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Sopandi, Wahyu; Kadarohman, Asep; Rosbiono, Momo; Latip, Abdul; Sukardi, Rendi Restiana – International Journal of Instruction, 2018
Among three levels of chemical representation, the sub-microscopic level is the most difficult to learn by students. To solve the problem, it is assumed that the concept of the discontinuous nature of matter or particle concept should be mastered initially by students before they learn sub-microscopic representations of further chemical phenomena.…
Descriptors: Foreign Countries, Courseware, Science Instruction, Scientific Concepts
Staehling, Erica – Science Teacher, 2015
This article describes a lesson on the greenhouse effect in which students explore blackbody radiation and Wien's law. The lesson, which has been tested in a variety of high school physics classrooms, uses probeware and online simulations and combines two well-established instructional strategies: the 5E Learning Cycle (Bybee et al. 2006) and the…
Descriptors: Lesson Plans, Climate, Scientific Concepts, Scientific Principles
Inter-Change, 1985
Provides critiques, price lists, and computer requirements for selected population education software programs. Reviewed programs include: Demo-graphics; Malthus; Coexist; Rice Farming; Popgro; Manrgy; Population Growth; and Simpolicon. Addresses of the distributors are also provided. (ML)
Descriptors: Computer Assisted Instruction, Computer Oriented Programs, Courseware, Demography

Krajcik, Joseph S.; And Others – Journal of Research in Science Teaching, 1988
Describes a research strategy designed to examine learning and behavior when students interacted with microcomputers and software interfaced with a videotape cassette recorder (VCR). Utilized the VCR to record the video output from the microcomputer and students' verbal comments using a microphone unit. (TW)
Descriptors: Audiovisual Aids, Computer Assisted Instruction, Computer Uses in Education, Concept Formation

Osborne, Jonathan – Physics Education, 1987
Points out two areas of difficulty in teaching Newtonian dynamics. Describes several alternatives to physics learning using new technology. Details the use of the LOGO computer language in teaching simple Newtonian environments. Suggests the potential for creating new learning experiences in dynamics with new technology. (CW)
Descriptors: College Science, Computer Assisted Instruction, Computer Uses in Education, Courseware