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Alexandra C. Lau; Charles Henderson; Marilyne Stains; Melissa Dancy; Christian Merino; Naneh Apkarian; Jeffrey R. Raker; Estrella Johnson – International Journal of STEM Education, 2024
Background: It is well established in the literature that active learning instruction in introductory STEM courses results in many desired student outcomes. Yet, regular use of high-quality active learning is not the norm in many STEM departments. Using results of a national survey, we identified 16 departments where multiple instructors reported…
Descriptors: Introductory Courses, STEM Education, Active Learning, Teaching Methods
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Garbin, Fernanda Gobbi de Boer; ten Caten, Carla Schwengber; de Jesus Pacheco, Diego Augusto – Journal of Applied Research in Higher Education, 2022
Purpose: Although active learning methodologies are recognized as an effective means to achieve expected educational demands, in practice, the teaching and learning processes are still widely characterized by traditional pedagogy aspects. As a result, teaching innovations in science, technology, engineering and math (STEM) education are carried…
Descriptors: Evaluation Methods, STEM Education, College Faculty, Models
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Janet Spitzig; Blake J. Renner – Journal of College Student Retention: Research, Theory & Practice, 2025
This study aimed to examine the relationship between student engagement and student retention of adult learners at community colleges. The relationship between student retention and the five Community College Survey of Student Engagement (CCSSE) student engagement benchmarks (active and collaborative learning, student effort, academic challenge,…
Descriptors: Academic Persistence, School Holding Power, Community Colleges, Community College Students
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Nelson, Robin; Marone, Vittorio; Garcia, Stephanie A.; Yuen, Timothy T.; Bonner, Emily P.; Browning, JoAnn – IEEE Transactions on Education, 2021
Contribution: This study extends the embedded expert literature by examining a cross-college partnership between engineering and education faculty and its impact on the engineering faculty's teaching practices. Background: Previous embedded expert models focused on disciplinary expert models that required extensive educational training to prepare…
Descriptors: Educational Change, Engineering Education, Models, Intercollegiate Cooperation
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Zhu, Zhangxiang; Peng, Zihui; Yang, Kening – Education & Training, 2023
Purpose: This study explores the factors that promote university teachers' switching intention from a traditional classroom to a smart classroom based on the push-pull-mooring (PPM) framework to enrich the theoretical research on the smart classroom and provide a reference for smart classroom promotion. Design/methodology/approach: The proposed…
Descriptors: Foreign Countries, College Faculty, Teacher Attitudes, Intention
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Yoshinobu, Stan; Jones, Matthew G.; Hayward, Charles N.; Schumacher, Carol; Laursen, Sandra L. – PRIMUS, 2023
Faculty professional development is an important lever for change in supporting instructors to adopt research-based instructional strategies that engage students intellectually, foster learning-supportive attitudes and habits of mind, and strengthen their persistence in mathematics. Yet the literature contains few well-rationalized models for…
Descriptors: Faculty Development, Inquiry, Workshops, College Mathematics
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Gatlin, Anna Ruth; Kuhn, Wiebke; Boyd, Diane; Doukopoulos, Lindsay; McCall, Contina P. – Journal of Learning Spaces, 2021
Despite trending investment in active learning infrastructure to support student learning, inclusion, and career preparedness, few universities have achieved the orchestration of campus stakeholders and pedagogical reform "at scale." This article presents a process-oriented model for developing faculty and students for success in these…
Descriptors: Educational Change, Higher Education, Active Learning, School Space
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Zhu, Meina; Basdogan, Merve – Journal of Learning Spaces, 2021
This case study examined students' and the instructor's perceptions of active learning classrooms (ALC) as well as their interactions in a class in a Midwestern university. Data were gathered from classroom observations and semi-structured interviews with faculty and students in a graduate-level course. Thematic analysis was used to analyze…
Descriptors: Social Emotional Learning, Active Learning, Student Attitudes, Teacher Attitudes
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Zulfa; Nusi, Ahmad; Ananda, Azwar; Efi, Agusti; Pernantah, Piki Setri – International Journal of Instruction, 2022
This study aims to find a simulation project-based learning model for the Minangkabau Natural Culture subject in higher education. This research method uses the research and development (R and D) development procedure using the Plomp development design that goes through 3 steps, namely: Preliminary Research, Prototyping Phase, and Assessment…
Descriptors: Student Projects, Active Learning, Higher Education, Models
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Cooper, A. C.; Southard, K. M.; Osness, J. B.; Bolger, M. S. – CBE - Life Sciences Education, 2022
Limited access to undergraduate research experiences for science, technology, engineering, and mathematics students has led to creation of classroom-based opportunities for students to participate in authentic science. Revising laboratory courses to engage students in the practices of science has been shown to have many benefits for students.…
Descriptors: Teacher Role, Intention, Science Instruction, Undergraduate Students
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Burch, Zhanat Alma; Mohammed, Shereeza – International Journal of Research in Education and Science, 2019
In examining the complexity of how higher education institutions integrate and adopt classroom technology, this study explores literature regarding classroom technology integration and acceptance that appears in research articles published from 2012-2018. The literature review of 148 articles was centered on a deeper understanding of faculty…
Descriptors: Teacher Education, Teaching Methods, Educational Technology, Technology Integration
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Hang, Le Thuy; Van, Vu Hong – International Journal of Education and Practice, 2020
Building a teaching and learning strategy is an essential task for both lecturers and students. Innovation in methods and forms of teaching and learning, and in conducting examination and evaluation are in the direction of developing and promoting students' creativity. However, not all lecturers and students deeply understand and effectively use…
Descriptors: Teaching Methods, Learning Processes, Instructional Innovation, Creativity
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Pelletreau, Karen N.; Knight, Jennifer K.; Lemons, Paula P.; McCourt, Jill S.; Merrill, John E.; Nehm, Ross H.; Prevost, Luanna B.; Urban-Lurain, Mark; Smith, Michelle K. – CBE - Life Sciences Education, 2018
Helping faculty develop high-quality instruction that positively affects student learning can be complicated by time limitations, a lack of resources, and inexperience using student data to make iterative improvements. We describe a community of 16 faculty from five institutions who overcame these challenges and collaboratively designed, taught,…
Descriptors: Faculty Development, Models, Academic Achievement, Active Learning
Servant-Miklos, Virginie – Interdisciplinary Journal of Problem-based Learning, 2020
This paper addresses one of the major confusions in the study and practice of problem-based learning today, namely the use of the term "problem-based learning" to refer to both the small-group tutorial method pioneered by McMaster University and Maastricht University in medical education, and the problem-oriented project-work method…
Descriptors: Student Projects, Active Learning, Teaching Methods, Problem Based Learning
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Mutambuki, Jacinta M.; Schwartz, Renee – Chemistry Education Research and Practice, 2018
This study investigated the implementation of best teaching practices by science graduate teaching assistants [GTAs] (3 chemists and 2 biologists) in five inquiry-based, interdisciplinary chemistry-biology experiments during a six-week professional development (PD) program, Engage PD. Additionally, we examined GTAs' experiences in implementing…
Descriptors: Professional Training, Faculty Development, Models, Teaching Methods
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