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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
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
Gabriela L. Schmitz; Luana E. Joras; Pablo A. Nogara; Maria Eduarda A Galiciolli; Bruna C. Piccoli; Fernanda Davila da Silva; Cláudia S. Oliveira; João B. T. Rocha – Journal of Biological Education, 2024
Proteins are essential for cell function, and their biological performance depends on three-dimensional (3D) structures. Insulin is made up of 51 amino acids and is a critical hormone involved in glycaemia regulation. In basic education, concepts involving proteins (synthesis, structure, interactions, and function) are abstract and difficult for…
Descriptors: Science Instruction, Grade 9, Models, Physiology
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
Schmid, Kelly M.; Lee, Dennis; Weindling, Monica; Syed, Awais; Agyemang, Stephanie-Louise Yacoba; Donovan, Brian; Radick, Gregory; Smith, Michelle K. – Journal of Microbiology & Biology Education, 2022
Undergraduate genetics courses have historically focused on simple genetic models, rather than taking a more multifactorial approach where students explore how traits are influenced by a combination of genes, the environment, and gene-by-environment interactions. While a focus on simple genetic models can provide straightforward examples to…
Descriptors: Undergraduate Students, Genetics, Science Instruction, Models
Tate, Erika D.; Ibourk, Amal; McElhaney, Kevin W.; Feng, Mingyu – Journal of Science Education and Technology, 2020
We examined the sophistication of middle school students' mechanistic explanations of genetics phenomena and how they interact with a technology-based explanation tool as they articulate and organize their ideas about the phenomena. We coordinated curriculum and assessment design frameworks to develop a middle school curriculum unit that engages…
Descriptors: Middle School Students, Plants (Botany), Technology Uses in Education, Inquiry
Cisterna, Dante; Ingram, Erin; Bhattacharya, Devarati; Roy, Ranu; Forbes, Cory – Science and Children, 2020
A set of core ideas in the life sciences revolve around genetics, variation, and inheritance. While the "Next Generation Science Standards" (NGSS; NGSS Lead States 2013) emphasize teaching and learning about these concepts across K-12 grades, it is critical for early learners to begin to develop understanding of them. By the end of fifth…
Descriptors: Science Instruction, Plants (Botany), Genetics, Elementary School Science
Cameron, Kristina; Malone, Kathy L.; Sabree, Zakee; Schuchardt, Anita – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2023
The use of modeling-based instruction is very effective when learning science content in multiple disciplines for native speakers. However, the benefits of using this pedagogy with students learning English as a second language or English Learners (ELs) have not been widespread, especially at the upper secondary level. This article discusses the…
Descriptors: STEM Education, English Language Learners, Educational Benefits, Biology
Waal, Eric; Tran, Thomas; Abbondanza, Domenic; Dey, Arup; Peterson, Celeste – Biochemistry and Molecular Biology Education, 2019
The CRISPR/Cas9 system is a powerful tool for gene editing and it has become increasingly important for biology students to understand this emerging technique. Most CRISPR laboratory teaching modules use complex metazoan systems or mammalian cell culture which can be expensive. Here, we present a lab module that engages students in learning the…
Descriptors: Science Instruction, Biology, Science Laboratories, Teaching Methods
Ceyhan, Gaye D.; Lombardi, Doug; Saribas, Deniz – Journal of Science Teacher Education, 2021
A common practice amongst scientists is to evaluate the connections between evidence and claims about natural and human-induced phenomena. Teacher education coursework may improve understanding of this important activity and facilitate teachers to implement evidential thinking approaches into their future science teaching. Instructional scaffolds…
Descriptors: Preservice Teachers, Undergraduate Students, Young Adults, Science Education
Jungck, John R. – PRIMUS, 2022
Finite Mathematics has become an enormously rich and productive area of contemporary mathematical biology. Fortunately, educators have developed educational modules based upon many of the models that have used Finite Mathematics in mathematical biology research. A sufficient variety of computer modules that employ graph theory (phylogenetic trees,…
Descriptors: Mathematics Instruction, Teaching Methods, Mathematical Models, Learning Modules
Robertson, Carol – Science Teacher, 2018
How much do students really know about chromosomes? This article describes a partner activity and then a whole-class activity that use modeling to teach DNA replication, connect it to the shape of chromosomes during mitosis, and help students understand how daughter cells have the same DNA. Modeling is integral to science, helping students…
Descriptors: Science Instruction, Science Activities, Class Activities, Genetics
Tri Jalmo; Tri Suwandi – Journal of Baltic Science Education, 2018
This research aims to explore the concept of mental model of students about genetic concepts through drawing-writing test. The participants were 85 students of Biology Education at University of Lampung, which has taken genetics course. Mental model of students was categorized into five levels (levels 1-5) based on coding framework which was…
Descriptors: Genetics, Biology, Scientific Concepts, Concept Formation
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
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