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Thiam, Mouhamadou – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2021
Students have several misconceptions about thermodynamics. However, an understanding of basic concepts in this branch of physics remains fundamental to explain thermal phenomena. The purpose of this activity was to extend students' conceptual understanding of heat, temperature, energy, and thermal insulators and conductors. Two groups of students…
Descriptors: Thermodynamics, Grade 7, Science Instruction, Science Activities
Davidson, Ashley B.; Addison, Christopher J.; Charbonneau, James – Teaching & Learning Inquiry, 2022
Universities are recognizing the need to prepare graduates to think conceptually and have the ability to take on complex, real-world problems. Strategies to assess conceptual knowledge are limited and often require more time and effort to complete than is accessible for most undergraduate courses. Card sorting is a very broad technique for…
Descriptors: Problem Based Learning, Task Analysis, College Freshmen, Scientific Concepts
Laura Super; Shuting Huo; Linda S. Siegel – International Journal for Research in Learning Disabilities, 2024
This research evaluated the implementation of a climate science curriculum intervention for students in Grades 4 and 5, including those who were typically achieving and those with difficulties in mathematics, reading, or both. Pre- and posttests of measurement and climate change science concepts were administered at the beginning and end of each…
Descriptors: Science Instruction, Academic Achievement, Students with Disabilities, Learning Disabilities
Fuchs, Travis T.; Jellema, Elysia – Canadian Journal of Action Research, 2023
This collaborative action research project documents the exploration and student learning outcomes of COVID-19 socioscientific issue-based lessons. Analysis of student interviews, surveys, and work, combined with classroom observations, revealed that COVID-19 socioscientific issue-based lessons improved students' conceptual understanding of the…
Descriptors: Science and Society, COVID-19, Pandemics, Educational Change
Shuqi Zhou – ProQuest LLC, 2021
Cognitive diagnostic models can uncover students' mastery of multiple fine-grained skill attributes or problem-solving processes. A number of studies have applied cognitive diagnostic models to detect students' knowledge mastery in mathematics and language testing. However, few studies focus on cognitive diagnostic assessment in K-12 science…
Descriptors: Models, Cognitive Measurement, Science Education, Energy
Saudelli, Mary Gene; Kleiv, Robin; Davies, Jessica; Jungmark, Martin; Mueller, Rebecca – Brock Education: A Journal of Educational Research and Practice, 2021
Simulation educational technologies provide a convenient way to augment classroom learning in higher education. The University of Colorado Boulder has created many Physics Education Technology (PhET) computer simulations relevant to concepts in Sciences and Mathematics. There is a notable gap in the literature of simulation-based technologies,…
Descriptors: College Science, Undergraduate Study, Science Instruction, Physics
Deng, Jacky M.; Flynn, Alison B. – Chemistry Education Research and Practice, 2021
In a world facing complex global challenges, citizens around the world need to be able to engage in scientific reasoning and argumentation supported by evidence. Chemistry educators can support students in developing these skills by providing opportunities to justify how and why phenomena occur, including on assessments. However, little is known…
Descriptors: Organic Chemistry, Persuasive Discourse, Science Process Skills, Science Tests
Brahim El Fadil; Ridha Najar – Design and Technology Education, 2024
This paper explores the integration of STEM activities in teaching and learning, emphasizing the importance of innovative pedagogical approaches in effectively introducing theoretical concepts, such as variables and functions, and merging them with practical applications. Drawing on existing literature, this study investigates the integration of…
Descriptors: STEM Education, Instructional Innovation, Learning Activities, Mathematical Concepts
Bongers, Amanda; Northoff, Georg; Flynn, Alison B. – Chemistry Education Research and Practice, 2019
Creating and using models are essential skills in chemistry. Novices and experts alike rely on conceptual models to build their own personal mental models for predicting and explaining molecular processes. There is evidence that chemistry students lack rich mental models of the molecular level; their mental models of reaction mechanisms have often…
Descriptors: Science Instruction, Schemata (Cognition), Teaching Methods, Scientific Concepts
Nyhout, Angela; Sweatman, Hilary; Ganea, Patricia A. – Child Development, 2023
Children's hypothetical reasoning about a complex and dynamic causal system was investigated. Predominantly White, middle-class 5- to 7-year-old children from the Greater Toronto Area learned about novel food chains and were asked to consider the effects of removing one species on the others. In Study 1 (N = 72; 36 females, 36 males; 2018),…
Descriptors: Childrens Attitudes, Thinking Skills, Causal Models, Systems Approach
Carle, Myriam S.; Visser, Rebecca; Flynn, Alison B. – Chemistry Education Research and Practice, 2020
We developed an online learning module called ''Organic Mechanisms: Mastering the Arrows'' to help students learn part of organic chemistry's language--the electron-pushing formalism. The module guides students to learn and practice the electron-pushing formalism using a combination of interactive videos, questions with instant feedback, and…
Descriptors: Science Instruction, Organic Chemistry, Open Educational Resources, Pretests Posttests
Ayotte-Beaudet, Jean-Philippe; Chastenay, Pierre; Beaudry, Marie-Claude; L'Heureux, Kassandra; Giamellaro, Michael; Smith, Jonathan; Desjarlais, Estelle; Paquette, Alain – Journal of Biological Education, 2023
The present study explored the impacts of a contextualised outdoor science curriculum on "what" and "how" elementary students learn when immersed in the local contexts in which natural phenomena occur. We conducted 63 individual interviews with fifth- and sixth-graders (between 10 and 12 years old) living in the inner city of…
Descriptors: Outdoor Education, Science Education, Elementary School Students, Ecology
Trudel, Louis; Métioui, Abdeljalil – International Baltic Symposium on Science and Technology Education, 2019
The relative speed concept was chosen since it is linked with the relative nature of motion and it is likely that the students would harbor many alternative conceptions about it. The research objective was to identify the various ways students conceive relative motion. Qualitative data collected in various forms of representation received a…
Descriptors: High School Students, Secondary School Science, Models, Motion
David Ross Hall; Jessica C. D’eon – Journal of Chemical Education, 2023
Chemistry is increasingly data centric and the undergraduate curriculum needs to adjust to keep up. To address this, we created the "Air Quality Activity," a new first-year undergraduate activity where students use Microsoft Excel to analyze a unique subset of atmospheric ozone (O[subscript 3]) and nitrogen dioxide (NO[subscript 2])…
Descriptors: Chemistry, Science Instruction, Pollution, Undergraduate Students
Azam, Saiqa – EURASIA Journal of Mathematics, Science and Technology Education, 2020
A narrative inquiry approach was adapted to study teacher's experiences of planning and teaching force and motion topics. Oral narrative data were collected through interview conversations between the researcher and the teachers about their experiences of planning and teaching force and motion concepts. "Narrative analysis" technique…
Descriptors: Pedagogical Content Knowledge, High School Teachers, Junior High School Teachers, Science Teachers