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Sharleen Flowers; Kal H. Holder; Gabrielle K. Rump; Stephanie M. Gardner – CBE - Life Sciences Education, 2023
Explaining biological phenomena requires understanding how different processes function and describing interactions between components at various levels of organization over time and space in biological systems. This is a desired competency yet is a complicated and often challenging task for undergraduate biology students. Therefore, we need a…
Descriptors: Undergraduate Students, Cytology, Biology, Scientific Concepts
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Caryn Babaian; Sudhir Kumar – American Biology Teacher, 2024
When students think of evolution, they might imagine T. rex, or perhaps an abiotic scene of sizzling electrical storms and harsh reducing atmospheres, an Earth that looks like a lunar landscape. Natural selection automatically elicits responses that include "survival of the fittest," and "descent with modification," and with…
Descriptors: Evolution, Science Education, Cancer, Teaching Methods
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Dewei Ye; Jiali Qian; Wangyi Xu; Yuyang Lu; Shuli Wang; Longhai Xiao; Lei Bao – Physical Review Physics Education Research, 2024
The galvanic cell is a typical interdisciplinary topic, which is primarily taught in chemistry but its underpinning is closely related to physics. Student learning in galvanic cell has been extensively studied in chemistry education, which has revealed a large number of misconceptions that are difficult to change through traditional instruction. A…
Descriptors: Physics, Science Instruction, Teaching Methods, Cytology
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Ifeyinwa Uke; Jazlin Ebenezer; Osman Nafiz Kaya – Research in Science Education, 2024
This mixed-methods research study aimed to observe the changes in relational conceptual changes and achievement in photosynthesis and cellular respiration in 15 seventh-grade students using the variation theory of learning, a framework for contextual distinctions, and supports the Common Knowledge Construction Model (CKCM) for science education.…
Descriptors: Grade 7, Scientific Concepts, Science Achievement, Cytology
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Guangjie Yan; Yuteng Zhang; Alexis Allamprese; Kameron N. Brooks; Wenkai Chen; Shudan Yan; Tai-Yen Chen – Journal of Chemical Education, 2024
Single-molecule localization microscopy (SMLM) has revolutionized our ability to visualize cellular structures, offering unprecedented detail. However, the intricate biophysical principles that underlie SMLM can be daunting for newcomers, particularly undergraduate and graduate students. To address this challenge, we introduce the fundamental…
Descriptors: Molecular Structure, Chemistry, Science Instruction, Laboratory Equipment
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Leonie I. Johann; Fredrik K. H. Rusk; Michael J. Reiss; Jorge Groß – Journal of Biological Education, 2024
This study reports on the theoretical- and empirical-based design and evaluation of cell membrane biology learning activities within the Model of Educational Reconstruction and experiential realism. First, we designed analogy-based learning activities by considering students' and scientists' conceptions as described in the literature. Secondly, we…
Descriptors: Secondary School Students, Thinking Skills, Cytology, Molecular Biology
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Abdurrahman Sefali; Bilge Öztürk – Journal of Science Learning, 2024
This study aims to help students learn cytoplasmic flow movement by using "Egeria densa" as a model. The study was conducted with six prospective science teachers studying at Bayburt University's Faculty of Education Science Teaching Undergraduate Program. As a data collection tool, a form containing questions to obtain prospective…
Descriptors: Cytology, Science Teachers, Teacher Education Programs, Preservice Teachers
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Amy J. Hopper; Angus M. Brown – Advances in Physiology Education, 2024
In this article we analyze the classic Hodgkin and Keynes 1955 paper describing investigations of the independence principle, with the expectation that there is much students and educators can learn from such exercises, most notably how the authors applied their diverse skill set to tackling the numerous obstacles that the study presented. The…
Descriptors: Science Education, Physiology, Scientific Principles, Scientific Concepts
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Riggi, Margot; Iwasa, Janet H. – Biochemistry and Molecular Biology Education, 2023
In collaboration with educators and researchers, we created an online resource called Phase Separation 101 to help undergraduate students understand the basics of liquid-liquid phase separation, an emerging and complex concept in cell biology for which visual resources are still scarce. This work presents the workflow and visual communication…
Descriptors: Biochemistry, Science Instruction, Teaching Methods, Undergraduate Students
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Shemwell, Jonathan T.; Capps, Daniel K.; Fackler, Ayca K.; Coogler, Carlson H. – Journal of Science Education and Technology, 2023
Big ideas in science education are meant to be interpretive frameworks that empower student learning. Unfortunately, outside of the broad conception of scientific evaluation, there are few theoretical explanations of how this might happen. Therefore, we contribute one such explanation, an instructional concept called integrative analysis wherein…
Descriptors: Science Education, Scientific Concepts, Secondary School Science, Grade 9
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Pessoa, Pamella Teles; Palanch, Adrianne Christine; Casale, Karina Reche; Montrezor, Luís Henrique; Taxini, Camila Linhares; Azevedo, Maria Antonia; Marcondes, Fernanda Klein – Advances in Physiology Education, 2023
In health courses, the students must be familiar with the effects of intravenous solutions on cell volume and function, a topic where there can be learning difficulties and misunderstandings. Since educational games can assist in understanding complex concepts, we created a game relating solution osmolarity and tonicity to red blood cell volume…
Descriptors: Undergraduate Students, Dentistry, Medicine, Educational Games
Page Keeley – NSTA Press, 2024
Here's a fresh way to help your students learn life science by determining how you can help them learn best. "Uncovering Student Ideas in Life Science, Volume 2," offers 30 new formative assessment probes--engaging questions that can reveal what students already know (or think they know) about a core science topic. Armed with that…
Descriptors: Science Education, Knowledge Level, Biological Sciences, Scientific Concepts
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Laura C. Giojalas; Leticia García Romano; Giuliana Lingua; Rocío B. Martín – Biochemistry and Molecular Biology Education, 2025
Molecular Cell Biology (MCB) should be taught according to the scientific practices, avoiding cumulative and memory knowledge construction, but favoring scientific thinking. A way to achieve this goal is to apply activities involving scientific news, which construct knowledge through significant learning and the development of critical thinking.…
Descriptors: Undergraduate Students, College Faculty, Cytology, Molecular Biology
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Karatas, Ayla – Journal of Biological Education, 2023
This study aims to determine misconceptions about interphase, a basic phase in the cell cycle and to address those misconceptions. Meristem cells in plants, stem cells in animals, spermatogonia and oogonia cells, and some cells with partial regeneration ability do not lose dividing ability. However, normal tissue cells other than these are in the…
Descriptors: Misconceptions, Scientific Concepts, Cytology, Science Teachers
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Ömer Seyfettin Sevinç; Zübeyde Çiçek – Shanlax International Journal of Education, 2023
In this study, it was aimed to examine the visual content and expressions in the texts in the "Cell Divisions" unit in the 10th Grade Biology textbook of the Ministry of National Education, Secondary Science High School, taught in the 2022-2023 academic year, in terms of scientific content. The data sources of the research, in which the…
Descriptors: Grade 10, Secondary School Science, Biology, High Schools
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