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Barella, A.; Valero, S.; Carrascosa, C. – IEEE Transactions on Education, 2009
This paper presents a new environment for teaching practical work in AI subjects. The main purpose of this environment is to make AI techniques more appealing to students and to facilitate the use of the toolkits which are currently widely used in research and development. This new environment has a toolkit for developing and executing agents,…
Descriptors: Research and Development, Science Education, Case Studies, Teaching Methods
Belanger, Kenneth D. – CBE - Life Sciences Education, 2009
Inquiry-driven lab exercises require students to think carefully about a question, carry out an investigation of that question, and critically analyze the results of their investigation. Here, we describe the implementation and assessment of an inquiry-based laboratory exercise in which students obtain and analyze novel data that contribute to our…
Descriptors: Scientific Research, Investigations, Molecular Biology, Data Analysis

Deming, Richard L.; And Others – Journal of Chemical Education, 1982
To remedy certain deficiencies, an instrument analysis course was reorganized into six one-unit modules: optical spectroscopy, magnetic resonance, separations, electrochemistry, radiochemistry, and computers and interfacing. Selected aspects of the course are discussed. (SK)
Descriptors: Chemistry, College Science, Course Descriptions, Higher Education

Ward, L. – Physics Education, 1978
Describes a modular degree course in sciences. States the modules taken in physics in each of the three years program. (GA)
Descriptors: College Science, Course Descriptions, Curriculum, Elective Courses

Hammond, R. A.; Roach, D. K. – Journal of Biological Education, 1978
Describes a first-year zoology course at University College Cardiff based on a self-instructional system using printed texts, audiovisual programs, and integrated practical work. (Author/BB)
Descriptors: Biology, College Science, Course Content, Course Descriptions

Page, Ray; And Others – Research in Science and Technological Education, 1983
Discusses aims and objectives of the "Modular Courses in Technology" project. Project aims include developing intellectual ability in a technological context and practical technological skills. Modules, module format, different approaches in forming examination syllabi, and other areas are considered. (JN)
Descriptors: Course Descriptions, Curriculum Development, Foreign Countries, Learning Modules

Dubowsky, Nathan; Hartman, Elliott M., Jr. – Journal of College Science Teaching, 1981
Briefly describes a module on the origin of life formulated for inclusion in introductory biology, geology, and astronomy courses. The authors are preparing a concise monograph on the topic to complement the three-week module. (Author/SK)
Descriptors: Astronomy, Biology, College Science, Course Descriptions

McFarland, E. L.; And Others – American Journal of Physics, 1978
Describes the development and operation of a college biophysics course as well as the educational materials used, the structure of the modules and the performance of the students. Also discusses the economics of such a flexible system of instruction. (GA)
Descriptors: Biophysics, College Science, Course Descriptions, Curriculum Development

Cange, Francis – Physics Teacher, 1985
Project Physics is taught at Gibault High School (Waterloo, IL) using a modular schedule and learning activity packets. A description of the course, instructional strategies used, and the learning activity packets is provided. (JN)
Descriptors: Course Descriptions, Flexible Scheduling, High Schools, Individualized Instruction

Wright, Richard D. – Journal of College Science Teaching, 1978
Presents guidelines and content description of a course in electron microscopy. Discusses three types of learning modules: material preparation, instrumentation, and information processing. (MA)
Descriptors: Biology, Course Descriptions, Higher Education, Laboratory Techniques

Ariel, Magda; And Others – European Journal of Science Education, 1982
A two-semester basic chemistry course for nonchemistry engineering majors is described. First semester provides introductory chemistry for freshmen while second semester is "customer-oriented," based on a departmental choice of three out of six independent modules. For example, aeronautical engineering "customers" would select…
Descriptors: Chemistry, College Science, Course Descriptions, Engineering Education

Brown, Martin; McMahon, Harry – Physics Education, 1979
Describes the structure of a physics course organized into independent-learning modules and designed to make use of the facilities of a Computer Assisted Management of Learning (CAMOL) package. (GA)
Descriptors: Computer Assisted Instruction, Course Descriptions, Curriculum Development, Individualized Instruction

Bryant, Anne – Science Teacher, 1974
Descriptors: Biology, Course Content, Course Descriptions, Learning Modules

Davis, William E., Jr.; Richter, Peyton E. – Journal of College Science Teaching, 1981
Describes an interdisciplinary science and humanities curriculum for sophomores developed by the faculty at Boston University's College of Basic Studies. Three core courses (science, social studies, and humanities) are integrated into a year-long course which is team taught. The format includes both lecture and modular teaching approaches. (DS)
Descriptors: Course Descriptions, Curriculum Design, Higher Education, Humanities
Hutchinson, John, Ed. – 1987
This guide describes an introductory course on technology designed for the secondary schools of New Jersey that was developed to provide students with their first formal experience in a technology program. Part 1 provides educators with a broad overview of the course, as well as a detailed description of the course content. The course consists of…
Descriptors: Course Content, Course Descriptions, Instructional Materials, Learning Modules
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