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Kapici, Hasan Özgür – International Journal of Research in Education and Science, 2023
Being able to move between different representations levels (macroscopic, submicroscopic, and symbolic) is important to understand a chemical phenomenon meaningfully. The current study investigated how pre-service science teachers moved from symbolic representation to sub-microscopic representation. A total of 205 pre-service science teachers,…
Descriptors: Science Instruction, Chemistry, Preservice Teachers, Science Teachers
Mathis, Clausell; Southerland, Sherry A.; Burgess, Terrance – International Journal of Science Education, 2023
In light of recent efforts to increase the diversity of the physics workforce, the need to counter the long-term marginalisation of students of colour from physics has received more attention. Culturally relevant pedagogy (CRP) is a multicultural approach to teaching and learning designed to attend to students' culture as starting points toward…
Descriptors: Physics, Science Instruction, Culturally Relevant Education, Science Teachers
Moses Abdullai Abukari; Abel Nyimba Najah; Jonathan Ayelsoma Samari; Isaac Azumah Gonyalug; Patrick Agyei – Online Submission, 2023
This study investigated Chemistry students' performance and retention (knowledge and understanding, knowledge and application, perception and attitude) in Organic Chemistry in three Senior High Schools (SHSs) within Tamale Metropolis in Ghana. Collaborative learning models were employed as intervention strategies. Quasi-experimental design was…
Descriptors: Science Instruction, Organic Chemistry, High School Students, Cooperative Learning
David T. Brookes; Mc Kenna Wallace; Michael Nelson; Anna Karelina; Peter Bohacek; Matthew Vonk; Eugenia Ektina – Physical Review Physics Education Research, 2023
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] In this paper, we describe the results of a research project whose goals were to (1) develop and implement video-based experimental investigations using the Investigative Science Learning Environment (ISLE) approach and (2) study how…
Descriptors: Scientific Literacy, Science Process Skills, Laboratory Equipment, Science Experiments
Stephen Hackler; Emily Elliott; Mark Eichenlaub; Alison M. Sweeney – Physical Review Physics Education Research, 2023
The increasing and diversifying student enrollments in introductory physics courses make reliable, valid, and usable instruments for measuring student skills and gains ever more important. In introductory physics, in addition to teaching facts about mechanics, we also seek to teach our students the skills of "thinking like a physicist,"…
Descriptors: Physics, Science Instruction, Thinking Skills, Test Construction
Megan Shiroda; Jennifer H. Doherty; Emily E. Scott; Kevin C. Haudek – Advances in Physiology Education, 2023
Mass balance (MB) reasoning offers a rich topic for examination of students' scientific thinking and skills, as it requires students to account for multiple inputs and outputs within a system and apply covariational reasoning. Using previously validated constructed response prompts for MB, we examined 1,920 student-constructed responses (CRs)…
Descriptors: Physiology, Science Instruction, Thinking Skills, Abstract Reasoning
G. B. Jablonski; A. S. Grinath – CBE - Life Sciences Education, 2023
Science advances through the interplay of idea construction and idea critique. Our goal was to describe varied forms of productive disciplinary engagement that emerged during primary literature discussions. Such descriptions are necessary for biology educators and researchers to design for and recognize diverse repertoires of participation in the…
Descriptors: Biology, Science Education, Primary Sources, Scientific Research
Comparing Undergraduate Nature of Science Views in Traditional versus Inquiry-Taught Science Courses
Alex T. St. Louis; Hayat Hokayem – Journal of College Science Teaching, 2023
This qualitative study compares the views about nature of science (NOS) between students enrolled in a traditional lecture and laboratory course and students in an inquiry-based class to the view of the scientists who taught the course. We administered the Views of Nature of Science Form C (VNOS-C) to identify students' views after partaking in…
Descriptors: Scientific Principles, Student Attitudes, Lecture Method, Science Laboratories
Lina Listiana; Nadiya Mutiara Loka; Yuni Gayatri – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2023
The low critical thinking skills and collaboration skills of students in biology learning are caused by the dominance of conventional learning, so they require alternative learning strategies. This study aims to determine the effect of GITTW learning strategy on student critical thinking and collaboration skills. The research design used was…
Descriptors: Critical Thinking, Cooperative Learning, Science Instruction, Scoring Rubrics
Elsa Cenora Simatupang; Melva Silitonga; Sri Handayani Rajagukguk – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2023
The learning process must actively involve students and provide opportunities for them to improve their critical thinking skills. This study determines the effect of the implementation flipped classroom on the critical thinking skills of students in the learning of the human respiratory system in class XI SMAN 16 Medan. This study included a…
Descriptors: Critical Thinking, Thinking Skills, Physiology, Human Body
Didimus Tanah Boleng; Elsje Theodora Maasawet; Hariska Swandana – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2023
Student ethnicity is one of the internal factors that influence student learning. Bacteriology is a course that examines prokaryotic unicellular living things and is practiced in laboratories that need to implement projects. The aim of this research is to know the distribution of students based on their ethnicity. The research sample was students…
Descriptors: Ethnicity, Student Characteristics, Biochemistry, Science Instruction
Christopher E. Jones; Gabriel G. Perrone – Journal of University Teaching and Learning Practice, 2023
Higher education teaching abruptly changed during the COVID-19 pandemic to remote, on-line learning and teaching. The use of on-line communication software to teach became the norm and remains at many institutions. This software contains features, such as the chat, that offer teaching and learning advantages; however, potential benefits can be…
Descriptors: Team Teaching, Electronic Learning, Models, Science Instruction
Wei-Ying Cheng; Jennifer Wen-Shya Lee; Shi-Wei Chu – European Journal of Physics Education, 2023
Many educational strategies have been proposed to improve students' learning motivation and outcomes. This paper reports the student learning outcome results of a three-year study centered on the Electronics course at the Department of Physics of National Taiwan University. In the first year, peer instruction (PI) with in-class lectures was…
Descriptors: Student Motivation, Peer Teaching, Flipped Classroom, Questioning Techniques
Treepob, Hongnapa; Hemtasin, Chulida; Thongsuk, Tawan – International Education Studies, 2023
Making predictions and observations, interpreting data, and drawing conclusions are all examples of scientific problem-solving procedures. The purpose of this research was 1) to develop scientific problem-solving skills by applying problem-based learning as a basis for students in grade 9 to pass the 70 percent requirement and 2) to study the…
Descriptors: Problem Solving, Problem Based Learning, Grade 9, Student Satisfaction
Lin, Feng; Zhu, Gaoxia; Chan, Carol K. K. – Educational Psychology, 2023
Previous studies suggested that epistemically more sophisticated students learned better in a constructivist learning context than epistemically less sophisticated students did. This study further examined if students with "higher" prior epistemic beliefs (EB High) had better learning gains than students with "lower" prior…
Descriptors: Elementary School Students, Grade 5, Foreign Countries, Constructivism (Learning)

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