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Mocan, Didem Kiliç – Science Insights Education Frontiers, 2021
Individuals with a secondary education should have a knowledge level sufficient to make sense of what they read or hear about genetics, and they should be able to think scientifically in evaluation and decision-making processes. The purpose of this study is to identify the basic understanding of secondary education students about genetic concepts…
Descriptors: Secondary School Students, Secondary School Science, Scientific Concepts, Concept Formation
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Zudaire, Isabel; Napal Fraile, María – Research in Science Education, 2021
Rapidly occurring advancements in molecular genetics, such as recent developments in epigenetics, are challenging traditional genetics as it is taught at schools. For example, the adoption of epigenetics--which provides molecular mechanisms for the environment to directly alter phenotypic variation--would mean that pivotal tenets in genetics…
Descriptors: Genetics, Secondary School Science, Secondary School Students, Grade 12
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Buske, Rodrigo; Bartholomei-Santos, Marlise Ladvocat – Journal of Biological Education, 2021
Genetics is an area that is increasingly important in people's daily lives. Despite this, its teaching/learning is among the most challenging topics in biology. Several instruments were created over a number of years to ascertain the quality of teaching and learning genetics. In our study, we created a specific instrument to investigate Mendelian…
Descriptors: Genetics, Science Instruction, Secondary School Science, Knowledge Level
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Stern, Florian; Kampourakis, Kostas; Delaval, Marine; Müller, Andreas – International Journal of Science Education, 2020
In this article, we describe the main phases in the development and validation of a questionnaire measuring secondary students' teleology and essentialism conceptions in the context of genetics. The validation process involved 714 Swiss and French secondary school students from 14 different schools. The process included interviews, several pilot…
Descriptors: Test Construction, Questionnaires, Secondary School Students, Scientific Concepts
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Apodaca, María José; McInerney, Joseph D.; Sala, Osvaldo E.; Katinas, Liliana; Crisci, Jorge V. – American Biology Teacher, 2019
Is it possible to teach biology without mentioning evolution? The answer is yes, but it is not possible for students to understand biology without the evolutionary context on which the meaning and intellectual value of biological concepts depend. Meaningful learning of evolution requires (1) that the students incorporate new knowledge into a…
Descriptors: Biology, Science Instruction, Evolution, Scientific Concepts
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He, Zhiyu; Ding, Shansen; Wang, Luyang; Wang, Guoqing; Liang, Xingguo; Takarada, Tohru; Maeda, Mizuo – Journal of Chemical Education, 2021
Demonstration of a colorimetric approach for nucleic acid detection represents an attractive educational experiment for chemistry undergraduate students in the time of coronavirus pandemic. Herein, a rapid and vivid detection method that visualizes the presence of a specific DNA sequence is described. The plasmon resonance of gold nanoparticles…
Descriptors: Science Instruction, College Science, Chemistry, Science Experiments
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Todd, Amber; Romine, William – CBE - Life Sciences Education, 2018
Modern genetics is a relatively new domain, but it is increasingly important for students to have a firm grasp on the content, because genetic technologies are becoming more commonplace. In a previous study, we used the Learning Progression-based Assessment of Modern Genetics to assess high school students' knowledge of genetics concepts after an…
Descriptors: High School Students, Genetics, Science Instruction, Retention (Psychology)
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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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Wanford, Joe; Aidley, Jack; Bayliss, Chris; Ketley, Julian; Goodwin, Mark – Journal of Biological Education, 2018
Mutation, diversity, natural selection and the biology of human pathogens (including antibiotic resistance) are key features of the biosciences curriculum at A Level and undergraduate study. Few resources exist to allow students to engage with these topics in an interactive manner. This paper describes an interactive, online simulation of mutation…
Descriptors: Biology, Science Instruction, College Science, Undergraduate Study
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Haskel-Ittah, Michal; Yarden, Anat – Science & Education, 2017
Previous studies have shown that students often ignore molecular mechanisms when describing genetic phenomena. Specifically, students tend to directly link genes to their encoded traits, ignoring the role of proteins as mediators in this process. We tested the ability of 10th grade students to connect genes to traits through proteins, using…
Descriptors: Science Instruction, Genetics, Grade 10, Secondary School Science
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Zeeh, Ann; Quell, Andrew – American Biology Teacher, 2015
Teachers are being challenged to engage students in ways that will elevate student interest and understanding of concepts in science and encourage students to gather evidence to support what we know about science. It is critical for teachers to have budget-friendly, supporting activities that are aligned with current educational standards, that…
Descriptors: Science Instruction, Scientific Concepts, Student Interests, Science Activities
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Hung, Venus; Fung, Dennis – Research in Science & Technological Education, 2017
Background: A teaching method to improve students' ability to communicate ideas in genetics across the macro-micro levels of organisation was investigated in this study. Purpose: It is designed to help students deconstruct the level of organisation of each tier of a genetic diagram, as the symbols used in such diagrams (i.e. lines and letters) can…
Descriptors: Teaching Methods, Genetics, Secondary School Science, Visualization
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Langheinrich, Jessica; Bogner, Franz X. – Biochemistry and Molecular Biology Education, 2015
As non-scientific conceptions interfere with learning processes, teachers need both, to know about them and to address them in their classrooms. For our study, based on 182 eleventh graders, we analyzed the level of conceptual understanding by implementing the "draw and write" technique during a computer-supported gene technology module.…
Descriptors: Genetics, Scientific Concepts, Grade 11, Concept Formation
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Kluge, Anders – International Journal of Science Education, 2014
This qualitative study investigates the gap between a lab experiment and theory of science. Two groups of 4 students in 2 different classes in 11th grade (15-16 years old) are followed as they process results and experiences from a lab experiment using a digital environment. The experiment is as a part of a larger project about genes and cells,…
Descriptors: Science Instruction, Qualitative Research, Laboratory Experiments, Science Experiments
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Taylor, D. Leland; Campbell, A. Malcolm; Heyer, Laurie J. – American Biology Teacher, 2013
Next-generation sequencing technologies have greatly reduced the cost of sequencing genomes. With the current sequencing technology, a genome is broken into fragments and sequenced, producing millions of "reads." A computer algorithm pieces these reads together in the genome assembly process. PHAST is a set of online modules…
Descriptors: Biology, Information Science, Genetics, Educational Technology
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