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Su, Man – ProQuest LLC, 2023
Integrating agent-based models (ABMs) has been a popular approach for teaching emergent science concepts. However, students continue to find it difficult to explain the emergent process of natural selection. This study adopted an ontological framework--the Pattern, Agents, Interactions, Relations, and Causality (PAIR-C)--to guide the design of…
Descriptors: Scientific Concepts, Concept Formation, Genetics, Teaching Methods
Dudley, Lauren A. – ProQuest LLC, 2023
Organic chemistry is accepted as a crucial part of science higher education funneling students into many career opportunities such as pharmaceuticals, biotechnology, and medical industries. Students attempting organic chemistry courses in higher education are among a plethora of majors including biology, chemistry, health science, and engineering.…
Descriptors: Organic Chemistry, Misconceptions, Self Efficacy, College Students
Hachmi, A.; El Moussaouy, A.; Ouariach, A.; Essaadaoui, R.; Kerkour-El Miad, A.; Mommadi, O.; El Hadi, M. – Physics Education, 2021
In this study, which aims to help grade nine students overcome the misconceptions about electric current, we identified their misconceptions about this concept and then designed and implemented a playground activity as an analogy of electric current. Through the conceptual change texts approach, which we have enhanced with experience, we use this…
Descriptors: Playground Activities, Scientific Concepts, Energy, Physics
Fuadi, Fitri Nurzakiah; Sopandi, Wahyu; Priscylio, Ghery; Hamdu, Ghullam; Mustikasari, Lidya – Elementary School Forum (Mimbar Sekolah Dasar), 2020
The concept of air-having pressure needs to be understood by students so that they can understand natural phenomena related to the air concept. The characteristic of the abstract concept of air having pressure leads students to misconceptions. The purpose of this study is to analyze changes in students' conceptions of the air-having pressure…
Descriptors: Elementary School Students, Misconceptions, Scientific Concepts, Teaching Methods
Kennedy, Alana A. U.; Thacker, Ian; Nye, Benjamin D.; Sinatra, Gale M.; Swartout, William; Lindsey, Emily – International Journal of Science Education, Part B: Communication and Public Engagement, 2021
Informal learning environments, such as museums, provide unique opportunities for science learning. They are deliberately designed to impact public understanding of science and shape visitors' attitudes and behaviors. As a developing technology, augmented reality (AR) offers the transformative potential to support museums' educational missions by…
Descriptors: Student Interests, Museums, Informal Education, Teaching Methods
Chinaka, Taurayi Willard – Journal of Turkish Science Education, 2021
This study investigated the effects of the "dance with fruits" analogy on student's alleviation of alternative conceptions among physical sciences high school students in one of the rural province in South Africa. The study used a sequential mixed method research design consisting of quasi-experimental control group pre-test, post-test…
Descriptors: Foreign Countries, High School Students, Grade 11, Physical Sciences
Abukari, Moses Abdullai; Marifa, Huaru Alhassan; Samari, Jonathan Ayelsoma; Dorsah, Philip; Abudu, Fatao – Problems of Education in the 21st Century, 2022
The concept of hybridisation is one of the most difficult concepts for chemistry students to grasp at all levels of learning. Research showed the students conceptual difficulty ranged from their lack of the prerequisite knowledge for grasping the topic hybridisation to chemical bond formation and orientations of atomic orbitals. This study…
Descriptors: High School Students, Difficulty Level, Student Attitudes, Science Achievement
Bao, Lei; Fritchman, Joseph C. – Physical Review Physics Education Research, 2021
Newton's third law is one of the most important concepts learned early in introductory mechanics courses; however, ample studies have documented a wide range of students' misconceptions and fragmented understandings of this concept that are difficult to change through traditional instruction. This research develops a conceptual framework model to…
Descriptors: Science Education, Scientific Principles, Physics, Teaching Methods
Manunure, Kevin; Delserieys, Alice; Castéra, Jérémy – Research in Science & Technological Education, 2020
Background: Information Communication Technologies are increasingly present in the African educational system at all educational levels. However, their integration into pedagogical practices to improve the quality of teaching and learning across disciplines remains the exception. Purpose: The purpose of the study was to compare the learning…
Descriptors: Electronics, Foreign Countries, Information Technology, Teaching Methods
Ngwabe, Abongile; Felix, Clyde – African Journal of Research in Mathematics, Science and Technology Education, 2020
The literature shows that the integration of technological tools, like "GeoGebra," has the potential to improve the teaching and learning of mathematics. The aim of this study was to see whether "GeoGebra" could be used to address identified, systematic misconceptions that National Certificate Vocational (NCV) students hold…
Descriptors: Intervention, Computer Software, Mathematics Instruction, Technology Integration
Asshoff, Roman; Düsing, Katharina; Winkelmann, Tamara; Hammann, Marcus – Journal of Biological Education, 2020
Students often have misconceptions about terrestrial carbon flows and there is a lack of coherence in students' explanations regarding the different levels of biological organisation at which these processes occur. In this study, problem-based teaching materials on the topic of terrestrial carbon flows were developed and tested with 15 students…
Descriptors: Teaching Methods, Science Instruction, Biology, Problem Based Learning
Crogman, Horace; Peters, Raul; TrebeauCrogman, Maryam – European Journal of Physics Education, 2018
Concept inventory (CI) tests are typically used to measure students' general knowledge before and after instruction. We find issue with the current format of these tests, which some researchers claim, measure students' misconceptions, since the answers choices given to students do not consider their prior knowledge. We particularly analyze Force…
Descriptors: Physics, Science Instruction, Scientific Concepts, Misconceptions
Slezak, C.; Underwood, J.; Moreno, J. – Educational Research for Policy and Practice, 2019
This paper examines the educational impact of a prepilot study on the "Learning Logs" literacy strategy as it was used in Louisiana. The study examined how students' conceptual understanding of kinematics and Newton's laws were impacted in a ninth-grade physical science course. The findings address a gap within the current research…
Descriptors: Feedback (Response), Grade 9, Science Instruction, Misconceptions
Kurniawan, Muhammad Ali; Rahayu, Sri; Fajaroh, Fauziatul; Almuntasheri, Saeed – Journal of Science Learning, 2020
This study aims to compare the impact of the Dual Situated Learning Model (DSLM) and conventional instructions in improving High School Students' understanding of chemical equilibrium concepts and the prevention of possible misconceptions. The study utilized a quasi-pretest-posttest control and experimental group design with two classes of XI SMAN…
Descriptors: Situated Learning, High School Students, Chemistry, Scientific Concepts
Cañada-Cañada, Florentina; González-Gómez, David; Airado-Rodríguez, Diego; Melo Niño, Lina Viviana; Dávila Acedo, María Antonia – International Electronic Journal of Elementary Education, 2017
Students get to Elementary School with a series of misconceptions which are not necessarily in agreement with the scientific knowledge. Misconceptions result from the student's attempts to understand their previous experiences resulting from their interaction with their environment and they must be taken into account in educational practice to…
Descriptors: Misconceptions, Elementary School Students, Scientific Concepts, Questionnaires