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Terrell, Cassidy R.; Nickodem, Kyle; Bates, Alison; Kersten, Cassandra; Mernitz, Heather – Biochemistry and Molecular Biology Education, 2021
Introductory biochemistry courses are often challenging for students because they require the integration of chemistry, biology, physics, math, and physiology knowledge and frameworks to understand and apply a large body of knowledge. This can be complicated by students' persistent misconceptions of fundamental concepts and lack of fluency with…
Descriptors: Biochemistry, Science Instruction, Scientific Concepts, Misconceptions
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Levkovich, Ohad; Yarden, Anat – Biochemistry and Molecular Biology Education, 2021
The use of a molecular viewer to visualize proteins has become more prevalent in high schools in recent years. We relied on the foundations of two theoretical frameworks to analyze questions in two learning tasks designed for 10th- to 12th-grade biotechnology majors that make use of Jmol. The two theoretical frameworks were: (i) classification of…
Descriptors: Biotechnology, Grade 10, Grade 11, Grade 12
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Lindelani Mnguni – Journal of Baltic Science Education, 2018
The use of visual models in teaching, learning and research has increased. Consequently, students have to develop various new competencies including visual literacy in order to learn efficiently. However, visual literacy among biochemistry students is not well documented. Using quantitative research methodology, the current research was aimed at…
Descriptors: Biochemistry, Undergraduate Students, Visual Literacy, Spatial Ability
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Dries, Daniel R.; Dean, Diane M.; Listenberger, Laura L.; Novak, Walter R. P.; Franzen, Margaret A.; Craig, Paul A. – Biochemistry and Molecular Biology Education, 2017
A thorough understanding of the molecular biosciences requires the ability to visualize and manipulate molecules in order to interpret results or to generate hypotheses. While many instructors in biochemistry and molecular biology use visual representations, few indicate that they explicitly teach visual literacy. One reason is the need for a list…
Descriptors: Biochemistry, Visual Literacy, Molecular Biology, Science Instruction
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Rigsby, Rachel E.; Parker, Alison B. – Biochemistry and Molecular Biology Education, 2016
Visualization of chemical concepts can be challenging for many students. This is arguably a critical skill for beginning students of biochemistry to develop, since new information is often presented visually in the form of textbook figures. It is recommended that visual literacy be explicitly taught in the classroom rather than assuming that…
Descriptors: Science Instruction, Teaching Methods, Scientific Concepts, Biochemistry
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Oliver-Hoyo, Maria; Babilonia-Rosa, Melissa A. – Journal of Chemical Education, 2017
Decades of research have demonstrated the correlation of spatial abilities to chemistry achievement and career selection. Nonetheless, reviews have highlighted the need and scarcity of explicit spatial instruction to promote spatial skills. Therefore, the goal of this literature review is to summarize what has been done during the past decade in…
Descriptors: Spatial Ability, Chemistry, Biochemistry, College Science
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Offerdahl, Erika G.; Arneson, Jessie B.; Byrne, Nicholas – CBE - Life Sciences Education, 2017
The development of scientific visual literacy has been identified as critical to the training of tomorrow's scientists and citizens alike. Within the context of the molecular life sciences in particular, visual representations frequently incorporate various components, such as discipline-specific graphical and diagrammatic features, varied levels…
Descriptors: Undergraduate Students, Scaffolding (Teaching Technique), Visual Literacy, Scientific Literacy
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Herraez, Angel; Costa, Manuel Joao – Biochemistry and Molecular Biology Education, 2013
Several contributions in "Biochemistry and Molecular Biology Education" have highlighted the role of visualization tools and the importance of developing students' visual literacy in biochemistry education. In this forum, the authors suggest that more focus is needed on the assessment of student learning, and they advance…
Descriptors: Biochemistry, Visual Literacy, Alignment (Education), Student Evaluation
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Linenberger, Kimberly J.; Holme, Thomas A. – Journal of Chemical Education, 2014
Chemists and chemistry educators have long sought meaningful ways to visualize fundamentally abstract components, such as atoms and molecules, of their trade. As technology has improved, computer-based visualization methods have infused both research and education in chemistry. Biochemistry, in particular, has become highly dependent on ways that…
Descriptors: Biochemistry, Teacher Surveys, National Surveys, College Faculty
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Linenberger, Kimberly J.; Bretz, Stacey Lowery – Chemistry Education Research and Practice, 2012
This study explores what students understand about enzyme-substrate interactions, using multiple representations of the phenomenon. In this paper we describe our use of the 3 Phase-Single Interview Technique with multiple representations to generate cognitive dissonance within students in order to uncover misconceptions of enzyme-substrate…
Descriptors: Psychological Patterns, Biochemistry, Interviews, Misconceptions
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Linenberger, Kimberly J.; Holme, Thomas A. – Journal of Chemical Education, 2015
Biochemistry instructors are inundated with various representations from which to choose to depict biochemical phenomena. Because of the immense amount of visual know-how needed to be an expert biochemist in the 21st century, there have been calls for instructors to develop biochemistry students' visual literacy. However, visual literacy has…
Descriptors: Biochemistry, Visual Literacy, Teacher Attitudes, Skill Development
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Farley, Peter C. – Biochemistry and Molecular Biology Education, 2013
This article describes a novel approach to teaching novice Biochemistry students visual literacy skills and understanding of some aspects of protein structure using the internet resource FoldIt and a worksheet based on selected Introductory Puzzles from this computer game. In responding to a questionnaire, students indicated that they (94%)…
Descriptors: Learner Engagement, Nonmajors, Biochemistry, Motivation Techniques
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Towns, Marcy H.; Raker, Jeffrey R.; Becker, Nicole; Harle, Marissa; Sutcliffe, Jonathan – Chemistry Education Research and Practice, 2012
Visual literacy, the ability to interpret and create external representations (ERs), is essential to success in biochemistry. Studies have been conducted that describe students' abilities to use and interpret specific types of ERs. However, a framework for describing ERs derived through a naturalistic inquiry of biochemistry classrooms has not…
Descriptors: Taxonomy, Visual Aids, Visual Literacy, Classification
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Schonborn, Konrad J.; Anderson, Trevor R. – Biochemistry and Molecular Biology Education, 2010
External representations (ERs), such as diagrams, animations, and dynamic models are vital tools for communicating and constructing knowledge in biochemistry. To build a meaningful understanding of structure, function, and process, it is essential that students become visually literate by mastering key cognitive skills that are essential for…
Descriptors: Biochemistry, Visual Literacy, Thinking Skills, Influences
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Schonborn, Konrad J.; Anderson, Trevor R. – Biochemistry and Molecular Biology Education, 2006
Visualization is an essential skill for all students and biochemists studying and researching the molecular and cellular biosciences. In this study, we discuss the nature and importance of visualization in biochemistry education and argue that students should be explicitly taught visual literacy and the skills for using visualization tools as…
Descriptors: Visualization, Educational Resources, Biochemistry, Literacy