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Ahn, June; Clegg, Tamara; Yip, Jason; Bonsignore, Elizabeth; Pauw, Daniel; Gubbels, Michael; Lewittes, Charley; Rhodes, Emily – Learning, Media and Technology, 2016
This paper describes the development of "ScienceKit," a mobile, social media application to promote children's scientific inquiry. We deployed "ScienceKit" in "Kitchen Chemistry" ("KC"), an informal science program where children learn about scientific inquiry through cooking. By iteratively integrating…
Descriptors: Science Instruction, Inquiry, Social Media, Teaching Methods
Pathare, Shirish; Huli, Saurabhee; Nachane, Madhura; Ladage, Savita; Pradhan, Hemachandra – Physics Education, 2015
Thermal equilibrium is a basic concept in thermodynamics. In India, this concept is generally introduced at the first year of undergraduate education in physics and chemistry. In our earlier studies (Pathare and Pradhan 2011 "Proc. episteme-4 Int. Conf. to Review Research on Science Technology and Mathematics Education" pp 169-72) we…
Descriptors: Science Instruction, Thermodynamics, Scientific Concepts, College Science
Chigisheva, Oksana, Ed.; Popov, Nikolay, Ed. – Bulgarian Comparative Education Society, 2016
Papers from the proceedings of the 14th Annual Conference of the Bulgarian Comparative Education Society were submitted in two volumes. Volume 1 contains papers submitted at the conference held in Sofia, Bulgaria, June 14-17, 2016. Volume 2 contains papers submitted at the 4th International Partner Conference of the International Research Centre…
Descriptors: Comparative Education, Conference Papers, Conferences (Gatherings), International Education
Allam, Yosef; Tomasko, David L.; Trott, Bruce; Schlosser, Phil; Yang, Yong; Wilson, Tiffany M.; Merrill, John – Chemical Engineering Education, 2008
A micromanufacturing lab-on-a-chip project with a nanotechnology component was introduced as an alternate laboratory in the required first-year engineering curriculum at The Ohio State University. Nanotechnology is introduced in related reading and laboratory tours as well as laboratory activities including a quarter-length design, build, and test…
Descriptors: Science Laboratories, Computer Storage Devices, Biomedicine, Engineering Education

Cole, Robert L. – Community/Junior College Research Quarterly, 1981
Reviews the development and use of nine self-instructional, programed modules on physiology topics. The modules consisted of a learning program, a learning activity requiring students to formulate graphic, formal, and inferred models, and a posttest. A high degree of association was found between successful model completion and physiology…
Descriptors: Community Colleges, Learning Activities, Learning Modules, Models
Lindblom, Tim – American Biology Teacher, 2006
The model organism, "Caenorhabditis elegans," in addition to being well suited to genetics and cell biology teaching applications, can also be useful in the physiology laboratory. In this article, the author describes how students in a junior level college Comparative Physiology course have made use of "C. elegans" in semester-long,…
Descriptors: Physiology, Science Laboratories, Science Instruction, Student Research

Rybka, Jan Dillon – Science Teacher, 1991
Describes a learning module designed to help students use the factor labeling method in problem solving. (ZWH)
Descriptors: Earth Science, Equations (Mathematics), Learning Activities, Learning Modules
Pedras, Melvin J.; Braukmann, Jim – 1991
This report contains four learning modules designed to support a range of objectives that include increasing technological literacy, and improving written and verbal communication skills, psychomotor skills, computational skills, geometry, analysis, problem solving, and other critical thinking skills. The activities described in each module…
Descriptors: Critical Thinking, Educational Technology, Elementary Education, Learning Activities

Hetherington, Martin; And Others – School Science and Mathematics, 1981
A series of modules designed for teaching energy concepts in a manner related to the classroom, school, and environmental settings is presented. The unit is seen as able to provide both teachers and students with a concept which has far-reaching implications. (MP)
Descriptors: Conservation Education, Discovery Learning, Energy, Energy Conservation
Ward, R. Bruce; Sadler, Philip M.; Shapiro, Irwin I. – Astronomy Education Review, 2008
We report on an evaluation of the effectiveness of Project ARIES, an astronomy-based physical science curriculum for upper elementary and middle school children. ARIES students use innovative, simple, and affordable apparatus to carry out a wide range of indoor and outdoor hands-on, discovery-based activities. Student journals and comprehensive…
Descriptors: Student Journals, Grade 4, Grade 3, Teaching Methods
National Aeronautics and Space Administration, Washington, DC. – 1992
NASA will launch Space Station Freedom piece by piece in the cargo bay of space shuttles. The process is scheduled to start in 1995 and be completed in 1999. This pamphlet presents factual information and accompanying hands-on science activities concerning the following aspects of the project: (1) the space shuttle's role in transport; (2) the…
Descriptors: Elementary Education, Elementary School Science, Instructional Materials, Learning Activities
United Nations Educational, Scientific, and Cultural Organization, Paris (France). Div. of Science, Technical and Environmental Education. – 1986
Based upon the notion that the study of the environment should include attempts to articulate concepts related to the natural, social and cultural dimensions of the human environment, this learning module was developed for Unesco's International Environmental Education Programme. It is intended for use at the secondary school level and contains…
Descriptors: Cultural Context, Ecology, Environmental Education, Environmental Influences
Parks, Lela Mae; And Others – 1977
One in a series of five volumes of teacher-developed learning modules on urban career education (K-12), this document contains learning activities for grades 7-12 which are intended to be infused in the following subject areas: mathematics, science, business, special education, and health education. Each module includes the following information:…
Descriptors: Behavioral Objectives, Business Education, Career Education, Fused Curriculum
Integrated Curriculum Activities. Integration of Vocational and Academic Learning through Tech Prep.
Valencia Community Coll., Orlando, FL. – 1995
The integrated learning activities in this guide were developed by a committee of educators from Osceola District Schools, Orange County Public Schools, and Valencia Community College (Florida) for a tech prep curriculum. Included are 32 communications-related activities, 30 mathematics activities, and 10 science activities. Each activity includes…
Descriptors: Academic Education, Classroom Techniques, Communication Skills, Course Content
United Nations Educational, Scientific and Cultural Organization, Paris (France). Div. of Science, Technical and Vocational Education. – 1983
The International Environmental Education Programme (IEEP) of UNESCO has determined that the enhancement of the quality of the built environment is a basic priority for future environmental action, particularly in Europe and North America. This experimental teaching module applies specifically to those two continents, and is intended for use by…
Descriptors: Elementary Secondary Education, Energy Education, Environmental Education, Land Use
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