Publication Date
In 2025 | 0 |
Since 2024 | 0 |
Since 2021 (last 5 years) | 1 |
Since 2016 (last 10 years) | 3 |
Since 2006 (last 20 years) | 7 |
Descriptor
Heredity | 16 |
Genetics | 15 |
Science Instruction | 12 |
Biology | 9 |
Science Education | 9 |
Secondary School Science | 9 |
Teaching Methods | 9 |
Scientific Concepts | 7 |
Elementary School Science | 5 |
Evolution | 4 |
Science Activities | 4 |
More ▼ |
Source
American Biology Teacher | 4 |
Journal of Biological… | 3 |
Science Teacher | 3 |
Science and Children | 3 |
Bioscience | 1 |
Primary Science Review | 1 |
Science Activities: Classroom… | 1 |
Author
Drits-Esser, Dina | 2 |
Malone, Molly | 2 |
Stark, Louisa A. | 2 |
Barnhart, Kelsi | 1 |
Bhattacharya, Devarati | 1 |
Bierzychudek, Paulette | 1 |
Bybee, Rodger W. | 1 |
Cisterna, Dante | 1 |
Coleman, Persis C. | 1 |
Farrar, Jennifer | 1 |
Forbes, Cory | 1 |
More ▼ |
Publication Type
Journal Articles | 16 |
Reports - Descriptive | 16 |
Guides - Classroom - Teacher | 2 |
Education Level
Elementary Education | 4 |
High Schools | 4 |
Early Childhood Education | 1 |
Elementary Secondary Education | 1 |
Grade 3 | 1 |
Middle Schools | 1 |
Primary Education | 1 |
Secondary Education | 1 |
Audience
Teachers | 16 |
Practitioners | 7 |
Administrators | 1 |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
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
Homburger, Sheila A.; Drits-Esser, Dina; Malone, Molly; Stark, Louisa A. – American Biology Teacher, 2021
Arguing from evidence is one of eight key science practices in which students should engage. It is an essential component of science, yet students have difficulties with this practice. We describe a scaffolded claims-evidence-reasoning (CER) argumentation framework that is embedded within a new eight-week, freely available curriculum unit…
Descriptors: Persuasive Discourse, Science Instruction, Evidence, Logical Thinking
Powell, Britnie; Malone, Molly; Drits-Esser, Dina; Stark, Louisa A. – Science and Children, 2018
The mechanics by which unique individuals are built from the instructions encoded in DNA is too advanced for elementary-age children. However, students can easily understand that organisms have observable traits and that each individual has a unique combination of traits, ideas that are included in the "Next Generation Science Standards"…
Descriptors: Science Instruction, Elementary School Science, Learning Activities, Genetics
Stansfield, William D. – American Biology Teacher, 2013
Before beginning a series of presentations on evolution, it would be prudent to survey the general level of students' understanding of prerequisite basic concepts of reproduction, heredity, ontology, and phenotypic diversity so that teachers can avoid devoting time to well-known subjects of general knowledge and can spend more time on subjects…
Descriptors: Heredity, Readiness, Evolution, Science Instruction
Meraw, Leonard J. – Science Activities: Classroom Projects and Curriculum Ideas, 2012
The article presents a simple and highly engaging activity for students involving DNA fingerprints, DNA bands, genotypes, phenotypes, and DNA morphology. The science of DNA fingerprinting, currently done by electrophoresis, extends to all living organisms containing DNA. (Contains 4 figures.)
Descriptors: Genetics, Science Education, Science Instruction, Science Curriculum
Bybee, Rodger W. – Science Teacher, 2013
Using the life sciences, this article first reviews essential features of the "NRC Framework for K-12 Science Education" that provided a foundation for the new standards. Second, the article describes the important features of life science standards for elementary, middle, and high school levels. Special attention is paid to the teaching…
Descriptors: Biological Sciences, Biology, Science Education, Elementary School Science
Farrar, Jennifer; Barnhart, Kelsi – Science Teacher, 2011
Chromosomes, alleles, chromatids, genotype, phenotype, mitosis, meiosis, fertilization--this vocabulary can be overwhelming, confusing, and difficult for students to tie together. However, since these terms are commonplace in the high school biology classroom, and are the basis for understanding both DNA and heredity, students must understand…
Descriptors: Biology, Genetics, Science Instruction, Heredity
Jones, Bridget – Primary Science Review, 2005
Each new baby is scrutinised and their facial features and other characteristics catalogued against known family members. This is essentially a social process: the new family member is recognised and accepted into the tribe. However, people's genetic inheritance--the information in their DNA--is also a serious matter with the potential to…
Descriptors: Genetics, Science Instruction, Elementary School Science, Teaching Methods

Goodspeed, James K. – Science and Children, 1985
Suggests activities designed to introduce elementary school students to the idea of inherited traits. Discusses dominant and recessive genes, genotypes and phenotypes, and such traits as attached earlobes, tongue-rolling, and widow's peak. (DH)
Descriptors: Biology, Elementary Education, Elementary School Science, Genetics

Journet, Alan R. P. – Science Teacher, 1984
Describes the use of a Pac-Man model (called a Pactype) in teaching various genetics concepts. Indicates that students can learn to make predictions, analyze patterns of inheritance, and evaluate hypotheses before being introduced to the genetics vocabulary. (JN)
Descriptors: Biology, DNA, Genetics, Heredity

Kinnear, Judith F. – Journal of Biological Education, 1986
Focuses on genetic concepts that form key components of transmission genetics and illustrates how the domestic cat can be used in the teaching of these concepts. Offers examples of how laboratory experiences with the cat can enhance student learning of genetics. (ML)
Descriptors: Biology, Genetics, Heredity, Laboratory Animals

Pearson, J. T.; Hughes, W. J. – Journal of Biological Education, 1986
Presents an overview of a genetics course including explanations of major concepts, principles, and sequencing methods. Describes the typical participating student's background and prior knowledge level. Appendices contain a list of terms and three concept maps. (ML)
Descriptors: Biology, Cognitive Development, Concept Teaching, Genetics

Hawkey, Roy – Journal of Biological Education, 1990
The porphyrias are a family of genetic disorders whose genetics and biochemistry are largely identified. Background information on these diseases are discussed including porphyrins, gene expression, population genetics, and historical significance. (CW)
Descriptors: Biochemistry, Biological Sciences, College Science, Diseases

Coleman, Persis C. – American Biology Teacher, 1989
Presented are arguments for the use of a case study approach for the teaching of human heredity. The design of case studies and related exercises is discussed. Five examples are given. A list of eight resources for case study samples is included. (CW)
Descriptors: Biological Sciences, Biology, Case Studies, College Science
Wefer, Stephen H. – American Biology Teacher, 2003
"Name That Gene" is a simple classroom activity that incorporates bioinformatics (available biological information) into the classroom using "Basic Logical Alignment Search Tool (BLAST)." An excellent classroom activity involving bioinformatics and "BLAST" has been previously explored using sequences from bacteria, but it is tailored for college…
Descriptors: Heredity, Scientific Research, Genetics, Scientific Literacy
Previous Page | Next Page ยป
Pages: 1 | 2