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Walsh, John P.; Sun, Jerry Chih-Yuan; Riconscente, Michelle – CBE - Life Sciences Education, 2011
Digital technologies can improve student interest and knowledge in science. However, researching the vast number of websites devoted to science education and integrating them into undergraduate curricula is time-consuming. We developed an Adobe ColdFusion- and Adobe Flash-based system for simplifying the construction, use, and delivery of…
Descriptors: Curriculum Development, Undergraduate Students, Student Interests, Online Courses
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Sumter, Takita Felder; Owens, Patrick M. – Biochemistry and Molecular Biology Education, 2011
The need for a revised curriculum within the life sciences has been well-established. One strategy to improve student preparation in the life sciences is to redesign introductory courses like biology, chemistry, and physics so that they better reflect their disciplinary interdependence. We describe a medically relevant, context-based approach to…
Descriptors: Introductory Courses, Scientific Principles, Student Interests, Chemistry
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Penaluna, Andrew; Coates, Jackie; Penaluna, Kathryn – Education & Training, 2010
Purpose: Enabling entrepreneurial creativity is a key aim of UK Government; however, there is a dearth of constructively aligned models of teaching and assessment. This paper aims to introduce design-based pedagogies and to highlight cognitive approaches that develop innovative mindsets; it seeks to indicate their propensity for adoption in…
Descriptors: Evidence, Creativity, Leisure Time, Money Management
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Purdy, Noel; Morrison, Hugh – Oxford Review of Education, 2009
This paper critically examines the application of research into cognitive neuroscience to educational contexts. It first considers recent warnings from within the neuroscientific community itself about the limitations of current neuroscientific knowledge and the urgent need to dispel popular "neuromyths" which have become accepted in…
Descriptors: Foreign Countries, Brain, Research Utilization, Scientific Research
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Shapiro, Mark H. – American Journal of Physics, 1973
Descriptors: Biological Sciences, College Science, Curriculum Development, Instruction
Abrahamson, Stephen; Barrows, Howard S. – 1969
This report describes a curriculum development project aimed at improving the teaching of neurology to undergraduate medical students; and providing more effective instruction in neurology for the practicing physician. The project involved: (1) development of a balanced presentation of neurological teaching from undergraduate medical education…
Descriptors: Curriculum Development, Higher Education, Instructional Innovation, Medical Schools
Pellegrino, Ann S. – Gifted Child Today (GCT), 1992
Methods used to teach gifted junior high school students about the brain are described, focusing on aiming high, using real experiments, and considering ethical issues. Teaching average rather than gifted students requires different means to attain instructional goals and calls for challenging students but not overwhelming them. (JDD)
Descriptors: Brain Hemisphere Functions, Curriculum Development, Educational Objectives, Gifted
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Brodl, Mark R. – Bioscene: Journal of College Biology Teaching, 2005
This project presents a model for the development of an innovative, highly-experimental teaching laboratory course that centers upon collaborative efforts between recent alumni currently enrolled in Ph. D. programs (consultants) and current faculty. Because these consultants are involved in cutting-edge research, their combined talents represent a…
Descriptors: Consultants, Alumni, Neurology, Chemistry
Communicator, 1995
Four issues of this journal on gifted education published in 1995 focus on the following four topics respectively: (1) gifted students in the regular classroom; (2) brain research; (3) professional development; and (4) curriculum compacting. Major articles included are: "What Does the Research Say? Testing Your Knowledge About Gifted…
Descriptors: Acceleration (Education), Computer Assisted Instruction, Curriculum Development, Educational Needs