pre-recorded video lectures. However, there are varying recommendations and a lack of data-driven results for how long video lectures should be. This study has two purposes: (1) To determine and understand…
Descriptors: Student Attitudes, Engineering Education, Electronic Learning, Educational Technology
Streveler, Ruth A. – Advances in Engineering Education, 2022
Engineering educators strive to help students understand concepts that may be difficult and counterintuitive. This often entails helping students bring their understanding of how a phenomenon works into alignment with the scientifically-accepted explanation. For the most part, fostering conceptual change has been thought of as a process of…
Descriptors: Misinformation, Concept Formation, Engineering Education, Psychological Patterns
Strehl, Elizabeth A.; Loweth, Robert P.; Daly, Shanna R. – Advances in Engineering Education, 2022
Design interviews with stakeholders are an important source of information that engineering designers can use to identify stakeholder needs and develop solutions that meet stakeholder requirements. However, engineering students often struggle to conduct effective design interviews. In this study, we investigated changes in engineering students'…
Descriptors: Blended Learning, Engineering Education, Design, Models
Nagel, Robert; Holland, Keith; Gipson, Kyle; Henriques, Justin; Paterson, Kurt – Advances in Engineering Education, 2020
This paper describes one university's journey through the Pathways to Innovation program. Efforts described herein are based on the premise that an undergraduate experience that effectively fosters innovation and entrepreneurial mindset among engineering students requires the support of an ecosystem of curricular and co-curricular programs. The…
Descriptors: Undergraduate Students, Engineering Education, Entrepreneurship, Innovation
Osgood, Libby; MacIntyre, Rebecca; Pollard-Feehan, Erin – Advances in Engineering Education, 2023
An Engineering Success Centre was formed with the long-term goals of providing targeted first-year support, increasing retention, and developing leaders. The novelty of the Centre is that the priorities and activities were defined by the students that were employed to run it in a shared leadership model. Student leaders were in various years of…
Descriptors: Engineering Education, School Holding Power, Academic Support Services, Student Leadership
Erik Siggelkoe; Conor Walsh; Holly M. Golecki – Advances in Engineering Education, 2024
While participation in undergraduate research has many benefits for students including increased confidence and persistence in engineering, community college students do not have the same access to research as students at four-year institutions. To address this disparity, we developed a soft robotics-focused undergraduate research lab at a…
Descriptors: Community Colleges, Undergraduate Students, Student Research, Robotics