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Showing 1 to 15 of 18 results Save | Export
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Andrew J. Tonsager; Laurie A. Stargell – Biochemistry and Molecular Biology Education, 2025
CRISPR-Cas9 technology is an established, powerful tool for genome editing through the ability to target specific DNA sequences of interest for introduction of desired genetic modifications. CRISPR-Cas9 is utilized for a variety of purposes, ranging from a research molecular biology tool to treatment for human diseases. Due to its prominence…
Descriptors: Undergraduate Students, Student Research, Scientific Research, Genetics
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Caryn Babaian; Sudhir Kumar; Sayaka Miura – American Biology Teacher, 2025
Water is one of the most common molecules in the universe. Water is polarized, but it has many states besides the normal tetrahedron depicted in standard biology texts. Water is also the most ubiquitous molecule on Earth, the universal solvent. It is the internal and external habitat of cells. Ecologically, water is contiguous with life and the…
Descriptors: Biology, Evolution, Science Instruction, Water
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Marina Martínez-Carmona; G. Enrique Ayuso Fernández; Manuel Fernández-Díaz; Francisco Serrano-García; Antonia Plaza Griñán – Biochemistry and Molecular Biology Education, 2025
Knowledge about genetics is essential to build a society capable of participating in socioscientific and ethical debates. However, this subject remains difficult for students, making it necessary to develop new educational strategies, such as gamification. Thus, two main objectives are established in this work: (a) to design and evaluate…
Descriptors: Genetics, Science Instruction, Gamification, Game Based Learning
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Crystal Uminski; Dina L. Newman; L. Kate Wright – Journal of Microbiology & Biology Education, 2025
Scientific publications, textbooks, and online educational resources rely on illustrated figures to communicate about molecular structures like genes and chromosomes. Published figures have the potential to shape how learners think about these molecular structures and their functions, so it is important that figures are clear, unambiguous, and…
Descriptors: Publications, Molecular Structure, Misconceptions, Scientific Concepts
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Crystal Uminski; Dina L. Newman; L. Kate Wright – CBE - Life Sciences Education, 2025
Molecular biology can be challenging for undergraduate students because it requires visual literacy skills to interpret abstract representations of submicroscopic concepts, structures, and processes. The Conceptual-Reasoning-Mode framework suggests that visual literacy relies on applying conceptual knowledge to appropriately reason with the…
Descriptors: Visual Literacy, Student Attitudes, Molecular Biology, Genetics
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Crystal Uminski; L. Kate Wright; Dina L. Newman – Journal of Microbiology & Biology Education, 2025
Visual representations in molecular biology tend to follow a set of shared conventions for using certain shapes and symbols to convey information about the size and structure of nucleotides, genes, and chromosomes. Understanding how and why biologists use these conventions to represent DNA is a key part of visual literacy in molecular biology.…
Descriptors: Visual Aids, Molecular Biology, Freehand Drawing, Undergraduate Students
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Hannah K. Parker; Beth Zizzamia; Julie A. Pollock – Journal of Chemical Education, 2025
In a typical undergraduate biochemistry course, two main educational objectives include (1) understanding and applying how genetic mutations can influence protein structure and function, and (2) examining metabolic pathways of biomolecules to study cellular storage and fuel. Many times, these topics can seem disparate to students; therefore, we…
Descriptors: Undergraduate Students, College Science, Science Instruction, Biochemistry
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Nichole Orench-Rivera; April Bednarski; Paul Craig; Austin Talbot – Journal of College Science Teaching, 2025
Advancements in computation and machine learning have revolutionized science, enabling researchers to address once insurmountable challenges. Bioinformatics, a field that heavily relies on computer-driven analysis of biological data, has greatly benefited from these developments. However, traditional bioinformatics instruction frequently lacks the…
Descriptors: Coding, Computer Science Education, Integrated Curriculum, Programming
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Jinjie Liu; Christoph Benning – Biochemistry and Molecular Biology Education, 2025
Course-based undergraduate research experiences (CUREs) provide students with valuable opportunities to engage in research in a classroom setting, expanding access to research opportunities for undergraduates, fostering inclusive research and learning environments, and bridging the gap between the research and education communities. While…
Descriptors: Undergraduate Students, Undergraduate Study, Student Research, Biology
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Abhiru Chathurma Elaphatha; Meran Keshawa Ediriweera – Biochemistry and Molecular Biology Education, 2025
Glycosylation is a biologically significant post-translational modification (PTM) of proteins that involves the covalent attachment of a sugar molecule (a glycan) to a peptide sequence, resulting in the formation of glycoproteins. Glycomics and glycoproteomics involve the complete mapping of glycans of a cell, tissue, or organism.…
Descriptors: Data Analysis, Diseases, Computer Software, Computer Uses in Education
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Chris Della Vedova; Gareth Denyer; Maurizio Costabile – Biochemistry and Molecular Biology Education, 2025
Innovative approaches to teaching genetics are essential for improving student engagement and comprehension in this challenging field. Laboratory-based instruction enhances engagement with the subject while fostering the development of practical competencies and deepening comprehension of theoretical concepts. However, constraints on time and…
Descriptors: Undergraduate Students, Genetics, Science Instruction, Laboratory Experiments
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Isaac Akatamug Abugri; Kofi Acheaw Owusu – Electronic Journal for Research in Science & Mathematics Education, 2025
The 21st-century skills seek to develop learners who will be problem solvers in society. This paradigm shift requires the use of learner-centered strategies that emphasize collaborative problem-solving. To explore the effectiveness of such approaches, this study sought to determine how effective Wheatley's problem-centered approach would be in the…
Descriptors: Problem Solving, High School Students, Genetics, Science Instruction
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Zydrick L. Avelino – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2025
The study focused on the development of a website that can be used in various fields of science in Junior High School. Particularly, topics that were utilized as part of the re-search report include chromosomes, DNA, and genes for grade 9 learners. This exploratory case study explored learners' engagement and performance on a developed virtual…
Descriptors: Foreign Countries, Web Sites, Science Instruction, Grade 9
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Helen Semilarski; Helin Semilarski – Science & Education, 2025
Understanding genetic variation is important in science education and in today's world, for example, to respond to the changing environment and face species extinction. However, students often need help to grasp its importance and complexities due to fragmented knowledge and a need for more awareness of how different concepts are interconnected.…
Descriptors: Science Teachers, Teacher Attitudes, Concept Mapping, Genetics
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Sam Ramaila; Syamthanda Mpilwenhle Zondi; Lydia Mavuru – Journal of Teaching and Learning, 2025
This study explored the pedagogical strategies employed by grade 12, life-sciences teachers in township schools to teach complex concepts, such as genetics and meiosis, using improvised teaching resources. Resource constraints in South African township schools often limit learners' access to traditional teaching materials and technologies. In…
Descriptors: Genetics, Teaching Methods, Science Instruction, Grade 12
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