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Catherine B. Aguanta; Margery Anne T. Augusto; Jonajean V. Bajenting; Katrina Claire Buayaban; El Jane P. Cruz; Niña Faith Fantonial; Jane Aubrey M. Kwan; Jimmoy Legaspino; Dharel P. Acut; Marchee T. Picardal – Journal of Education and Learning (EduLearn), 2024
Effective science instruction in a blended learning approach is synonymous with the strategic use of instructional videos (IVs) to fill the gap in teacher support. This study aims to determine the IVs' effectiveness in improving students' concept retention and overall learning experiences. The experimental group was exposed to instruction…
Descriptors: Science Instruction, Video Technology, Scientific Concepts, Retention (Psychology)
Franklin U. Onowugbeda; Peter A. Okebukola; Adeleke M. Ige; Saladoye N. Lameed; Deborah O. Agbanimu; Umar A. Adam – Journal of Educational Research, 2024
This study examined the impact of a pedagogy that is culturally influenced and laced with technological and contextual elements known as the culturo-techno-contextual approach (CTCA) on promoting knowledge retention of biology concepts. The research design was mixed methods, and the sample consisted of 88 senior secondary school II students…
Descriptors: Biology, Foreign Countries, Scientific Concepts, Retention (Psychology)
Andrea C. Bardales; Quynh Vo; Dmitry M. Kolpashchikov – Journal of Chemical Education, 2024
It has been shown that active learning strategies are effective in teaching complex STEM concepts. In this study, we developed and implemented a laboratory experiment for teaching the concepts of Boolean logic gates, molecular beacon probes, molecular computing, DNA logic gates, microRNA, and molecular diagnosis of hepatocellular carcinoma, which…
Descriptors: Active Learning, STEM Education, Scientific Concepts, Concept Formation
Tugba Yuksel; Lynn A. Bryan; Alejandra J. Magana – International Journal of Science Education, 2024
Quantum physics forms the basis for exciting new technologies, including quantum computers, quantum encryption, and quantum entanglement. The advancement of science and technology highlights the importance of mastering quantum physics and its applications, not only at the college level but also as early as high school. In this multiple case study,…
Descriptors: Undergraduate Students, Models, Quantum Mechanics, Science Instruction
Fabian Hennig; Kristóf Tóth; Joaquin Veith; Philipp Bitzenbauer – Physical Review Physics Education Research, 2024
Evidence from physics education research suggests that the introduction of a formalistic description of quantum phenomena can be beneficial to student learning, particularly in terms of helping students move away from naive realist views of quanta or space-time descriptions of quantum phenomena. However, the mathematical requirements for mastering…
Descriptors: Scientific Concepts, Quantum Mechanics, Physics, Equations (Mathematics)
Christof Keebaugh; Emily Marshman; Chandralekha Singh – Physical Review Physics Education Research, 2024
We examine students' challenges in determining the number of distinct many-particle stationary states for a system of noninteracting identical particles, focusing on how these insights guided the design, validation, and evaluation of a quantum interactive learning tutorial (QuILT) to aid students' understanding. Specifically, we focus on systems…
Descriptors: Physics, Scientific Concepts, Science Education, Quantum Mechanics
Kassahun Dejene Belayneh; Woldie Belachew – Cogent Education, 2024
The purpose of this study was to determine the effect of topic-specific pedagogical content knowledge-based instruction on grade 11 students' achievement in chemical kinetics and equilibrium. A quasi-experimental research design with a 4 × 2 * 3 pre-test and post-test control group was employed on Grade 11 chemistry students in Addis Ababa…
Descriptors: Kinetics, Secondary School Students, Scientific Concepts, Teaching Methods
Zer Vue; Chia Vang; Celestine N. Wanjalla; Andrea G. Marshall; Kit Neikirk; Dominique Stephens; Sulema Perales; Edgar Garza-Lopez; Heather K. Beasley; Annet Kirabo; Yelena Janumyan Doe; Desmond Campbell; Letimicia Fears; Ahmad Alghanem; Estevão Scudese; Beverly Owens; Derrick J. Morton; Clintoria R. Williams; Zachary Conley; Hinton Antentor Jr. – Advances in Physiology Education, 2024
