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Showing 1 to 15 of 31 results Save | Export
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Karaismailoglu, Fatma; Yildirim, Mehtap – Biochemistry and Molecular Biology Education, 2023
This article presents the integration of Tinkercad, a free online modeling program that allows students to model molecular genetic concepts, into the distance learning process. The students had the opportunity to learn molecular genetics in a fun and more efficient way in spite of the limitations of the COVID-19 lockdown, and, in this respect, it…
Descriptors: Models, Genetics, Molecular Structure, Scientific Concepts
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Jiro Kondo; Shota Nakamura – Journal of Chemical Education, 2023
The use of molecular models in chemistry and biochemistry classes is very effective in helping students understand covalent bonds and the chemical structure of molecules. However, conventional molecular models cannot represent intermolecular interactions such as hydrogen bonds and electrostatic interactions. Herein, we describe 3D printed…
Descriptors: Chemistry, Molecular Structure, Scientific Concepts, Biochemistry
Salvatore G. Garofalo – ProQuest LLC, 2022
This study examined the effectiveness of three instructional and assessment strategies on conceptual understanding of the DNA molecule. Specifically, a model building task was utilized to determine if physical model construction, digital model construction with a touchscreen tablet computer, or paper worksheet activity effected conceptual…
Descriptors: Concept Formation, Geometric Concepts, Models, Computer Simulation
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Forbes-Lorman, Robin; Korb, Michele; Moser, Amy; Franzen, Margaret A.; Harris, Michelle A. – Journal of College Science Teaching, 2022
Physical and life science disciplines emphasize how basic structural units influence function, yet it is challenging for students to understand structure-function relationships, particularly at molecular scales. Undergraduates in our biology capstone course struggled to connect mutations in a gene encoding a key protein in a cell development…
Descriptors: Formative Evaluation, Science Education, Undergraduate Students, Summative Evaluation
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Church, Jessica A.; Grigorenko, Elena L.; Fletcher, Jack M. – Reading Research Quarterly, 2023
To learn to read, the brain must repurpose neural systems for oral language and visual processing to mediate written language. We begin with a description of computational models for how alphabetic written language is processed. Next, we explain the roles of a dorsal sublexical system in the brain that relates print and speech, a ventral lexical…
Descriptors: Genetics, Brain Hemisphere Functions, Reading Processes, Oral Language
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Cooper, A. Kat; Oliver-Hoyo, M. T. – Biochemistry and Molecular Biology Education, 2017
The high degree of complexity of macromolecular structure is extremely difficult for students to process. Students struggle to translate the simplified two-dimensional representations commonly used in biochemistry instruction to three-dimensional aspects crucial in understanding structure-property relationships. We designed four different physical…
Descriptors: Models, Molecular Structure, Biochemistry, Science Instruction
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Lucas, Krista L. – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2021
Molecular processes are highly complex, and are frequently difficult for high school and college students to comprehend. Because of the importance of visualization in learning, along with formative assessment of student understanding, utilization of 3D modeling software aids both educators and students alike. The activity described below required…
Descriptors: Molecular Biology, Science Instruction, Teaching Methods, Scientific Concepts
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Stasinakis, Panagiotis K.; Nicolaou, Despoina – Biochemistry and Molecular Biology Education, 2017
The molecular structure of living organisms and the complex interactions amongst its components are the basis for the diversity observed at the macroscopic level. Proteins and nucleic acids are some of the major molecular components, and play a key role in several biological functions, such as those of development and evolution. This article…
Descriptors: Models, Genetics, Molecular Structure, Molecular Biology
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Smolen, Paul; Baxter, Douglas A.; Byrne, John H. – Learning & Memory, 2016
With memory encoding reliant on persistent changes in the properties of synapses, a key question is how can memories be maintained from days to months or a lifetime given molecular turnover? It is likely that positive feedback loops are necessary to persistently maintain the strength of synapses that participate in encoding. Such feedback may…
Descriptors: Long Term Memory, Models, Molecular Structure, Feedback (Response)
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Cintamulya, Imas; Mawartiningsih, Lilik – Asia-Pacific Forum on Science Learning and Teaching, 2018
The plant taxonomy textbooks that are generally used in colleges need to be complemented with a DNA-based molecular review. In general, plant taxonomy textbooks devote more space to morphology than to molecular-level characteristics. The research reported here used the results of DNA-based research to develop a molecular plant taxonomy textbook.…
Descriptors: Genetics, Biology, Science Instruction, Molecular Structure
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Jalil, Sajiya J.; Sacktor, Todd Charlton; Shouval, Harel Z. – Learning & Memory, 2015
Memories that last a lifetime are thought to be stored, at least in part, as persistent enhancement of the strength of particular synapses. The synaptic mechanism of these persistent changes, late long-term potentiation (L-LTP), depends on the state and number of specific synaptic proteins. Synaptic proteins, however, have limited dwell times due…
Descriptors: Long Term Memory, Brain Hemisphere Functions, Neurological Organization, Maintenance
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Forbes-Lorman, Robin M.; Harris, Michelle A.; Chang, Wesley S.; Dent, Erik W.; Nordheim, Erik V.; Franzen, Margaret A. – Biochemistry and Molecular Biology Education, 2016
Understanding how basic structural units influence function is identified as a foundational/core concept for undergraduate biological and biochemical literacy. It is essential for students to understand this concept at all size scales, but it is often more difficult for students to understand structure-function relationships at the molecular…
Descriptors: Gender Differences, Models, Genetics, Undergraduate Students
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Selvarajah, Geeta; Selvarajah, Susila – Biochemistry and Molecular Biology Education, 2016
Students frequently expressed difficulty in understanding the molecular mechanisms involved in chromosomal recombination. Therefore, we explored alternative methods for presenting the two concepts of the double-strand break model: Holliday junction and heteroduplex formation, and Holliday junction resolution. In addition to a lecture and…
Descriptors: Genetics, Molecular Structure, Scientific Concepts, Models
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Reinagel, Adam; Speth, Elena Bray – CBE - Life Sciences Education, 2016
In an introductory biology course, we implemented a learner-centered, model-based pedagogy that frequently engaged students in building conceptual models to explain how genes determine phenotypes. Model-building tasks were incorporated within case studies and aimed at eliciting students' understanding of 1) the origin of variation in a population…
Descriptors: Science Instruction, Genetics, Biology, Introductory Courses
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Klymkowsky, Michael W.; Rentsch, Jeremy D.; Begovic, Emina; Cooper, Melanie M. – CBE - Life Sciences Education, 2016
Many introductory biology courses amount to superficial surveys of disconnected topics. Often, foundational observations and the concepts derived from them and students' ability to use these ideas appropriately are overlooked, leading to unrealistic expectations and unrecognized learning obstacles. The result can be a focus on memorization at the…
Descriptors: Science Instruction, Biology, Educational Change, Introductory Courses
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