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Nagla Ali; Othman Abu Khurma; Khadeegha Alzouebi; Adeeb Jarrah; Myint Swe Khine; Fayrouz Albahti; Qasim AlShannag – Educational Process: International Journal, 2025
Background/purpose: Science education has gained more prominence as a means of educating students for the demands of a technologically evolved world. Understanding the variables influencing students' science achievement is vital for educational policymakers and practitioners. Materials/methods: The study used a hierarchical multiple regression…
Descriptors: Science Education, Achievement Tests, International Assessment, Foreign Countries
Kanyemba, Saara; Josua, Lukas Matati – Journal of Learning for Development, 2023
Student profiling on the use of technology for teaching, learning and assessment has the potential to enable educators to enhance their transformational teaching strategies. Therefore, this study explored the views of students on use of technology to facilitate online learning during COVID-19. The study employed a quantitative approach to collect…
Descriptors: Educational Technology, Science Education, COVID-19, Pandemics
Andrew Seen; Sharon Fraser; Tony Kerr; Joee Kelk – Journal of College Science Teaching, 2024
The development of web-based technologies in recent decades has provided ready access to a wealth of on-line educational resources, and despite concerns that availability of on-line recorded lectures impacts on-campus attendance, we believe there needs to be more focus on the learning resources students engage with, along with why and how they use…
Descriptors: Foreign Countries, College Freshmen, Mathematics Education, Science Education
Eleonora Barelli; Michael Lodi; Laura Branchetti; Olivia Levrini – Science & Education, 2025
In a historical moment in which Artificial Intelligence and machine learning have become within everyone's reach, science education needs to find new ways to foster "AI literacy." Since the AI revolution is not only a matter of having introduced extremely performant tools but has been determining a radical change in how we conceive and…
Descriptors: Artificial Intelligence, Science Education, Cognitive Development, Cultural Influences
Qing Guo; Junwen Zhen; Fenglin Wu; Yanting He; Cuilan Qiao – Journal of Educational Computing Research, 2025
The rapid development of large language models (LLMs) presented opportunities for the transformation of science and STEM education. Research on LLMs was in the exploratory phase, characterized by discussions and observations rather than empirical investigations. This study presented a framework for incorporating LLMs into Science and Engineering…
Descriptors: STEM Education, Computational Linguistics, Teaching Methods, Educational Change
Yeh, Heng-Yi; Tsai, Yu-Hsiang; Tsai, Chin-Chung; Chang, Hsin-Yi – Journal of Science Education and Technology, 2019
This study investigated high school students' conceptions of technology-assisted science learning via drawing analysis, and explored how students with different degrees of computer experience and science learning self-efficacy may show different conceptions via their drawings. The participants included 335 senior high school students in Taiwan…
Descriptors: Foreign Countries, High School Students, Student Attitudes, Knowledge Level
Heerwegh, Dirk; De Wit, Kurt; Verhoeven, Jef C. – Journal of Information Technology Education: Research, 2016
Computers have taken an important place in the training of science students and in the professional life of scientists. It is often taken for granted that most students have mastered basic Information and Communication Technologies (ICT) skills; however, it has been shown that not all students are equally proficient in this regard. Starting from…
Descriptors: Information Technology, Computer Literacy, Knowledge Level, Undergraduate Students
Jang, Hyewon – Journal of Science Education and Technology, 2016
Gaps between science, technology, engineering, and mathematics (STEM) education and required workplace skills have been identified in industry, academia, and government. Educators acknowledge the need to reform STEM education to better prepare students for their future careers. We pursue this growing interest in the skills needed for STEM…
Descriptors: STEM Education, Work Environment, Interrater Reliability, Engineering Education
Chandler, Paul D.; Redman, Christine – Australian Educational Computing, 2013
The world in which teachers are working is one, thanks to collaborative technologies, in which high levels of interactions among colleagues and the wider educational community can be facilitated. The question, then, is about how to prepare new entrants to the profession to be effectively engaged in this professional reality. In this paper, we…
Descriptors: Preservice Teachers, Knowledge Base for Teaching, Knowledge Level, Teacher Competencies
Anderson, Kate; Kennedy-Clark, Shannon; Galstaun, Vilma – Australian Association for Research in Education (NJ1), 2012
This paper presents the findings of a study that focused on developing Information and Communication Technologies (ICT) competency in pre-service teacher education Units of Study. The study adopted a collaborative-learn-technology-by-design conceptual framework. One-hundred and twenty pre-service teachers participated in the semester-long study.…
Descriptors: Feedback (Response), Video Technology, Computer Literacy, Competence
Campbell, Todd; Wang, Shaing Kwei; Hsu, Hui-Yin; Duffy, Aaron M.; Wolf, Paul G. – Journal of Science Education and Technology, 2010
This position paper proposes the enhancement of teacher and student learning in science classrooms by tapping the enormous potential of information communication and technologies (ICTs) as cognitive tools for engaging students in scientific inquiry. This paper serves to challenge teacher-held assumptions about students learning science "from…
Descriptors: Constructivism (Learning), Position Papers, Science Instruction, Science Education
Wofford, Jennifer – Journal of Science Education and Technology, 2009
Computing is anticipated to have an increasingly expansive impact on the sciences overall, becoming the third, crucial component of a "golden triangle" that includes mathematics and experimental and theoretical science. However, even more true with computing than with math and science, we are not preparing our students for this new reality. It is…
Descriptors: Science Education, Computer Science, Computer Uses in Education, Science Instruction
Gross, Louis J. – American Institute of Biological Sciences, 2008
This interview with Distinguished Science Award recipient Louis J. Gross highlights essential computational skills for modern biology, including: (1) teaching concepts listed in the Math & Bio 2010 report; (2) illustrating to students that jobs today require quantitative skills; and (3) resources and materials that focus on computational skills.
Descriptors: Biology, Computation, Mathematics Skills, Computer Literacy
Shacham, Mordechai; Cutlip, Michael B.; Brauner, Neima – Chemical Engineering Education, 2009
A continuing challenge to the undergraduate chemical engineering curriculum is the time-effective incorporation and use of computer-based tools throughout the educational program. Computing skills in academia and industry require some proficiency in programming and effective use of software packages for solving 1) single-model, single-algorithm…
Descriptors: Computer Software, Computer Literacy, Problem Solving, Chemical Engineering
O'Connor, Eileen – Journal of Educational Technology Systems, 2011
Given the challenges facing higher education in the fast-changing educational and social environment, what can be learned from an instructor who has braved the rapidly changing stream of technologies and has subsequently developed a personal and productive approach to using emerging technologies to teach better and farther? What aspects of…
Descriptors: Student Attitudes, Distance Education, Online Courses, Social Environment