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Subramaniam, Karthigeyan – Journal of Biological Education, 2014
The purpose of this qualitative study was to investigate prospective biology teachers' conceptions of teaching biology and identify how these conceptions revealed their strategies for helping their future students' learning of biology. The study utilized drawings, narratives and interviews to investigate the nature of the prospective biology…
Descriptors: Student Teacher Attitudes, Biology, Qualitative Research, Secondary School Science
Falk, Hedda; Yarden, Anat – Journal of Biological Education, 2011
Different genres of scientific articles have begun to diffuse into science curricula. Among them, adapted primary literature (APL) retains the characteristics of scientific research articles, while adapting their contents to the knowledge level of students in the 11th to 12th grades. We present three models for the teaching and learning of the…
Descriptors: Scientific Research, Knowledge Level, Periodicals, Teaching Methods
Haugwitz, Marion; Sandmann, Angela – Journal of Biological Education, 2010
Understanding biological structures and functions is often difficult because of their complexity and micro-structure. For example, the vascular system is a complex and only partly visible system. Constructing models to better understand biological functions is seen as a suitable learning method. Models function as simplified versions of real…
Descriptors: Human Body, Grade 7, Secondary School Students, Biology
Lee, Yeung Chung – Journal of Biological Education, 2007
The ability to make informed decisions on science-related social issues is considered an important attribute of scientific literacy. Literature to inform science educators how to bridge the gap between rhetoric and practice--and to assist them in developing this attribute in their students--burgeons. In view of the great diversity of…
Descriptors: Evidence, Scientific Literacy, Decision Making, Science Education

Kirkpatrick, Gretchen; Orvis, Kathryn; Pittendrigh, Barry – Journal of Biological Education, 2002
Presents the Genomic Analogy Model for Educators (GAME) strategy for making concepts in genomics easily understandable for both students and the general population by using familiar objects and concepts associated with daily life. Uses web-based tutorials accompanied by laboratory exercises that are intended to be used by students studying…
Descriptors: Biotechnology, DNA, Genetics, Higher Education
Rothhaar, Rebecca; Pittendrigh, Barry R.; Orvis, Kathryn S. – Journal of Biological Education, 2006
Research in biotechnology is rapidly advancing; everyday, new and exciting discoveries are made. With this new technology there are also many safety and ethical questions, though, as well as the need for education. Alternative teaching methods may help to increase students' understanding of difficult concepts in all aspects of schooling, including…
Descriptors: Student Attitudes, Genetics, Biotechnology, Educational Technology
Corn, Joanie; Pittendrigh, Barry R.; Orvis, Kathryn S. – Journal of Biological Education, 2004
Studies have shown that there is usually a lack of understanding concerning the fields of genetics and genomics among high school students (Lewis and Wood-Robinson, 2000). A recent article (Kirkpatrick et al, 2002) introduced the GAME (Genomics Analogy Model for Educators) model and two of its components: (1) explaining sequencing technology with…
Descriptors: Municipalities, Genetics, Molecular Biology, High School Students

Gow, Mary M.; Nicholl, Desmond S. T. – Journal of Biological Education, 1988
Uses simple models to illustrate the principles of this genetic method of mapping gene loci. Stresses that this system enables a practical approach to be used with students who experience difficulty in understanding the concepts involved. (CW)
Descriptors: Biological Sciences, College Science, Genetics, Higher Education
Ungar, Eugene David; Seligman, Noam G.; Noy-Meir, Imanuel – Journal of Biological Education, 2004
We describe a simple, yet intellectually challenging model of grazing systems that introduces basic concepts in ecology and systems analysis. The practical is suitable for high-school and university curricula with a quantitative orientation, and requires only basic skills in mathematics and spreadsheet use. The model is based on Noy-Meir's (1975)…
Descriptors: Animals, Systems Analysis, Ecology, Mathematics Skills