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Schwartz, Richard – Journal of Developmental & Remedial Education, 1981
Presents teaching techniques and ideas to motivate remedial and developmental students by relating mathematical concepts to real-world applications. Provides eight mathematical problems to be solved and discussed. Offers problems on such global issues as pollution, hunger, and war. Suggests ways of enhancing class interest. Lists resources for…
Descriptors: Community Colleges, Global Approach, Interdisciplinary Approach, Learning Activities
Peer reviewedMcConnell, Mary C. – Social Studies Review, 1980
Describes a curriculum which uses an interdisciplinary approach to help junior high school students understand some of the complex issues of life in modern, technologically-oriented societies. Presents worksheets and discussion questions from several of the 15 modules in the curriculum. (DB)
Descriptors: Adolescents, Educational Objectives, Energy, Interdisciplinary Approach
Peer reviewedMcKay, David A.; Jensen, Eric W. – Journal of Medical Education, 1980
The interdisciplinary seminar curriculum for postgraduate physicians entering a Robert Wood Johnson Clinical Scholars Program emphasizes independent research and an epidemiologic paradigm of analysis with a format that facilitates collegial learning among fellows and faculty in the diverse areas of biometrics, social, and management sciences.…
Descriptors: Administration, Administrator Education, Clinical Diagnosis, College Curriculum
Kendrick, Frank J. – Community College Social Science Journal, 1980
Describes an approach to teaching urban studies, in which students are required to complete an environmental impact study. Examines the social, economic, and environmental issues that this approach uncovers, and reports the outcomes of its application in an urban studies class at the University of Akron. (JP)
Descriptors: Class Activities, Experiential Learning, Higher Education, Interdisciplinary Approach
Van Patten, James J. – Viewpoints in Teaching and Learning, 1980
Two ongoing projects illustrate alternative delivery systems for translating educational theory into action. The curriculum classification system focuses on organizing the learning environment for personalizing and individualizing instruction. The second system explores the relation of thinking skills to academic performance and stresses the…
Descriptors: Academic Achievement, Critical Thinking, Curriculum Development, Delivery Systems
Peer reviewedStapp, William B.; And Others – Journal of Environmental Education, 1980
Based upon a survey of leading environmental educators in Europe, the author's report what should be and what is occurring in the preservice environmental education of European teachers. Also presented is an instructional model for preservice teacher education in this field. (Author/WB)
Descriptors: College Programs, Environmental Education, Higher Education, Instructional Design
Peer reviewedDavis, 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
Peer reviewedStrasheim, Lorraine A. – Foreign Language Annals, 1980
Discusses three obstacles to interdisciplinary cooperation in education: (1) compartmentalization of teachers and teaching, (2) reluctance of educators to tackle the problem, and (3) difficulties in intraschool and intrasystem communication. Recommends collecting, expanding, and sharing curricular components to achieve the goal. (PMJ)
Descriptors: Cooperation, Curriculum Design, Curriculum Development, Integrated Activities
Peer reviewedFrazier, Kenneth L. – Journal of Chemical Education, 1979
Presents an outline, a description, and a methodology for teaching a course in the history and philosophy of science to high school students. (Author/SA)
Descriptors: Chemistry, Course Descriptions, Instructional Materials, Interdisciplinary Approach
Peer reviewedD'Errico, Peter; And Others – Journal of Legal Education, 1976
Development of field work in law at the undergraduate level, use of new pedagogies, growth of interdisciplinary law study, and critique of legal formalism are central to the legal studies program at the University of Massachusetts at Amherst. Included here are program philosophy and requirements for the Bachelor's Degree in Legal Studies. (JT)
Descriptors: Bachelors Degrees, Degree Requirements, Field Experience Programs, Higher Education
Peer reviewedCriscuolo, Nicholas P.; Rossman, Jean – Clearing House, 1977
Descriptors: Educational Needs, Individualized Instruction, Inservice Teacher Education, Interdisciplinary Approach
Peer reviewedKain, Daniel L. – Research in Middle Level Education Quarterly, 1997
Used the critical incident technique to study conditions that encourage or discourage teacher collaboration. Found that time, training, and organizational support were crucial to collaboration. Lack of structured support, pressures to "cover" curriculum and conduct testing, and traditions of tracking and separate-subject instruction discouraged…
Descriptors: Critical Incidents Method, Interdisciplinary Approach, Intermediate Grades, Junior High Schools
Walmsley, Bonnie Brown; Camp, Anne-Marie – Instructor, 1997
Presents a cross-curricular theme unit on colors that includes a pullout poster and a resource list. Social studies activities highlight flags of the world. Science activities teach about colors of animals and the science of color. Language arts activities describe colorful language. Mathematics activities involve sorting and graphing colors. (SM)
Descriptors: Activity Units, Class Activities, Color, Interdisciplinary Approach
Peer reviewedTaylor, Joseph A.; Lunetta, Vincent N.; Dana, Thomas M.; Tasar, Mehmet F. – Journal of College Science Teaching, 2002
Describes an engineering course for education and other nonscience majors. In this course, students integrate basic principles of applied physical science and engineering to solve authentic design problems. Discusses the nature of the interactive and problem-based instructional format and its effects on developing students' scientific inquiry…
Descriptors: Course Descriptions, Curriculum Development, Engineering Education, Higher Education
Peer reviewedShaw, Jean M.; And Others – Teaching Children Mathematics, 1997
Describes a cooperative learning project with fourth-grade teachers and students. Discusses the K-W-D-L technique (what we know-what we want to know-what we did-what we learned) for mathematical problem solving. Concludes that having students write about their problem-solving experiences connects mathematics and communication skills and enhances…
Descriptors: Communication Skills, Cooperative Learning, Educational Strategies, Elementary Education


