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Maloney, Mark; Parker, Jeffrey; LeBlanc, Mark; Woodard, Craig T.; Glackin, Mary; Hanrahan, Michael – CBE - Life Sciences Education, 2010
Recent advances involving high-throughput techniques for data generation and analysis have made familiarity with basic bioinformatics concepts and programs a necessity in the biological sciences. Undergraduate students increasingly need training in methods related to finding and retrieving information stored in vast databases. The rapid rise of…
Descriptors: Biology, Information Science, Undergraduate Study, Information Science Education
Pai, Aditi – Journal of Effective Teaching, 2009
The Biology department at Spelman, a historically black women's college has undertaken a major curriculum revision in the last few years. A primary goal of this revision is to increase the breadth of topics in biology classes. Historically, classes in the areas of ecology and evolution have been underrepresented whereas Spelman has always offered…
Descriptors: Black Colleges, Evolution, Advanced Courses, Biology
Regassa, Laura B.; Morrison-Shetlar, Alison I. – Journal of College Science Teaching, 2007
Inquiry-based learning was used to enhance an undergraduate molecular biology course at Georgia Southern University, a primarily undergraduate institution in rural southeast Georgia. The goal was to use a long-term, in-class project to accelerate higher-order thinking, thereby enabling students to problem solve and apply their knowledge to novel…
Descriptors: Molecular Biology, Hands on Science, Inquiry, Science Instruction
NIX, JACK P. – 1965
SUGGESTIONS FOR THE TEACHING OF SCIENCE IN GRADES 4-6 ARE INCLUDED IN THIS GUIDE FOR ELEMENTARY TEACHERS. INTRODUCTORY SECTIONS ARE DEVOTED TO (1) BASIC CONCEPTS AND UNDERSTANDINGS, (2) AN EXPLANATION OF THE STEPS INVOLVED IN PROBLEM-SOLVING, (3) A FORMAT FOR THE DEVELOPMENT OF TEACHING UNITS, (4) THE APPLICATION OF PROBLEM-SOLVING TECHNIQUES TO…
Descriptors: Bibliographies, Biology, Curriculum Development, Curriculum Guides
Georgia State Dept. of Education, Atlanta. Office of Instructional Services. – 1984
This six-chapter guide is designed to help Georgia teachers adopt or adapt various options into the local school's science curriculum. Major areas addressed in the chapters are: (1) secondary school curriculum development (focusing on performance objectives, sequencing the curriculum, evaluation, and scientific literacy); (2) teaching methods…
Descriptors: Biology, Chemistry, Classroom Techniques, Course Descriptions