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Didimus Tanah Boleng; Elsje Theodora Maasawet; Hariska Swandana – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2024
The concepts of bacteriology are still poorly understood by students of the Department of Biology Education, Mulawarman University. Certain ethnic characteristics influence student learning processes and outcomes. A quasi-experiment was carried out at the Department of Biology Education, Mulawarman University in the even semester of the 2022/2023…
Descriptors: Foreign Countries, College Students, Science Instruction, Microbiology
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Olanrewaju P. Olaogun; Nathaniel J. Hunsu – European Journal of Psychology of Education, 2025
Students have misconceptions about many scientific topics they encounter in the classroom--such misconceptions are especially rife in subjects with counterintuitive concepts. Several studies have copiously documented students' misconceptions in different science domains. Research shows that students' misconceptions can be resistant to change and…
Descriptors: College Students, College Faculty, Engineering Education, Misconceptions
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Rudy Brass; Ebunoluwa Braithwaite; Hope E. Edwards; Jasleen Kaur; Anna Kleanthous; Toby T. Madhlangobe; Anand D. Mistry; Ared Suma; Shane Lo Fan Hin; Dylan P. Williams – Journal of Chemical Education, 2024
The gamification of learning has increased in popularity in recent years as a tool for enhancing student engagement and attainment. In undergraduate chemistry courses, hybridization is a fundamental concept that students need to master in order to understand introductory organic and inorganic topics. This study focused on the development of a card…
Descriptors: Science Instruction, Teaching Methods, Introductory Courses, Organic Chemistry
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Mason, Lucia; Zaccoletti, Sonia – Educational Psychology Review, 2021
Recent research about the learning of science has suggested that misconceptions are not replaced by scientific conceptions and extinguished once conceptual change has occurred. Rather, misconceptions still exist alongside the acquired scientific conceptions and must be suppressed in order to use scientific conceptions. Our goal in this review is…
Descriptors: Inhibition, Learning Processes, Scientific Concepts, Misconceptions
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Parmin; Erna Noor Savitri; Yahya Nur Ifriza – South African Journal of Education, 2025
With the research reported here, we specifically aim to develop application products of scientific work independence instruments through science integrated learning (SIL) for various education levels (elementary schools, junior high schools, senior high schools, and universities). The SIL model was applied in learning to determine specific…
Descriptors: Elementary School Students, Secondary School Students, College Students, Student Development
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Hunter, Kevin H.; Rodriguez, Jon-Marc G.; Becker, Nicole M. – Chemistry Education Research and Practice, 2021
Beyond students' ability to manipulate variables and solve problems, chemistry instructors are also interested in students developing a deeper conceptual understanding of chemistry, that is, engaging in the process of sensemaking. The concept of sensemaking transcends problem-solving and focuses on students recognizing a gap in knowledge and…
Descriptors: Chemistry, Science Process Skills, Problem Solving, Comprehension
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Cole, Martin H.; Fuller, Dana K.; Sanger, Michael J. – Chemistry Education Research and Practice, 2021
This study compares students' explanations of the oxidation-reduction reaction between silver nitrate and copper metal after viewing a chemical demonstration and one of four different particulate-level computer animations. The animations differed in the way the ionic charges were depicted (shown or omitted) and the way the transferred electrons…
Descriptors: Chemistry, Scientific Concepts, Knowledge Level, Metallurgy
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Nelson, Connie; Stroink, Mirella – Michigan Journal of Community Service Learning, 2020
Community-campus engagement (CCE) offers transformative opportunities for collaborative knowledge creation. Over the last few decades, thoughtful energy has gone into identifying the parts of a CCE and then developing tools to study these parts, with discrete focus on community groups, students, and faculty. Bringing a complexity science approach…
Descriptors: School Community Relationship, Models, College Students, College Faculty
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Anwar, Yunita Arian Sani – Biochemistry and Molecular Biology Education, 2020
Biochemistry learning in higher education not only aims to allow students to remember the concepts learned, but also to achieve meaningful learning. This study examines the implementation of the multilevel inquiry approach in order to achieve meaningful biochemistry learning. Such as approach begins with a structured inquiry, leading to a guided…
Descriptors: Biochemistry, Science Instruction, Teaching Methods, Higher Education
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Altmeyer, Kristin; Kapp, Sebastian; Thees, Michael; Malone, Sarah; Kuhn, Jochen; Brünken, Roland – British Journal of Educational Technology, 2020
Learning with hands-on experiments can be supported by providing essential information virtually during lab work. Augmented reality (AR) appears especially suitable for presenting information during experimentation, as it can be used to integrate both physical and virtual lab work. Virtual information can be displayed in close spatial proximity to…
Descriptors: Concept Formation, Scientific Concepts, Pretests Posttests, Teaching Methods
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Glaze, Amanda L. – Education Sciences, 2018
It is widely agreed upon that the goal of science education is building a scientifically literate society. Although there are a range of definitions for science literacy, most involve an ability to problem solve, make evidence-based decisions, and evaluate information in a manner that is logical. Unfortunately, science literacy appears to be an…
Descriptors: Teaching Methods, Learning Processes, Scientific Literacy, Science Instruction
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Caspari, I.; Weinrich, M. L.; Sevian, H.; Graulich, N. – Chemistry Education Research and Practice, 2018
If an organic chemistry student explains that she represents a mechanistic step because ''it's a productive part of the mechanism,'' what meaning could the professor teaching the class attribute to this statement, what is actually communicated, and what does it mean for the student? The professor might think that the explanation is based on…
Descriptors: Organic Chemistry, Abstract Reasoning, Science Process Skills, Scientific Attitudes
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Todd, Amber; Romine, William L. – International Journal of Science Education, 2016
Building upon a methodologically diverse research foundation, we adapted and validated the "Learning Progression-based Assessment of Modern Genetics" (LPA-MG) for college students' knowledge of the domain. Toward collecting valid learning progression-based measures in a college majors context, we redeveloped and content validated a…
Descriptors: Genetics, College Science, College Students, Student Evaluation
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Utter, Brian C.; Paulson, Scott A.; Almarode, John T.; Daniel, David B. – Teacher Educators' Journal, 2018
We argue, based on a multi-year collaboration to develop a pedagogy course for physics majors by experts in physics, education, and the science of learning, that the process of teaching science majors about education and the science of learning, and evidence-based teaching methods in particular, requires conceptual change analogous to that…
Descriptors: Science Education, Science Instruction, Majors (Students), Teaching (Occupation)
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Twissell, Adrian – Educational Technology & Society, 2018
Abstract electronics concepts are difficult to develop because the phenomena of interest cannot be readily observed. Visualisation skills support learning about electronics and can be applied at different levels of representation and understanding (observable, symbolic and abstract). Providing learners with opportunities to make transitions…
Descriptors: Electronics, Case Studies, Concept Formation, Scientific Concepts
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