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Meek, Simon J.; Pitman, Catherine L.; Miller, Alexander J. M. – Journal of Chemical Education, 2016
An introductory guide to deducing the mechanism of chemical reactions is presented. Following a typical workflow for probing reaction mechanism, the guide introduces a wide range of kinetic and mechanistic tools. In addition to serving as a broad introduction to mechanistic analysis for students and researchers, the guide has also been used by…
Descriptors: Science Instruction, College Science, Chemistry, Scientific Concepts
Dailey, Debbie – Parenting for High Potential, 2014
The enthusiasm for science displayed by students in early elementary grades is unparalleled. If not nurtured in elementary school, the spark for learning science diminishes. Unfortunately, the amount of time spent on science in Grades 1-4 has steadily declined since the passage of the No Child Left Behind Act of 2001. In 2012, the National…
Descriptors: Elementary School Science, Elementary School Students, STEM Education, Science Interests
Grambo, Gregory – Gifted Child Today (GCT), 1993
This rationale for teaching elementary-level science using a hands-on approach emphasizes the importance of students learning the process by which an outcome arises rather than just remembering the outcome. The article encourages use of everyday objects rather than fancy scientific apparatus and offers suggestions for helping students undertake…
Descriptors: Educational Philosophy, Elementary Education, Elementary School Science, Science Activities
VanCleave, Janice – 1994
This book is designed to provide guidance and ideas for science projects to help students learn more about science as they search for answers to specific problems. The 20 topics on electricity in this book suggest many possible problems to solve. Each topic has one detailed experiment followed by a section that provides additional questions about…
Descriptors: Electric Batteries, Electric Circuits, Electricity, Elementary Secondary Education
Price, Charles L. – 1987
This description of the use of "probeware," i.e., hardware which connects to a microcomputer and works with the software to measure factors such as temperature, light, or motion in science laboratory experiments, uses as an example an experiment which would involve the measurement of pendulum motion using the "Precision Timer…
Descriptors: Computer Assisted Instruction, Courseware, Data Analysis, Higher Education

Lock, Roger – Australian Science Teachers Journal, 1994
Compares and contrasts the use of animals in English secondary schools and Australian high schools. Changes in animal usage in English schools over the last decade are described as are the influences that the National Curriculum in England has had on such work. Implications are indicated for Australian and English biology teachers. (Author/MKR)
Descriptors: Animals, Biology, Science Education, Science Experiments
Scher, Joyce L. – 1990
Science teaching practices at the Long Island School for the Gifted emphasize hands-on experiments where children do the work and the teacher assists learning. This approach bypasses the reading/writing barrier that prevents some children from learning science. Many science experiments are described, including a first-grade lesson on using…
Descriptors: Elementary School Science, Gifted, Primary Education, Problem Solving
Ediger, Marlow – 2003
While a science teacher needs to be thoroughly grounded in science content and methodology, the science teacher also needs to be a reading teacher. Science experiments and demonstrations need to be integrated with reading in the science curriculum. Reading in science helps students with comprehension, the development of concepts and…
Descriptors: Curriculum Development, Elementary Education, Individualized Instruction, Problem Solving

Chen, Hsuan; Ruterbusch, Paul H. – American Journal of Physics, 1979
Discusses how holography can be used as part of undergraduate physics laboratories. The authors propose a single beam technique of holography, which will reduce the recording scheme as well as relax the isolation requirements. (HM)
Descriptors: College Science, Curriculum Development, Higher Education, Optics

Tripp, Amy – Teaching Exceptional Children, 1991
A teacher of students with hearing impairments outlines ways to integrate use of the scientific method into science laboratory experiences. A sample experiment is outlined, and the value of the applied science experiences for students who are concrete learners is stressed. (DB)
Descriptors: Disabilities, Elementary Secondary Education, Hearing Impairments, Science Curriculum
Tant, Carl – 1992
This book provides a short course in the mysteries of seed structure, function, and development. Chapter 1, "Backgrounds, Hints, And Tips For Teachers And Parents," provides a basis for working with the mid-years student. Chapater 2, "Where Do I Start? What Do I Do?" provides procedural tips for science research. Chapter 3,…
Descriptors: Botany, Demonstrations (Science), Electricity, Elementary Secondary Education

Longenecker, Nevin E.; Oppenheimer, Dan – American Biology Teacher, 1982
A study conducted by high school advanced bacteriology students appears to confirm the hypothesis that the incremental administration of antibiotics on several species of bacteria (Escherichia coli, Staphylococcus epidermis, Bacillus sublitus, Bacillus megaterium) will allow for the development of antibiotic-resistant strains. (PEB)
Descriptors: Culturing Techniques, Laboratory Procedures, Microbiology, Research
Gerlovich, Jack A.; Gerard, Timothy F. – American School Board Journal, 1989
Court rulings have established three basic responsibilities school systems must meet in science programs: (1) inform students about the hazards they might encounter in a science class; (2) provide a safe learning environment and properly maintained equipment; and (3) ensure adequate supervision. Outlines a four-point school safety plan. (MLF)
Descriptors: Accident Prevention, Court Litigation, Legal Responsibility, School Responsibility
Barden, William, Jr. – Science Probe, 1991
Reviews diverse types of computer programing languages and provides examples of representative programs from the most significant languages in use. Matches programing languages most suitable for various types of experimental applications for the amateur scientist. (JJK)
Descriptors: Elementary Secondary Education, Enrichment Activities, Microcomputers, Programing Languages
Earl, F. A. – Performance and Instruction, 1982
Examines backward chaining, a method of producing demonstration films in which sequential steps in a procedure are taught backwards; that is, the last step is taught first, then the next to the last step, and so on. A film designed to teach procedures used in a science experiment is used as an example. (JJD)
Descriptors: Demonstrations (Educational), Foreign Countries, Higher Education, Instructional Design