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Qiang Fu; Li Liu; Guofu Wang; Jing Yu; Shiyuan Fu – Journal of Chemical Education, 2023
Commonly used methods to simulate the oxidation-reduction (redox) titration curves include the three-step method and the rigorous method. The simple three-step method simulates the redox titration curve with the assumption that the reaction is complete, which is widely used in undergraduate quantitative analysis courses. For the rigorous…
Descriptors: Chemistry, Simulation, College Science, Undergraduate Students
Merita Xhetani; Kristjana Lapi – International Society for Technology, Education, and Science, 2023
Students in high school tend to find genetics difficult to learn because it requires some crosslinked knowledge about subjects like genes, proteins, cells, tissues as well as organs and systems. It also becomes more difficult to connect and explain concepts such as the gene expression at the level of the cell to conceptualize the effect of the…
Descriptors: Genetics, High School Students, Student Attitudes, Science Instruction
Brian J. Esselman; Nicholas J. Hill; Kimberly S. DeGlopper; Aubrey J. Ellison; Ryan L. Stowe; Cara E. Schwarz; Niall J. Ellias – Journal of Chemical Education, 2023
We have developed a curriculum for the organic chemistry laboratory in which students draw on authentic usage of spectroscopy, spectrometry, and computational chemistry to explain chemical phenomena. This curriculum, which has been continuously refined over a decade, has been explored by many thousands of students and is scalable to small and…
Descriptors: Organic Chemistry, Science Education, Science Laboratories, Authentic Learning
Legitimation Code Theory as an Analytical Framework for Integrated STEM Curriculum and Its Enactment
Chelsey A. Dankenbring; S. Selcen Guzey; Lynn A. Bryan – Research in Science Education, 2024
Recent reform initiatives in STEM disciplines inspired the development and implementation of integrated STEM approaches to science teaching and learning. Integrated STEM as an approach to science teaching and learning leverages engineering principles and practices to situate learning in an authentic and meaningful science learning environment.…
Descriptors: STEM Education, Educational Environment, Scaffolding (Teaching Technique), Concept Formation
Mehmet Ali Kandemir; Zeki Apaydin – Journal of Theoretical Educational Science, 2024
The aim of this longitudinal research is to examine the development process of scientific and consistent knowledge structures of first, second, and third-grade students in middle school within the concepts of melting and dissolution according to conceptual change theories at the end of the education and training processes carried out in…
Descriptors: Middle School Students, Foreign Countries, Scientific Concepts, Scientific Literacy
Jacob Pleasants; Kristyn Sartin – International Journal of Technology and Design Education, 2024
Engineering design is being increasingly included in elementary education, typically to provide students with opportunities to apply science and mathematics concepts while developing their engineering practices. An important question is how to prepare teachers who can help students develop more informed engineering practices during classroom…
Descriptors: Engineering Education, Elementary School Teachers, Scaffolding (Teaching Technique), Mathematical Concepts
Ebba Koerfer; Bor Gregorcic – Physical Review Physics Education Research, 2024
Statistical mechanics has received limited attention in physics education research and remains a relatively underrepresented topic even in research on upper-division physics courses. The purpose of this study was to explore potential challenges that physics students encounter when they solve statistical mechanics problems in groups. Adopting a…
Descriptors: Physics, Science Instruction, Mechanics (Physics), Barriers
Grant Cooper; Li Ping Thong; Kok-Sing Tang – Educational Media International, 2024
Immersive virtual reality (IVR) offers significant transformative potential for science education by supporting learning experiences that deeply engage students and improve their understanding of scientific concepts. Despite considerable interest, research on the use of IVR in science education is still in its formative stage. Currently, there is…
Descriptors: Science Education, Computer Simulation, Learning Experience, Learner Engagement
Irene K. Guttilla Reed; Michelle L. Kraczkowski; Steven J. Pearlman – Journal of College Science Teaching, 2024
Critical thinking is essential in academia and the workforce. Although writing can be used as a pedagogical tool for fostering deeper subject matter understanding, increased retention, and critical thinking, relatively few science courses are writing based. This writing-based introductory science course provided an opportunity for students to…
Descriptors: Undergraduate Students, Biology, Science Instruction, Molecular Biology
Zübeyde Çiçek; Murat Genç – Journal of Inquiry Based Activities, 2024
The purpose of this study is to develop a lesson plan that will facilitate the instruction of socioscientific issues and the acquisition of twenty-first century skills. To this end, a lesson plan comprising four hours of instruction was devised and presented in comprehensive detail. Three distinct activities were devised and executed as part of…
Descriptors: Lesson Plans, Science and Society, 21st Century Skills, Nuclear Energy
Cheng- Yao Lin; Kuan- Chun Chen; Jie Shi Liew; Ho-Feng Chueh – Mathematics Teacher: Learning and Teaching PK-12, 2024
Understanding negative numbers can be challenging for many students, as these concepts may seem less tangible than counting objects, which are commonly represented by positive numbers. In addition, the multiplication of two negative numbers resulting in a positive might appear inconsistent and puzzling to young learners who are used to seeing the…
Descriptors: Mathematics Education, Mathematics Skills, Number Concepts, Multiplication
Ying-Chih Chen; Jongchan Park; Jamie G. Rapkiewcz – American Biology Teacher, 2024
Productive struggle is a process in which students expend effort to grapple with perplexing problems and make sense of something that is not immediately apparent and beyond their current level of understanding and capacity. The experience encourages students to reflect on and restructure their existing knowledge toward a new understanding of…
Descriptors: Error Correction, Biology, Science Education, Teaching Methods
Jane Watson; Noleine Fitzallen; Ben Kelly – Mathematics Education Research Journal, 2024
Incorporating an evidence-based approach in STEM education using data collection and analysis strategies when learning about science concepts enhances primary students' discipline knowledge and cognitive development. This paper reports on learning activities that use the nature of viscosity and the power of informal statistical inference to build…
Descriptors: Elementary School Students, Grade 5, STEM Education, Statistics
Valentine Ukachukwu Okwara – Educational Research: Theory and Practice, 2024
Understanding ecological concepts is crucial in tackling environmental issues like climate change, pollution, and habitat destruction. These concepts also serve as a teaching framework, encouraging learners to effect positive change. This research was conducted with grade 9 learners from three schools in Bloemfontein, South Africa, randomly…
Descriptors: Foreign Countries, Grade 9, Environmental Education, Climate
Florian Budimaier; Martin Hopf – Physical Review Physics Education Research, 2024
Although there has been extensive research on students' understanding of the particulate nature of matter (PNM), there is still a lack of research on contexts that can be used to teach this challenging topic. In a previous design-based research study, the authors developed a teaching-learning sequence (TLS) on the PNM in the context of crystal…
Descriptors: Physics, Teaching Methods, Learning Processes, Science Instruction

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