Physiology is an important field for students to gain a better understanding of biological mechanisms. Yet, many students often find it difficult to learn from lectures, resulting in poor retention. Here, we utilize a learning workshop model to teach students at different levels ranging from middle school to undergraduate. We specifically designed…
Descriptors: Workshops, Physiology, Science Education, Hands on Science
Esther Kataate Namakula; Valarie L. Akerson – Journal of Education in Science, Environment and Health, 2024
The study explored the impact of peer critiquing on preservice teachers' understanding of the nature of science, scientific inquiry, and argumentation in an undergraduate science content course. The aim was to investigate innovative teaching strategies that enhance preservice teachers' comprehension of these key aspects. This study showcased…
Descriptors: Peer Evaluation, Science Process Skills, Inquiry, Preservice Teachers
Saeed Salimpour; Michael Fitzgerald; Robert Hollow – Physical Review Physics Education Research, 2024
Over the years, there have been various calls to increase and better represent astronomy in curricula. This is motivated by views within the astronomy and astronomy education communities that the awe, wonder, and interdisciplinary nature of astronomy has the potential to engage students in STEM across disciplines. Reviews of curricula have shown…
Descriptors: Astronomy, Physics, Science Instruction, Foreign Countries
Amornrat Saithongdee; Tanita Sirirat – Journal of Chemical Education, 2024
Board games have been used as instructional tools for a wide array of subjects from primary to secondary levels. The present study aimed to develop and apply a novel board game for the instruction of content relating to mole conversion through dimensional analysis in a grade10 class of 29 students. To assess their knowledge prior to and after…
Descriptors: Games, Game Based Learning, Science Instruction, Grade 10
Wallee Naimi; Gail A. Vinnacombe-Willson; Stanley Saldana; Lionnel Ronduen; Heather Domjan; Naihao Chiang – Journal of Chemical Education, 2024
Stimulating interest in science at an early age is important for STEM education. This work details an educational activity utilizing the anthocyanins found in butterfly pea flowers ("Clitoria ternatea"). This activity was developed for use in official classroom settings, online, and/or at-home with parental or educator guidance. Primary…
Descriptors: Science Instruction, Chemistry, STEM Education, Fundamental Concepts
Chatchadaporn Pinthong; Natpawee Poungkaew; Titapa Ampaipis; Jirapipat Thanyaphongphat; Panu Pimviriyakul; Somchart Maenpuen – Journal of Chemical Education, 2024
The coronavirus (COVID-19) pandemic prevented students from attending on-site classes. Consequently, their face-to-face interactions decreased. Thus, it became crucial to design learning activities to enhance the motivation of students and inspire them to achieve the desired learning outcomes during the long disruption of on-site classes. Mobile…
Descriptors: Undergraduate Study, Educational Games, Game Based Learning, Learning Activities
Andreas Haraldsrud; Tor Ole B. Odden – Chemistry Education Research and Practice, 2024
Sensemaking is an important way of learning and engaging in science. Research has shown that sensemaking activities, such as questioning, hypothesizing, and model building, are pivotal in developing critical thinking and problem-solving skills in science education. This paper investigates the role of computational simulations in facilitating…
Descriptors: Comprehension, Science Education, Learner Engagement, Chemistry
Field M. Watts; Solaire A. Finkenstaedt-Quinn; Ginger V. Shultz – Chemistry Education Research and Practice, 2024
Research on student learning in organic chemistry indicates that students tend to focus on surface level features of molecules with less consideration of implicit properties when engaging in mechanistic reasoning. Writing-to-learn (WTL) is one approach for supporting students' mechanistic reasoning. A variation of WTL incorporates peer review and…
Descriptors: Organic Chemistry, Writing Assignments, Design, Peer Evaluation

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