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Pate, Elizabeth; Nesin, Gert – Middle Grades Research Journal, 2011
These authors relate the ways in which curriculum integration is explored in 2 university middle grades programs. In these settings, curriculum integration is encountered both in the design and pedagogy of courses and as a discrete content area for preservice and inservice teachers. Background information about the courses, the application of…
Descriptors: Integrated Curriculum, Curriculum Development, Teacher Education, Middle School Teachers
Peer reviewedBond, Douglas – Journal of Chemical Education, 1989
Discusses changes made since the publication of "A Nation at Risk." Presents a chemistry course in which scientific literacy is a major emphasis. Provides methodology for the course and a listing of the topics for instruction. Notes several criticisms of the approach. (MVL)
Descriptors: Chemical Nomenclature, Chemical Reactions, Chemistry, Course Content
Schueler, Paul – 1994
In 1991, the New Jersey Board of Higher Education's College Outcomes Evaluation Program (COEP) was canceled due to lack of state funding. Despite the cancellation, 17 community colleges formed the New Jersey County College Project on General Education to develop goals, objectives, and assessment criteria for general education. The Project grounds…
Descriptors: Chemistry, College Outcomes Assessment, College Planning, Community Colleges
Peer reviewedJournal of Dental Education, 1984
The American Association of Dental Schools' guidelines for oral biology curriculum cover its scope, primary educational goals, prerequisites, sequencing, faculty, course content in each subarea (oral tissues and systems and oral diagnostic methodology), and specific behavioral objectives. (MSE)
Descriptors: Anatomy, Behavioral Objectives, Biology, Course Content
Peer reviewedCarlson, Elof Axel – New Directions for Teaching and Learning, 1984
Introductory courses in biology are often either designed for majors or watered-down versions for nonmajors that are not stimulating. A course developed for nonmajors emphasizes the relationship of biology to the human condition and focuses on five basic concepts while being flexible enough to adapt to new research and technology. (MSE)
Descriptors: Biology, College Curriculum, College Instruction, College Science
Peer reviewedMathison, Charter Innes – Journal of Geological Education, 1989
Asks the course planner, text writer, teacher, or even the student to consider a series of questions about Earth processes such as how, why, and where the process occurs and why is it important. Provides a guide for the coverage of a topic to ensure that nothing is overlooked. (Author/MVL)
Descriptors: Check Lists, Content Analysis, Course Content, Course Organization
Peer reviewedMoore, John W. – Journal of Chemical Education, 1989
Discusses several issues important to chemistry: enticing top-notch students into the discipline, keeping up with the tremendous growth of chemical information, and promoting chemistry to the general public. Suggests eight methods to answer these issues. (MVL)
Descriptors: Academically Gifted, Chemistry, College Science, Course Organization
Peer reviewedOrion, Nir – Journal of Geological Education, 1989
Describes a method of integrating a course syllabus with a field geological inventory of the surrounding area. Consists of three modules, each with a preparatory unit, field trip, and summary unit. Discusses first hand experiences, learning cycles, novelty factors, and moving from the concrete to abstract. (MVL)
Descriptors: Cognitive Development, Course Descriptions, Course Organization, Curriculum Development
Peer reviewedChemical and Engineering News, 1988
Announces a "user friendly" chemistry course for grades 10 to 12 for college bound students designed to enhance public understanding of chemistry. Discusses the development, field testing, and structure of the course. Stresses the importance of training teachers in the skills required to teach "Chemistry in the Community." (CW)
Descriptors: Advanced Courses, Chemistry, Course Content, Course Descriptions
Keogh, Kathleen; Sterling, Leon; Venables, Anne – Journal of Information Technology Education, 2007
Year-long team projects with external clients provide a well recognized opportunity for students to gain industry experience, whilst being supported and guided by staff to minimize risks. Each group should be supervised to ensure that they have enough direction and confidence to approach a new problem of significant size, without being daunted. A…
Descriptors: Feedback (Response), Student Projects, Urban Universities, Independent Study
Kalra, R. M. – 1974
The project aims to illustrate the extent of Native Indian scientific achievements and to correlate this information with the science concepts taught in schools; to make some practical suggestions to teachers and prospective teachers, in order to make science education more meaningful to Native Indian students; to propose a model of the process…
Descriptors: American Indians, Canada Natives, Community Influence, Course Content
Crandall, JoAnn, Ed.; And Others – 1987
Three essays focus on integrating subject matter and the English used to communicate it as a technique for teaching limited-English-proficient students. "Integrating Language and Mathematics Learning," by Theresa Corasaniti Dale and Gilberto J. Cuevas, discusses the vocabulary, syntax, semantics, and discourse features of mathematics;…
Descriptors: Academic Achievement, Classroom Communication, Classroom Techniques, Course Content
Snow, Marguerite Ann, Ed. – 1994
Project LEAP (Learning English-for-Academic-Purposes) is a three-year faculty development and supplemental instruction partnership to improve the academic literacy skills of native-born, immigrant, and international language minority students. This manual is the third set of faculty development materials produced by the project, presenting…
Descriptors: Anthropology, Biology, College Science, College Second Language Programs
Beauchamp, Wilbur L. – Office of Education, United States Department of the Interior, 1932
This investigation of the teaching of science in secondary schools is based upon the analysis of 58 courses in general science, 45 courses in biology, 27 courses in physics, and 30 courses in chemistry. The courses were obtained from schools in response to a request from the Office of Education for courses which had been revised since 1925. Some…
Descriptors: Educational History, National Surveys, School Statistics, Secondary Education

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