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Partnership for 21st Century Skills, 2008
This 21st Century Skills Map is the result of hundreds of hours of research, development and feedback from educators and business leaders across the nation. The Partnership for 21st Century Skills has issued this map for the core subject of Science.
Descriptors: Core Curriculum, Science Education, Skill Development, Critical Thinking
Peer reviewedPoduska, Ervin L.; Lunetta, Vincent N. – Physics Education, 1984
Examines the extent to which technology and applied physics should be included in introductory physics courses. Areas explored include the meaning of applied physics, the nature of pure and applied physics, and applied physics as viewed by a scientist, an educator, and society. Implications for the physics curriculum are addressed. (JN)
Descriptors: College Science, Curriculum Development, Curriculum Problems, Higher Education
Peer reviewedPaull, Richard A. – Journal of Geological Education, 1990
The improvement and revitalization of academic geology departments is discussed. A view of a balanced department including rationale, faculty, and staff is provided. Projections of the future supply of geology faculty and students are presented. (CW)
Descriptors: College Science, Demand Occupations, Earth Science, Educational Improvement
Yager, Robert E. – NASSP Curriculum Report, 1993
As the nation's schools respond to calls for improved science education, educators are faced with the challenge of making what is learned in the classroom applicable to what is happening in society. This newsletter article discusses constructive and erroneous definitions of science, identifies several national reform efforts in the area of science…
Descriptors: Curriculum Development, Educational Quality, High Schools, Junior High Schools
Peer reviewedAdigwe, J. C. – Research in Science and Technological Education, 1992
Reports on specific problem-solving difficulties of 240 chemistry teachers from 5 Nigerian states who volunteered to take part in 3 written tests and an interview. Describes the contrasts between successful and unsuccessful problem solvers, and discusses the pedagogical and psychological implications of the findings. (16 references) (JJK)
Descriptors: Chemistry, Cognitive Processes, Foreign Countries, Mathematics Tests
Gaffney, Nancy A. – 1991
Papers and panel discussions on a wide range of issues of concern to practitioners in the field of graduate education are presented in this conference report. The publication begins with the program of the meeting and then goes on to report the substance of three plenary and three concurrent sessions. Session titles are as follows: "A…
Descriptors: Codes of Ethics, Cultural Pluralism, Engineering Education, Financial Exigency
Peer reviewedAnderson, Ronald D. – Journal of Research in Science Teaching, 1990
Described is a cost-effectiveness analysis applied to the question of the probable impact of 69 actions advocated for improving science education. The major objectives and the 11 categories of interventions are discussed in regard to effective schools and implementing educational change. (KR)
Descriptors: Cost Effectiveness, Decision Making, Educational Policy, Elementary School Science
Tasker, Ross; And Others – 1979
The first (exploratory) phase of the Learning in Science Project focused on science teaching/learning in the Form 1 to 4 level (ages 10 to 14) and sought to identify problems and difficulties in several areas. Provided in this paper are comments obtained during structured/unstructured interviews (from students, ex-students, teachers, headmasters,…
Descriptors: Academic Achievement, Curriculum Development, Elementary School Science, Elementary Secondary Education
United States Patent Model Foundation, Alexander, VA. – 1988
The Invent America program addresses the need to provide K-8 students with opportunities to learn critical and creative thinking skills through the process of inventing. Students apply problem-solving skills as they turn their own creative ideas into inventions. It is an effort to integrate the curriculum, help students synthesize knowledge, and…
Descriptors: Creative Thinking, Creativity, Discovery Processes, Elementary Education
United States Patent Model Foundation, Alexander, VA. – 1988
The Invent America program addresses the need to provide K-8 students with opportunities to learn critical and creative thinking skills through the process of inventing. Students apply problem-solving skills as they turn their own creative ideas into inventions. It is an effort to integrate the curriculum, help students synthesize knowledge, and…
Descriptors: Creative Thinking, Creativity, Discovery Processes, Elementary Education
United States Patent Model Foundation, Alexander, VA. – 1988
The Invent America program addresses the need to provide K-8 students with opportunities to learn critical and creative thinking skills through the process of inventing. Students apply problem-solving skills as they turn their own creative ideas into inventions. It is an effort to integrate the curriculum, help students synthesize knowledge, and…
Descriptors: Creative Thinking, Creativity, Discovery Processes, Elementary Education
United States Patent Model Foundation, Alexander, VA. – 1988
The Invent America program addresses the need to provide K-8 students with opportunities to learn critical and creative thinking skills through the process of inventing. Students apply problem-solving skills as they turn their own creative ideas into inventions. It is an effort to integrate the curriculum, help students synthesize knowledge, and…
Descriptors: Creative Thinking, Creativity, Discovery Processes, Elementary Education
New York State Education Dept., Albany. Div. of Program Development. – 1985
This four-part publication is designed to assist New York school personnel in designing local elementary science programs that will help students increase their scientific literacy. Part I addresses various topics related to implementing a local elementary science program, considering local planning, Regents goals, science instruction, time…
Descriptors: Biological Sciences, Course Descriptions, Elementary Education, Elementary School Science
North Dakota State Dept. of Public Instruction, Bismarck. – 1988
It is often claimed that students must have a thorough understanding of the processes of science to understand the constant changes in scientific theories and make meaningful decisions. This curriculum guide has five major parts including goals and objectives of elementary school science, problem solving, suggested scope and sequence,…
Descriptors: Biological Sciences, Disabilities, Earth Science, Elementary Education
Peer reviewedBladh, Katherine Laing – Journal of Geological Education, 1990
An interdisciplinary approach to problem solving which may be used in liberal arts colleges is described. Course content, class members, classroom environment, goals, teaching approach, course format, and the results of this approach at one college are discussed. Lists of documents, articles, movies, books, and information resources are provided.…
Descriptors: Civil Defense, College Science, Course Content, Educational Environment
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