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Estes, Fred; Dettloff, Lisa – Understanding Our Gifted, 2008
Many teachers struggle with meeting the needs of their most talented science students. How can these gifted students be challenged and learn as fast as they are able, especially in a classroom with a wide variety of abilities and interest in science? Many excellent teachers have found the answers in differentiating instruction by adding the…
Descriptors: Advanced Students, Academically Gifted, Science Interests, Scientific Concepts
Henderson, Stephen A. – 1973
This paper advocates the use of independent research projects as a practical means of individualizing science instruction within the framework of a traditional school program. The science program at Model Laboratory School, Eastern Kentucky University, Richmond, Kentucky, is discussed as an example of independent study being an integral part of…
Descriptors: Independent Study, Individualized Instruction, Instruction, Research Projects
Peer reviewedKronin, Edward – Science and Children, 1974
Describes a middle school science program that emphasizes choices, diverse potential experiences, independent study, and individualization. (JR)
Descriptors: Course Descriptions, Independent Study, Individualized Instruction, Individualized Programs
Peer reviewedFaber, Gary C.; Martin, Elizabeth M. – Journal of College Science Teaching, 1983
Citing problems with a traditional introductory chemistry laboratory program, discusses a two-semester, project-oriented laboratory program using traditional experiments. A series of slide/tape programs discussing/illustrating potentially difficult concepts and techniques is used to facilitate instruction. Includes list of topics covered in the…
Descriptors: Audiovisual Aids, Chemistry, College Science, Higher Education
Peer reviewedCochran, Cheryl – Science and Children, 1979
Through the use of science-reading kits, one teacher develops practical application of children's reading skills. Each child designs and builds appropriate materials for science learning kit on the subject of his/her choice. (SA)
Descriptors: Classroom Techniques, Elementary Education, Elementary School Science, Individualized Instruction
Peer reviewedHickey, M. Gail – Science Activities, 1992
Uses shoeboxes to set up science kits to supplement specific areas of the science curriculum. Each kit contains a set of material and instructions for a single activity. The activity is intended as an individualized experience that is related to a current topic of study or that reinforces a recent topic. Details for making six sample shoeboxes are…
Descriptors: Biology, Earth Science, Elementary Education, Elementary School Science
Ashenfelter, John W. – Phys Teacher, 1969
Descriptors: Curriculum Development, Individualized Instruction, Instruction, Physics
Peer reviewedShakhashiri, Bassam Z. – Journal of Chemical Education, 1975
Describes a functional management system which individualizes instruction in undergraduate chemistry courses. CHEM TIPS (Chemistry Teaching Information Processing System) is designed to monitor each student's progress, identify specific weaknesses and strengths in his understanding of the course material, prescribe individual study assignments,…
Descriptors: Chemistry, College Science, Feedback, Higher Education
Peer reviewedNetburn, Allan N. – Science and Children, 1975
Discusses the A-T approach in conjunction with a structured science program, such as COPES, which provides opportunities for independent study and student self-pacing and is a means for increasing student comprehension. This approach can also help absentee students catch up as well as students who enter mid-year. (BR)
Descriptors: Elementary School Science, Individualized Instruction, Instruction, Learning
Peer reviewedDavies, E. J.; Wilson, J. H. – Physics Teacher, 1976
Describes a no lecture, laboratory oriented approach to the teaching of the Tech Physics Project. Evaluates success of this approach and identifies alternative formats which have been used in instances in which students needed a more structured mode of presentation. (CP)
Descriptors: College Science, Higher Education, Individualized Instruction, Instruction
Kline, Arlyn Arthur – 1970
Reported is a study to ascertain whether or not the open-ended laboratory activities in the Earth Science Curriculum Project (ESCP) program could be learned as effectively by self-directed students and to ascertain students' attitudes and interest toward learning science through a laboratory-block discovery approach. Ninety-seven junior high…
Descriptors: Doctoral Dissertations, Educational Research, Individualized Instruction, Junior High School Students
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 reviewedAnderson, Charles; Butts, David – Journal of Research in Science Teaching, 1980
In this study, worksheets were adapted from an Elementary Science Study unit, "Batteries and Bulbs," to develop an individualized set of instructional materials on electricity. Research questions were asked regarding relationships of teaching technique (individualized v conventional) to achievement and attitudes, gender, and interactions…
Descriptors: Achievement, Educational Research, Electricity, Elementary Education
Peer reviewedDeRose, James V. – Journal of Chemical Education, 1980
Describes a collection of college chemistry demonstrations designed for self-paced classes. Some of these exercises stem from original ideas; others are adaptations of one or more published demonstrations. Two exercises, as examples, are also included. (HM)
Descriptors: Chemistry, College Science, College Students, Higher Education
Kulik, James A.; And Others – 1980
This report is the third of three volumes describing the results of the evaluation of the National Science Foundation (NSF) Local Course Improvement (LOCI) program. This volume describes 12 project case studies undertaken as part of that evaluation. Three projects were designed to increase individualization of college science teaching; two…
Descriptors: Case Studies, College Science, Computer Assisted Instruction, Curriculum Development
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