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Morales, Hector – Techniques: Connecting Education and Careers (J1), 2010
Incorporating business skills such as problem-solving, public presentations, collaboration, and self-direction into STEM (science, technology, engineering and mathematics) subjects is an excellent way to build students' enthusiasm for these disciplines. When educators add workplace internships to the learning experience, they are well on their way…
Descriptors: Careers, Experiential Learning, Engineering, High School Seniors
Peer reviewed Peer reviewed
Donalson-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 reviewed Peer reviewed
McShane, Joan Braunagel – Science and Children, 1988
Discusses a research project of testing detergents that resulted from students' classroom observations of and questions about water pollution and suds. Outlines procedures and responsibilities necessary for conducting the experiment. A sample student data sheet is included. (RT)
Descriptors: Elementary School Science, Experiential Learning, Laboratory Procedures, Motivation Techniques
Peer reviewed Peer reviewed
Williams, Harvey; And Others – Science Teacher, 1979
Discusses briefly Piaget's views on intellectual development as related to science teaching. Describes intellectual activities observed in science classrooms and shows how specific science lessons can be designed to encourage cognitive development. (GA)
Descriptors: Cognitive Development, Cognitive Processes, Experiential Learning, Learning
Peer reviewed Peer reviewed
Wherley, James M. – Science Teacher, 1989
Describes experiences, or "lab puzzles," which will help students develop problem-solving skills in a laboratory setting. Outlines procedures for developing techniques, setting boundaries, and finding the number of molecules of water in Lake Erie. (RT)
Descriptors: Chemistry, Experiential Learning, Laboratory Equipment, Laboratory Experiments
Peer reviewed Peer reviewed
Kirschner, Paul A. – Science and Education, 1992
Discusses the inherent flaws in considering and using the epistemology of the natural sciences as equivalent to a pedagogic basis for teaching and learning in the natural sciences. Discusses the difference between practicing science and learning to practice science. Concludes with the presentation of three new motives for the use of laboratory…
Descriptors: Epistemology, Experiential Learning, Investigations, Laboratory Experiments
Peer reviewed Peer reviewed
Tephly, Joan B. – Science and Children, 1989
Presents nine hands-on discovery and inquiry type activities which penetrate the student's immediate world, integrate other curricular areas, involve group cooperation, excite, motivate, and encourage creative thinking. (RT)
Descriptors: Biological Sciences, Creative Thinking, Elementary School Science, Environmental Education
Peer reviewed Peer reviewed
Foley, Lauren – Science and Children, 1989
Explains a science project conducted by the Boston Museum of Science to provide enrichment activities through an interaction between children and scientists. Provides information on the packets of creative problem-solving experiences, a description of the program, the culminating event, and joining procedures. (RT)
Descriptors: Elementary School Science, Experiential Learning, Laboratory Experiments, Laboratory Procedures
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DeVore, T. C.; Gallaher, T. N. – Journal of Chemical Education, 1986
Describes a physical chemistry experiment which uses spectroscopy to measure the heat of formation of Na2SiF6. Discusses the opportunities for students to see the use of a familiar instrument in an unfamiliar application, emphasizing that there are often many ways to attack problems in science. (TW)
Descriptors: Chemistry, College Science, Demonstrations (Educational), Experiential Learning
Peer reviewed Peer reviewed
Dreisbach, Joseph H. – Journal of Chemical Education, 1986
Describes a new biochemistry laboratory course offered at the University of Scranton (Pennsylvania) which is designed to promote scientific curiosity and creativity. Uses a problems-oriented approach which provides students with independent learning experiences. Provides a listing of some of the course's laboratory exercises. (TW)
Descriptors: Biochemistry, College Science, Course Descriptions, Experiential Learning
Peer reviewed Peer reviewed
Swain, J. R. L. – School Science Review, 1991
The development of scientific explorations in schools and a framework for their assessment within the context of Britain's Graded Assessment in Science Project (GASP) scheme is described. The criteria for assessing the planning, implementing, concluding, and evaluating of explorations are provided. (KR)
Descriptors: Academic Achievement, British National Curriculum, Experiential Learning, Foreign Countries