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David M. Woods; Andrea Hulshult – Information Systems Education Journal, 2025
IT/IS educators continue to work to develop content and activities for teaching Agile practices, processes, and methodologies to their courses to ensure students have the skills expected by businesses. Given the wide range of tools and technologies that fall under the umbrella of Agile and the wide range of places where Agile is applied, educators…
Descriptors: Information Technology, Information Science Education, Computer Science Education, Teaching Methods
Madhav Sharma; Roger McHaney – Decision Sciences Journal of Innovative Education, 2025
Many management information systems (MIS) faculty have adopted a project-oriented approach in their systems analysis and design courses. In these courses, students use a software development methodology to create a web or mobile application project, which can be based on a predefined case or developed for an external stakeholder. Because most…
Descriptors: Computer Software, Artificial Intelligence, Instructional Design, Computer Science Education
Ahmad D. Suleiman; Daqing Hou; Yu Liu; Jan DeWaters; David C. Shepherd; Juliana G. De Souza – ACM Transactions on Computing Education, 2025
In recent years, there has been a rise in recognition of the need for computing education to bridge the gap between academia and industry. In addition, educational researchers are also interested in increasing student engagement by grounding learning experiences in real-life concerns, community issues, or personal interests. Unfortunately,…
Descriptors: Computer Science Education, Higher Education, Active Learning, Student Projects
Özlem Çeziktürk – International Journal of Mathematical Education in Science and Technology, 2025
I explore some facts about the area, position, etc. of the Steiner ellipse using GeoGebra and numerical analysis. Students can use these for mathematical inquiry.
Descriptors: Computer Software, Mathematics Instruction, Elective Courses, Teacher Education Programs
Pin-Hui Li; Hsin-Yu Lee; Chia-Ju Lin; Wei-Sheng Wang; Yueh-Min Huang – Journal of Educational Computing Research, 2025
The core purpose of integrating inquiry-based learning strategies into STEM activities is to create a challenging learning environment that stimulates students' active learning, thereby effectively enhancing their interest in learning, thinking skills, and practical application abilities. To achieve these goals, developing more technology-assisted…
Descriptors: Computer Software, Artificial Intelligence, Synchronous Communication, Active Learning
Nikola Luburic; Jelena Slivka; Luka Doric; Simona Prokic; Aleksandar Kovacevic – Education and Information Technologies, 2025
Project-based learning (PBL) is a learning technology praised for its ability to grow domain-specific and domain-general skills and related knowledge and attitudes. However, consistently designing effective PBL experiences is challenging, primarily due to the lack of instructor support and guidance for designing PBL experiences aligned with…
Descriptors: Computer Software, Computer Uses in Education, Engineering Education, Active Learning
Adam A. Aguiar; Jennifer Calabrese – Discover Education, 2025
This research aimed to examine the effectiveness of traditional lectures versus active lectures in introductory college biology classes composed of science and non-science majors, a topic of significant importance in the field of education. In a traditional lecture, the researcher used PowerPoint to present class content while answering direct…
Descriptors: Introductory Courses, Biology, Science Instruction, Cooperative Learning
Joseph J. Slade; Stephanie M. Byers; Kathryn A. Becker-Blease; Regan A. R. Gurung – Teaching of Psychology, 2025
Introduction: The integration of artificial intelligence (AI) into higher education ushers in a new era of teaching and learning possibilities for both educators and students. Statement of the Problem: These technologies not only offer unparalleled opportunities for personalized learning and instructional support, but also introduce challenges…
Descriptors: Artificial Intelligence, Computer Software, Technology Integration, Teaching Methods
Muhiddin Furkan Kiliç; Afife Zehra Yurtsever; Feyza Açikgöz; Beste Basgut; Burcu Mavi; Ezgihan Ertuç; Sinem Sevim; Tuhan Oruk; Yavuz Selim Kiyak; Tuncay Peker – Anatomical Sciences Education, 2025
Traditional education often relies on passive learning approaches, whereas modern medical students increasingly seek interactive, technology-enhanced experiences. Despite the growing use of digital tools in anatomy education, there remains a lack of structured, student-centered 3D modeling courses embedded within the undergraduate medical…
Descriptors: Anatomy, Medical Education, Medical Students, Learner Engagement
Conrad Borchers; Alex Houk; Vincent Aleven; Kenneth R. Koedinger – Grantee Submission, 2025
Active learning promises improved educational outcomes yet depends on students' sustained motivation to engage in practice. Goal setting can enhance learner engagement. However, past evidence of the effectiveness of setting goals tends to be limited to non-digital learning settings and does not scale well as it requires active teacher or parent…
Descriptors: Learner Engagement, Educational Benefits, Goal Orientation, Rewards
A Learning Assistance Framework for Supporting and Analyzing Student Teams in Project-Based Learning
Youcef Haddou; Omar Talbi; Abdelkader Ouared; Abdelhafid Chadli – Education and Information Technologies, 2025
As Project-Based Learning (PjBL) becomes a cornerstone of modern education, effective support and analysis tools are crucial for enhancing collaborative learning experiences and achieving educational goals. However, challenges such as managing overload related to the rigor and demands of project-based activities (e.g., meetings, writing reports,…
Descriptors: Student Projects, Active Learning, Guidelines, Teamwork
Paulina Haduong; Karen Brennan – Computer Science Education, 2025
Background and Context: Learning to create self-directed and personally authentic programming projects involves encountering challenges and learning to get unstuck. Objective: This article investigates how one U.S. fourth-grade classroom engaged in practices which emphasized community supports, in the context of the classroom's implementation and…
Descriptors: Grade 4, Computer Science Education, Instructional Design, Programming
Laila Badriyatul Habibah; I. Ibrohim; Herawati Susilo – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2025
Education 4.0 has emerged as a response to the Industrial Revolution 4.0, focusing on integrating technology into learning to support digital transformation and enhancing 21st-century skills, such as critical thinking, creative thinking, communication, and collaboration. While technology provides convenience, it also challenges students to develop…
Descriptors: Problem Based Learning, Student Projects, Active Learning, Technology Integration
Design and Usability Evaluation of a Mobile App for Elementary School Inquiry-Based Science Learning
Iraya Yánez-Pérez; Radu Bogdan Toma; Jesús Ángel Meneses-Villagrá – School Science and Mathematics, 2025
Teachers often struggle to implement inquiry-based science teaching. To support them, IndagApp--a 3D educational app that offers curriculum-aligned, inquiry-based lesson plans--was designed. The app is rooted in the inquiry phases recommended in best-practices literature, which arguably align with most international standards. This study describes…
Descriptors: Usability, Computer Software, Private Schools, Public Schools
Ravikantha Prabhu; Sharun Mendonca; Pavana Kumara Bellairu; Noel Deepak Shiri – Innovations in Education and Teaching International, 2025
In response to evolving engineering education, there is a growing focus on fostering students' practical skills. This study implemented a Mini Project Based Learning (MPBL) approach within the Computer Integrated Manufacturing (CIM) course. The tasks involved SOLIDWORKS modelling, writing CNC code using CADEM seeNC Turn software, and hands-on CNC…
Descriptors: Engineering Education, Student Projects, Active Learning, Computer Uses in Education
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