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Busch, Phyllis S. – Outdoor Communicator, 1985
Provides directions for basic science experiments which demonstrate the rain cycle, fundamentals of cloud formation, and testing for the presence of acidity in local rainwater. Describes materials required, step-by-step instructions, and discussion topics. (NEC)
Descriptors: Elementary Secondary Education, Environmental Education, Experiential Learning, Learning Activities
Learning, 1991
The ninth installment of the Science in a Box series (self-contained, hands-on activities for students grades three and up) presents activities for learning to use the sense of touch to determine how different objects conduct heat. All projects in the series are inexpensive and easy to assemble. (SM)
Descriptors: Elementary Education, Elementary School Science, Experiential Learning, Heat
Peer reviewedMoorman, Thomas – Science Scope, 2000
Describes a science experiment involving plant seeds where students observe the germination and plant growth. (YDS)
Descriptors: Biological Sciences, Experiential Learning, Middle Schools, Plant Growth
Singh, Marlene – 1983
A series of charts lists weekly activities for conducting a hands-on science laboratory in grades K-6. Arranged by grade level, the charts complement chapters in the "Gateways to Science" textbook series (McGraw-Hill, 1979). For each week, a concept to be explored is tagged to a 45-minute activity. This document was selected by the…
Descriptors: Elementary Education, Experiential Learning, Hands on Science, Learning Activities
Peer reviewedThomson, Robert G. – American Biology Teacher, 1989
Described is an activity in which students are able to determine that DNA can be transferred between bacteria and should be able to predict the type of DNA transferred. Methods, materials, and results are discussed. (CW)
Descriptors: College Science, Culturing Techniques, DNA, Experiential Learning
Peer reviewedSinclair, T. R.; Johnson, M. R. – Journal of Natural Resources and Life Sciences Education, 1996
Describes a series of 14 hands-on, low-cost exercises in plant sciences developed to support biology teaching and maintain student interest. Each exercise includes education objectives, biology background, detailed procedures, and topics to stimulate discussion and critical thinking. (DDR)
Descriptors: Biology, Experiential Learning, Hands on Science, Laboratory Equipment
Keppler, Lynne – Instructor, 1996
Elementary teachers can use weather folklore to help students explore and discover facts about weather. An experiment with woolly bear caterpillars examines whether their stripes can predict what kind of winter weather there will be. A investigation about moon halos and rain gives students experience setting up investigations based on questions…
Descriptors: Elementary Education, Experiential Learning, Folk Culture, Hands on Science
Peer reviewedBohnsack, Charles W. – American Biology Teacher, 1989
Presents a procedure by which cytokinins are used to induce a population of dividing and differentiating cells on the cut surface of the roots of an intact plant. Includes the method used, results, and suggestions for a variety of variables that may be tested. (RT)
Descriptors: Biology, Botany, College Science, Cytology
Learning, 1991
Presents classroom learning activities to help elementary teachers and students learn about and experiment with the sense of taste. One involves tasting an apple while smelling an onion; another involves locating areas of the tongue that respond to salt, sweet, bitter, and sour. (SM)
Descriptors: Class Activities, Elementary Education, Elementary School Science, Experiential Learning
James, Melodee L. – Outdoor Communicator, 1987
Describes the nine modules of the SAVI/SELPH program, a hands-on, multisensory science program developed for grade 4-7 visually impaired, orthopedically disabled, learning disabled, deaf, and multihandicapped students. Modules consist of measurement, structures of life, scientific reasoning, communication, magnetism and electricity, mixtures and…
Descriptors: Disabilities, Elementary Education, Elementary School Students, Experiential Learning
Peer reviewedGill, John; And Others – Journal of Biological Education, 1988
Describes laboratory procedures for observing the progressive change deciduous leaves undergo prior to abscission. Outlines the starch test, sugar test, extraction and chromatography of pigments, and experimental results. States that obtained results enable the events of leaf senescence to be correlated with the carbohydrate economy of a tree in…
Descriptors: Biology, Botany, Chromatography, College Science
Peer reviewedDonalson-Sams, Marilyn – Science and Children, 1988
Describes activities which help students understand several basic scientific concepts regarding water. Outlines objectives, materials needed, procedures, and questions to ask about student observations. Investigations include working with the self-sealing property of water, talcum powder, paper clips, and making water wetter. (RT)
Descriptors: Elementary School Science, Experiential Learning, Motivation Techniques, Physical Sciences
Peer reviewedKoser, John F. – Science Teacher, 1988
Describes ways to make use of lab activities and time for effective learning and student motivation. Provides information on the classification of lab activities, class data for measuring student power output, and a sample pre-lab "think sheet" activity. States the importance of relating activities to topics studied. (RT)
Descriptors: Experiential Learning, Instructional Improvement, Laboratory Experiments, Motivation Techniques
Sommer, Cesar Adolfo; Silva, Flavio Henrique; Novo, Maria Teresa Marques – Biochemistry and Molecular Biology Education, 2004
Practical classes on protein expression and purification were given to undergraduate biology students enrolled in the elective course "Introduction to Genetic Engineering." The heterologous expression of the green fluorescent protein (GFP)* of "Aequorea victoria" is an interesting system for didactic purposes because it can be viewed easily during…
Descriptors: Laboratory Experiments, Molecular Biology, Genetics, Engineering
Peer reviewedAuty, Geoffrey – School Science Review, 1988
Presents experiments which show that in electrostatics there are logical reasons for describing charged materials as positive or negative. Indicates that static and current electricity are not separate areas of physics. Diagrams of experiments and circuits are included. (RT)
Descriptors: College Science, Electric Circuits, Electricity, Experiential Learning

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