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Blough, Glenn O.; Blackwood, Paul E. – Office of Education, Federal Security Agency, 1948
This is intended to be a how-to-do guide for the elementary classroom teacher whose principal has recently said, "We usually teach more science. You know our children are living in a scientific age." It's for teachers who want to learn some down-to-earth things about how to begin to teach science if they don't know much subject matter,…
Descriptors: Educational History, Science Instruction, Elementary School Science, Teaching Methods
Burkam, David T.; Lee, Valerie E. – National Center for Education Statistics, 2003
This report describes efforts to create and test variables measuring students' high-school coursetaking in mathematics, foreign language, and science, using data from the National Education Longitudinal Study (NELS) NELS:88 transcript file (National Center for Education Statitstics (NCES) projects 1.2.4.13 and 1.2.4.39). The first project…
Descriptors: Course Selection (Students), High School Students, Mathematics Instruction, Second Language Instruction
Peer reviewedVolker, Eugene J. – Journal of College Science Teaching, 1983
Describes a course offered to elementary education majors that attempts to combine chemistry theory with practice teaching and strives to instill positive attitudes toward the value of science in elementary schools. Course topics, student presentations, classroom teaching experience, discussion/observations about the experiences, and final paper…
Descriptors: Chemistry, College Science, Course Descriptions, Elementary Education
Peer reviewedSwift, J. Nathan; Gooding, C. Thomas – Journal of Research in Science Teaching, 1983
Investigated effects of increasing middle school teachers' (N=40) wait time on general questioning skills in science teaching. Four groups (10 teachers each) were used: control; group receiving printed guides on discussion/techniques; group using an electronic feedback device; group using both guides and feedback device. Results, conclusions, and…
Descriptors: Elementary School Science, Elementary Secondary Education, Feedback, Middle Schools
Peer reviewedKrieger, James – Chemical and Engineering News, 1983
Evaluates influence of computer assisted instruction on engineering education, considering use of computers to remove burden of doing calculations and to provide interactive self-study programs of a tutorial/remedial nature. Cites universities requiring personal computer purchase, pointing out possibility for individualized design assignments.…
Descriptors: Chemical Engineering, College Science, Computer Assisted Instruction, Computer Oriented Programs
Peer reviewedKulik, James A. – Journal of Chemical Education, 1983
Meta-analytical procedures were used to review research studies dealing with Keller's Personalized System of Instruction (PSI), computer-based teaching, programed instruction, audio-tutorial instruction, and visual-based instruction. Results of most studies of student achievement and student ratings came out in favor of classes taught with these…
Descriptors: Academic Achievement, Chemistry, College Science, Computer Assisted Instruction
Peer reviewedDiehl-Jones, Susan M. – Journal of Chemical Education, 1983
Rationale, objectives, and instructional strategies for a directed study course on spectrophotometry are provided. Descriptions of three experiments and four student research projects are also provided. Objectives, laboratory procedures, advantages, and disadvantages for the experiments and projects are included. (JN)
Descriptors: Course Descriptions, High Schools, Laboratory Procedures, Science Curriculum
Mertens, Thomas R. – Phi Delta Kappan, 1983
The range, complexity, and rapid increase of controversial knowledge about human genetics require that students be taught the biomedical facts and ethical dilemmas. Human genetics education thus provides an excellent opportunity for increasing scientific literacy generally. (PB)
Descriptors: Biology, Controversial Issues (Course Content), Educational Improvement, Elementary Secondary Education
Peer reviewedOsborne, R. J.; Wittrock, M. C. – Science Education, 1983
The generative learning model is explored and linked to recent science education research findings. The implications of the model for the teaching and learning of science, the training of science teachers, and science educational research are discussed. (JN)
Descriptors: Cognitive Processes, Concept Formation, Elementary School Science, Elementary Secondary Education
Peer reviewedTate, Richard; Burkman, Ernest – Science Education, 1983
Examined interactive effects of direction source (teacher, student, or group direction), allocated time, reading ability, and study orientation on student achievement (N=1108) on three Individualized Science Instructional System (ISIS) minicourses. Results (among others) indicate superiority of student-directed approach over teacher/group-directed…
Descriptors: Academic Achievement, High Schools, Individualized Instruction, Reading Ability
Peer reviewedBailey, D. E.; Logan, P. F. – Physics Education, 1983
Describes characteristics of and instructional strategies related to an applied physics course offered by the New South Wales Institute of Technology in Sydney. The course has a number of unique features which enable its students to be of immediate use to industry upon graduation. (JN)
Descriptors: College Science, Course Content, Course Descriptions, Foreign Countries
Peer reviewedSmith, Richard L. – Journal of Computers in Mathematics and Science Teaching, 1983
Provides an annotated list of 25 references on various aspects of computer uses in chemical education. Includes sources for programs, instructional strategies, research studies, laboratory use, and integrating computers into the chemistry curriculum. (JN)
Descriptors: Annotated Bibliographies, Chemistry, College Science, Computer Assisted Instruction
Holbrow, C. H. – Weaver of Information and Perspectives on Technological Literacy, 1983
A course was developed to teach physics concepts and to help students understand mathematics, the nature and role of engineers and engineering in society, and to distinguish between science/technology from pseudo-science. Includes course goals/content, mechanics, start-up, and long-term projects. (JN)
Descriptors: College Science, Course Descriptions, Engineering Education, Higher Education
Peer reviewedNorris, Robert M. – Journal of Geological Education, 1983
Describes field course which emphasizes mapping techniques and preparation of a field report. Includes course methods/procedures, course schedule (broken down by weeks), grading practices/methods, student response to and performance in the course, nature of field area studied, and comments to those who may want to adapt such a course. (JN)
Descriptors: Cartography, College Science, Course Descriptions, Course Evaluation
Peer reviewedBurger, H. Robert – Journal of Geological Education, 1983
Part 1 (SE 533 635) presented programs for use in mineralogy, petrology, and geochemistry. This part presents an annotated list of 64 additional programs, focusing on introductory geology, mapping, and statistical packages for geological analyses. A brief description, source, suggested use(s), programing language, and other information are…
Descriptors: Cartography, College Science, Computer Assisted Instruction, Computer Graphics


