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Showing all 14 results Save | Export
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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
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Procko, Carl; Morrison, Steven; Dunar, Courtney; Mills, Sara; Maldonado, Brianna; Cockrum, Carlee; Peters, Nathan Emmanuel; Huang, Shao-shan Carol; Chory, Joanne – CBE - Life Sciences Education, 2019
Next-generation sequencing (NGS)-based methods are revolutionizing biology. Their prevalence requires biologists to be increasingly knowledgeable about computational methods to manage the enormous scale of data. As such, early introduction to NGS analysis and conceptual connection to wet-lab experiments is crucial for training young scientists.…
Descriptors: Undergraduate Students, Data Analysis, Biology, Information Science
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Flinn, Kathryn M. – American Biology Teacher, 2015
In this classroom activity, students build a phylogeny for woody plant species based on the morphology of their twigs. Using any available twigs, students can practice the process of cladistics to test evolutionary hypotheses for real organisms. They identify homologous characters, determine polarity through outgroup comparison, and construct a…
Descriptors: Class Activities, Science Activities, Teaching Methods, Educational Strategies
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Rouziere, A.-S.; Redman, J. E. – Biochemistry and Molecular Biology Education, 2011
Gel electrophoresis DNA fingerprints offer a graphical and visually appealing illumination of the similarities and differences between DNA sequences of different species and individuals. A polymerase chain reaction (PCR) and restriction digest protocol was designed to give high-school students the opportunity to generate simple fingerprints of…
Descriptors: Genetics, Plants (Botany), Molecular Biology, High School Students
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Smith, Robert A.; Belzer, Norbert F. – American Biology Teacher, 2002
Presents a tobacco haploid experiment in which students learn the cytogenetic technique of metaphase analysis of chromosomes and experience the basic principles of haploidy, diploidy, and polyploidy. (YDS)
Descriptors: Biology, Cytology, Genetics, Laboratory Experiments
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Calie, Patrick J. – American Biology Teacher, 2005
A modification of the popular C-Fern system, the tropical fern Ceratopteris richardii is developed in which students plate out a genetically mixed set of fern spores and then select for specific mutants. This exercise can provide students with an experience in plant mutant selection and can be used as a platform to expose students to a diverse…
Descriptors: Science Education, Science Activities, Plants (Botany), Genetics
Bilodeau, Kirsten – Clearing, 1997
Describes an activity used at the Washington Park Arboretum that helps students understand cloning through plant propagation. Students also learn how to make a pot from recycled newspapers and how to make soil that is appropriate for the plants. (DDR)
Descriptors: Biology, Genetics, Laboratory Equipment, Learning Strategies
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Tomkins, Stephen P.; Williams, Paul H. – Journal of Biological Education, 1990
Rapid-cycling brassicas can be used in the classroom to teach concepts such as plant growth, tropisms, floral reproduction, pollination, embryonic development, and plant genetics. Directions on how to obtain them for classroom use and how they may be grown are included. Practical physiology and genetics exercises are listed. (KR)
Descriptors: Biology, Culturing Techniques, Genetics, Laboratory Procedures
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Matlack, Christopher R. – American Biology Teacher, 1998
Explains a way to grow fern gametophytes and describes the use of these gametophytes to enable students to grasp the concept of alternation of generations. (DDR)
Descriptors: Biology, Ecology, Genetics, Higher Education
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Mitchell, Richard – Science Teacher, 2000
Presents a soybean project designed with an interdisciplinary approach that includes the stages of planting soybeans, studying the impact of rhizobium bacteria on soybean root development, synthesizing the raw oil to methyl ester, testing of biodiesel on a hybrid electric car, and studying the commodities market. Integrates plant science,…
Descriptors: Chemistry, Constructivism (Learning), Genetics, High Schools
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Clifford, Paul; Oxlade, Edwin – American Biology Teacher, 1998
Discusses practical work which can be completed in a few hours that enables students to explore the genetics of the dandelion plant, which reproduces asexually. Dandelions, measuring instruments, and student imagination are needed for this activity. (DDR)
Descriptors: Biology, College Curriculum, Environmental Education, Genetics
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Hunter, Kimberly L.; Leone, Rebecca S.; Kohlhepp, Kimberly; Hunter, Richard B. – American Biology Teacher, 2002
Describes a science activity on polyploidy targeting middle and high school students which can be used to discuss topics such as chromosomes, cells, plant growth, and functions of stomates. Integrates mathematics in data collection. (Contains 13 references.) (YDS)
Descriptors: Data Collection, Genetics, Hands on Science, High Schools
Bellamy, Mary Louise Ed.; Frame, Kathy Ed. – 1995
This document contains hands-on, open-ended laboratory activities that can be done in the classroom on a shoestring budget. They are aimed at increasing students' excitement and curiosity about science and enabling them to develop a better understanding of the nature of science, take an active role in their own learning process, and develop…
Descriptors: Animals, Biology, Constructivism (Learning), Cooperative Learning
Reames, Spencer E., Comp. – 1993
Because of the daily impact of biotechnology, it is important that students have some knowledge and experience with biotechnology in order to enable them to deal with the issues that arise as a result of its implementation. The purpose of this workbook is to assist in the efforts to expose students to the concepts of biotechnology through hands-on…
Descriptors: Biochemistry, Biology, Biotechnology, Cytology