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VanCleave, Janice – 2001
This book provides opportunities for engaging students in scientific investigations, offering a hands-on approach that encourages students to understand science concepts, gives them ways to apply the concepts, and introduces and reinforces the skills they need to become independent investigators. The basic outline and objectives of each section of…
Descriptors: Astronomy, Biological Sciences, Earth Science, Elementary Secondary Education
All about Caring for Plants. Plant Life for Children[TM]. Schlessinger Science Library. [Videotape].
2000
What do plants require in order to survive? In All About Caring for Plants, join young plant enthusiasts as they investigate what plants need to grow from seedlings to healthy adult plants. Discover the basic necessities of a variety of plants, including sunlight, water, appropriate temperature and proper nutrients. Learn how to provide the proper…
Descriptors: Botany, Elementary Education, Environment, Environmental Influences
2000
Plants provide oxygen, food, shelter, medicine and more for all animals, including humans. In fact, people depend on plants for their very survival just as plants rely on animals! In All About Plant & Animal Interdependency, join aspiring botanists as they discover how plants and animals interrelate. Learn about the constant exchange of gases…
Descriptors: Animals, Botany, Ecology, Elementary Education

Woloschak, Gayle; And Others – Science Teacher, 1995
Describes experiments to culture cells in a laboratory that provide students with hands-on experience in manipulating cells and a chance to observe cell growth characteristics first hand. Exposes students to sterile technique, cell culture, cell growth concepts, and eukaryotic cell structure. (JRH)
Descriptors: Cytology, Hands on Science, Science Activities, Science Education
Klein, Jessie W.; Patev, Paul – NEACT Journal, 1998
Presents three experiments to introduce students to different kinds of chromatography: (1) paper chromatography; (2) gel filtration chromatography; and (3) reverse-phase liquid chromatography. Written in the form of a laboratory manual, explanations of each of the techniques, materials needed, procedures, and a glossary are included. (PVD)
Descriptors: Chemical Analysis, Chemistry, Chromatography, Demonstrations (Science)

Papageorgiou, George – Science Activities, 1998
Presents an approach that can help students to understand what happens in an experiment. Uses overlapping transparencies of both the experiment and the analysis. Includes details of the experiment and transparency preparation. (DDR)
Descriptors: Chemical Reactions, Chemistry, Data Analysis, Demonstrations (Science)

Roy, Kenneth R. – Science Educator, 2000
Discusses the Occupational Safety and Health Administration's (OSHA's) Laboratory Safety Standards as the major driving force in establishing and maintaining a safe working environment for teachers and students. (Author)
Descriptors: Hands on Science, Hazardous Materials, Laboratory Experiments, Laboratory Procedures

Brady, John B. – Journal of Geoscience Education, 1992
Measurement of the compositions and temperatures of H2O-NaCl brines in equilibrium with ice can be used as an easy in-class experimental determination of a liquidus. This experiment emphasizes the symmetry of the behavior of brines with regard to the minerals ice and halite and helps to free students from the conceptual tethers of one-component…
Descriptors: Chemistry, Demonstrations (Science), Experiential Learning, Geology

Kopaska-Merkel, David C. – Journal of Geoscience Education, 1995
Explains an activity in which students construct a simulated ice core. Materials required include only a freezer, food coloring, a bottle, and water. This hands-on exercise demonstrates how a glacier is formed, how ice cores are studied, and the nature of precision and accuracy in measurement. Suitable for grades three through eight. (Author/PVD)
Descriptors: Demonstrations (Science), Earth Science, Geology, Hands on Science

Tatina, Robert – American Biology Teacher, 1998
Describes two simple laboratory exercises that allow students to test hypotheses concerning the requirement of cell energy for osmosis. The first exercise involves osmotically-caused changes in the length of potato tubers and requires detailed quantitative observations. The second exercise involves osmotically-caused changes in turgor of Elodea…
Descriptors: Biology, Hands on Science, Hypothesis Testing, Laboratory Procedures
Reiner, Miriam; Gilbert, John – International Journal of Science Education, 2004
This study was an attempt to identify the epistemological roots of knowledge when students carry out hands-on experiments in physics. We found that, within the context of designing a solution to a stated problem, subjects constructed and ran thought experiments intertwined within the processes of conducting physical experiments. We show that the…
Descriptors: Physics, Science Experiments, Science Instruction, Foreign Countries
Shon, Minho – Asia Pacific Education Review, 2001
Teaching how to implement an authentic inquiry is one of the most enduring claims for better teaching method in science classrooms, and for teachers it remains as a practical matter of classroom lessons. The practical matter is that teachers might want students to get involved in their own inquiry on the one hand, and one the other hand teachers…
Descriptors: Inquiry, Science Instruction, Demonstrations (Educational), Elementary School Science
Crane, H. Richard – 1995
This book contains construction plans of exhibits that have been collected during more than 10 years, and notes for their maintenance, at the Ann Arbor (Michigan) Hands-On museum. It is a useful source of hard-to-find information for exhibit builders, science fair participants, science teachers, students, and home tinkerers. This collection…
Descriptors: Construction (Process), Demonstrations (Science), Elementary Secondary Education, Exhibits
Jegede, Olugbemiro J.; Taylor, Peter C. – 1995
Constructivist classroom environments are characterized by student engagement in science processes and manipulating experimental materials with experiential teaching of specific science concepts. Constructivist classrooms are where teachers build models of students' science knowledge, students participate actively in determining the viability of…
Descriptors: Classroom Environment, Constructivism (Learning), Foreign Countries, Hands on Science
2000
What organisms have adapted to life in environments ranging from the ocean floor to desert sands, from frigid the tundra to the deepest, darkest jungle? None other than plants! From microscopic algae to the largest trees, millions of plant species have evolved in every habitat on the planet. In Plant Biodiversity, learn how plants developed in the…
Descriptors: Adjustment (to Environment), Biodiversity, Hands on Science, Intermediate Grades