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Caitlin G. M. Fine; Erin M. Furtak – Journal of Research in Science Teaching, 2024
The Framework for K-12 Science Education set an ambitious goal of broadening participation in science learning for all students. Meeting this vision will involve supporting teachers in making meaningful connections with the cultural and linguistic resources their students bring to school; in essence, developing pedagogies that frame these…
Descriptors: Science Education, Secondary School Science, High School Teachers, Science Teachers
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Patrik Holm – E-Learning and Digital Media, 2025
The increasing prevalence of online courses has highlighted the importance of digital literacy for students. This study investigates the relationship between digital literacy and academic achievement among students who participate in an online course on anatomy and physiology. The study also evaluates how different aspects of digital literacy,…
Descriptors: Digital Literacy, Physiology, Science Instruction, Anatomy
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Aditya Anupam; Ridhima Gupta; Shubhangi Gupta; Zhendong Li; Nora Hong; Azad Naeemi; Nassim Parvin – International Journal of Designs for Learning, 2020
The abstract nature of quantum mechanics makes it difficult to visualize. This is one of the reasons it is taught in the language of mathematics. Without an opportunity to directly observe or interact with quantum phenomena, students struggle to develop conceptual understandings of its theories and formulas. In this paper we present the process of…
Descriptors: Quantum Mechanics, Science Instruction, Educational Games, Teaching Methods
Tiffany Herder; Martina A. Rau – Grantee Submission, 2022
Educational video games can engage students in authentic STEM practices, which often involve visual representations. Specifically, because most interactions within video games are mediated through visual representations, video games provide opportunities for students to experience disciplinary practices with visuals. However, prior research has…
Descriptors: Educational Games, Video Games, STEM Education, Visual Stimuli
Ton de Jong; Ard W. Lazonder; Clark A. Chinn; Frank Fisher; Janice Gobert; Cindy E. Hmelo-Silver; Ken R. Koedinger; Joseph S. Krajcik; Eleni A. Kyza; Marcia C. Linn; Margus Pedaste; Katharina Scheiter; Zacharias C. Zacharia – Grantee Submission, 2023
Many studies investigating inquiry learning in science domains have appeared over the years. Throughout this period, inquiry learning has been regularly criticized by scholars who favor direct instruction over inquiry learning. In this vein, Zhang, Kirschner, Cobern, and Sweller (2022) recently asserted that direct instruction is overall superior…
Descriptors: Teaching Methods, Direct Instruction, Inquiry, Active Learning
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Imhof, Christof; Bergamin, Per; Moser, Ivan; Holthaus, Matthias – International Association for Development of the Information Society, 2018
This article demonstrates how an adaptive instructional design for a physics module can be realized in a standard learning management system. We implemented a didactic design with physics-specific online exercises that were accompanied by either detailed or non-detailed instructions, depending on the results of the previous task (or a prior…
Descriptors: Teaching Methods, Physics, Science Instruction, Integrated Learning Systems
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Chounta, Irene-Angelica; Albacete, Patricia; Jordan, Pamela; Katz, Sandra; McLaren, Bruce M. – Grantee Submission, 2017
In this paper, we propose a computational approach to model the Zone of Proximal Development (ZPD) using predicted probabilities of correctness and engaging students in reflective dialogue. To that end, we employ a predictive model that uses a linear function of a variety of parameters, including difficulty and student knowledge and we analyze the…
Descriptors: Learning Theories, Sociocultural Patterns, Intelligent Tutoring Systems, Physics
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Chounta, Irene-Angelica; McLaren, Bruce M.; Albacete, Patricia; Jordan, Pamela; Katz, Sandra – Grantee Submission, 2017
In this paper, we propose a computational approach to modeling the Zone of Proximal Development of students who learn using a natural language tutoring system for physics. We employ a student model that predicts students' performance based on their prior knowledge and their activity when using a dialogue tutor to practice with conceptual,…
Descriptors: Learning Theories, Sociocultural Patterns, Intelligent Tutoring Systems, Physics
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Wyse, Sara A.; Soneral, Paula A. G. – CBE - Life Sciences Education, 2018
Despite its value in higher education, academic rigor is a challenging construct to define for instructor and students alike. How do students perceive academic rigor in their biology course work? Using qualitative surveys, we asked students to identify "easy" or "hard" courses and define which aspects of these learning…
Descriptors: Academic Standards, Difficulty Level, Student Attitudes, Biology
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Garcia, Rebecca; Rahman, Alvina; Klein, Janette Gomos – American Biology Teacher, 2015
We designed a human biology course that interests nonmajors while improving science literacy through student engagement, using a constructivist-inspired, topic-centered approach. This way of learning highlights common diseases that provide a basis to incorporate specific biological concepts. The topic-centered approach triggers interest and…
Descriptors: Science Instruction, College Science, Nonmajors, Undergraduate Students
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Kim, Min Kyeong; Cho, Mi Kyung – EURASIA Journal of Mathematics, Science & Technology Education, 2015
Students can learn subjects more meaningfully through integrated education, as it helps them to link school education with their real lives. There is a strong need to develop an alternative integration method to promote effective implementation of integrated education at a classroom level. The purpose of this study was to develop a model for…
Descriptors: Foreign Countries, Interdisciplinary Approach, Integrated Curriculum, Mathematics Instruction
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Richey, J. Elizabeth; Nokes-Malach, Timothy J. – Learning and Instruction, 2013
A central goal of the learning sciences is to discover principles that determine the optimal amount of instructional assistance to support robust learning (Koedinger & Aleven, 2007). We examined learning outcomes from providing and withholding stepwise instructional explanations as students studied worked examples and solved physics problems. We…
Descriptors: Demonstrations (Educational), Teaching Methods, Problem Solving, Learning Processes
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Nariman, Nahid; Chrispeels, Janet – Interdisciplinary Journal of Problem-based Learning, 2016
We explore teachers' efforts to implement problem-based learning (PBL) in an elementary school serving predominantly English learners. Teachers had an opportunity to implement the Next Generation Science Standards (NGSS) using PBL in a summer school setting with no test-pressures. To understand the challenges and benefits of PBL implementation, a…
Descriptors: Problem Based Learning, Elementary School Students, Prior Learning, Cooperative Learning
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Davis, Elizabeth A.; Beyer, Carrie; Forbes, Cory T.; Stevens, Shawn – Teaching and Teacher Education: An International Journal of Research and Studies, 2011
Teachers need to develop the ability to adapt curriculum materials. Two elementary teachers, Maggie and Catie, were asked to write narratives about their use of and changes to particular reform-oriented science lesson plans. Maggie drew on her knowledge of and experiences with students, as well as other knowledge, experiences, and resources, to…
Descriptors: Prior Learning, Educational Change, Lesson Plans, Instructional Design
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Leslie, Kimberley Crompton; Low, Renae; Jin, Putai; Sweller, John – Educational Technology Research and Development, 2012
Two experiments using the science topics of Magnetism and Light were conducted with younger learners (Year 5) who had no prior knowledge of the topics, and older learners (Year 6) who had studied the topics previously. Half of the learners were presented the information in auditory form only while the other half were presented the auditory…
Descriptors: Expertise, Prior Learning, Redundancy, Age Differences
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