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Yanyan Sun; Chengjun Feng; Di Peng; Bian Wu – Journal of Computer Assisted Learning, 2024
Background: Both learning and problem solving are major goals of complex problem solving in engineering education. The order of knowledge construction and problem solving in learning through problem solving, however, has not been explained in current literature. Objectives: To understand their relationships, this study compared the effects of…
Descriptors: Goal Orientation, Active Learning, Inquiry, Engineering Education
Hajian, Shiva; Jain, Misha; Liu, Arita L.; Obaid, Teeba; Fukuda, Mari; Winne, Philip H.; Nesbit, John C. – European Journal of Educational Research, 2021
We investigated the effects of just-in-time guidance at various stages of inquiry learning by novice learners. Thirteen participants, randomly assigned to an intervention (n = 8) or control (n = 5) group, were observed as they learned about DC electric circuits using a web-based simulation. Just-in-time instructional prompts to observe, predict,…
Descriptors: Science Instruction, Instructional Effectiveness, Physics, Scientific Concepts
Eang, Norphealey; Na-Songkhla, Jaitip – LEARN Journal: Language Education and Acquisition Research Network, 2020
The application of Augmented Reality technology in education has been increasing from year to year. The researchers conducted this study to propose a framework for an ARQuest instructional design model based on situated learning to enhance Thai undergraduate students' Khmer vocabulary ability. The proposed framework was evaluated by experts from…
Descriptors: Computer Simulation, Instructional Design, Models, Situated Learning
McNeal, Karen S.; Ryker, Katherine; Whitmeyer, Shelley; Giorgis, Scott; Atkins, Rachel; LaDue, Nicole; Clark, Christine; Soltis, Nick; Pingel, Thomas – Journal of Geography in Higher Education, 2020
We developed and tested different pedagogical treatments using an Augmented Reality (AR) Sandbox to teach introductory geoscience students about reading topographic maps at five institutions in both pilot and full implementation studies. The AR Sandbox treatments were characterized as 1) unstructured play, 2) a semi-structured lesson, and 3) a…
Descriptors: Active Learning, Inquiry, Undergraduate Students, Computer Simulation
Xiaoming Zhai, Editor; Joseph Krajcik, Editor – Oxford University Press, 2025
In the age of rapid technological advancements, the integration of Artificial Intelligence (AI), machine learning (ML), and large language models (LLMs) in Science, Technology, Engineering, and Mathematics (STEM) education has emerged as a transformative force, reshaping pedagogical approaches and assessment methodologies. "Uses of AI in STEM…
Descriptors: Artificial Intelligence, STEM Education, Technology Uses in Education, Educational Technology
Sari, Ugur; Duygu, Esra; Sen, Ömer Faruk; Kirindi, Talip – Journal of Turkish Science Education, 2020
In this study, the effects of STEM education in the simulation-based inquiry learning (SBIL) environment on the students' scientific process skills and STEM awareness were investigated. In addition, the use of simulations in STEM education was discussed by evaluating students' views on activities. Study group of the research consists of 39…
Descriptors: STEM Education, Instructional Effectiveness, Science Process Skills, Skill Development
Lansverk, Allison L.; Lichti, Deborah A.; Blinka, Kate W.; Callis-Duehl, Kristine L. – Bioscene: Journal of College Biology Teaching, 2020
Course-based undergraduate research experiences (CUREs) are increasing being taught to undergraduates across institutions and topics and offer an opportunity for more students to participate in authentic research. There are many types of "CUREs" with varying degrees of including all five elements identified by Auchincloss et al. (2014)…
Descriptors: College Science, Undergraduate Students, Student Research, Science Laboratories
Nottis, Katharyn E. K.; Vigeant, Margot A.; Prince, Michael J.; Golightly, Amy Frances; Gadoury, Carrine Megan – Chemical Engineering Education, 2019
Heat and temperature concepts are found at all levels in the science curricula and are well-known for creating conceptual difficulties for learners. Students have difficulty understanding concepts related to heat, temperature, and thermal radiation. Inquiry-based pedagogies that can foster the learning of these difficult concepts are needed.…
Descriptors: Computer Simulation, Science Experiments, Heat, Active Learning
Siam, Jamal; Abdo, Ali – Research in Science & Technological Education, 2020
Background: Undergraduate electrical-engineering courses are traditionally taught using the lecturing approach. As for all the teacher-centered approaches, the students perceive learning as an individualistic task and consider lecture-notes their principal information source. They tend to employ the minimum possible efforts to get acceptable marks…
Descriptors: Active Learning, Inquiry, Computer Simulation, Cooperative Learning
Taslidere, Erdal – Participatory Educational Research, 2021
The purpose of this study was to investigate both the individual and relative effectiveness of two conceptual change interventions, gender and their interactions on preservice science teachers' conceptual understanding and their misconceptions in mechanical waves. The interventions are conceptual change texts enriched with concept cartoons (CCTCC)…
Descriptors: Cartoons, Worksheets, Instructional Materials, Instructional Effectiveness
Battaglia, Onofrio Rosario; Di Paola, Benedetto; Persano Adorno, Dominique; Pizzolato, Nicola; Fazio, Claudio – Research in Science Education, 2019
Two 20-h modelling-based workshops focused on the explanation of thermally activated phenomena were held at the University of Palermo, Italy, during the Academic Year 2014-2015. One of them was conducted by applying an inquiry-based approach, while the other, still based on laboratory and modelling activities, was not focused on inquiry.…
Descriptors: Workshops, Engineering Education, Chemical Engineering, Undergraduate Students
Peffer, Melanie E.; Ramezani, Niloofar; Quigley, David; Royse, Emily; Bruce, Chloe – CBE - Life Sciences Education, 2020
Epistemological beliefs about science (EBAS) or beliefs about the nature of science knowledge, and how that knowledge is generated during inquiry, are an essential yet difficult to assess component of science literacy. Leveraging learning analytics to capture and analyze student practices in simulated or game-based authentic science activities is…
Descriptors: Learning Analytics, Beliefs, Scientific Principles, Inquiry
Asakura, Kenta; Occhiuto, Katherine; Todd, Sarah; Leithead, Cedar; Clapperton, Robert – Journal of Teaching in Social Work, 2020
In discussing a university-industry partnership on the development of an Artificial Intelligence (AI)-based simulation platform, this conceptual paper explores the use of Natural Language Processing (NLP) as a pedagogical innovation in social work. Critically reflecting upon this ongoing project, we discuss the current promises and limitations of…
Descriptors: Social Work, Artificial Intelligence, Partnerships in Education, School Business Relationship
Sweet, Chelsea; Akinfenwa, Oyewumi; Foley, Jonathan J., IV – Journal of Chemical Education, 2018
We present an interactive discovery-based approach to studying the properties of real gases using simple, yet realistic, molecular dynamics software. Use of this approach opens up a variety of opportunities for students to interact with the behaviors and underlying theories of real gases. Students can visualize gas behavior under a variety of…
Descriptors: Discovery Learning, Molecular Structure, Courseware, Kinetics
Hajian, Shiva; Obaid, Teeba; Jain, Misha; Nesbit, John – Journal of Interactive Learning Research, 2019
Instructional support is fundamental to successful implementation of Inquiry-Based Learning (IBL) in various educational settings. Although research indicates that instructional support can lead to learning gain and achievement of inquiry strategies, it does not explain why the same level of guidance for students with relatively the same level of…
Descriptors: Active Learning, Inquiry, Physics, Science Instruction
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