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Jean-Baptiste Ndagijimana; Jeannette Musengimana; Henriette Mushimiyimana; Evode Mukama; Olivier Habimana; Paulin Manirakiza; Jean Claude Dushimimana; Jean Pierre Alpha Munyaruhengeri; Samia Khan; Elizabeth Lakin – Chemistry Education Research and Practice, 2025
The current study ascertained the influence an instructional module had on enhancing students' understanding of chemical reactions and acid-base topics. The sample size for this study consisted of 197 students, including 101 in an "experimental" group and 96 in a "control" group, selected from schools in two Districts…
Descriptors: Foreign Countries, Secondary School Science, Secondary School Students, Chemistry
Reddy, Christopher – American Journal of Distance Education, 2014
Laboratory science classes offered to students learning at a distance require a methodology that allows for the completion of tactile activities. Literature describes three different methods of solving the distance laboratory dilemma: kit-based laboratory experience, computer-based laboratory experience, and campus-based laboratory experience,…
Descriptors: Distance Education, Science Laboratories, Science Instruction, College Science
Battle, Gary M.; Allen, Frank H.; Ferrence, Gregory M. – Journal of Chemical Education, 2011
Parts 1 and 2 of this series described the educational value of experimental three-dimensional (3D) chemical structures determined by X-ray crystallography and retrieved from the crystallographic databases. In part 1, we described the information content of the Cambridge Structural Database (CSD) and discussed a representative teaching subset of…
Descriptors: Relevance (Education), Chemistry, Computer Software, Learning Modules
Luealamai, Sutha; Panijpan, Bhinyo – Simulation & Gaming, 2012
The authors have developed a computer-based learning module on the unit cell of various types of crystal. The module has two components: the virtual unit cell (VUC) part and the subsequent unit cell hunter part. The VUC is a virtual reality simulation for students to actively arrive at the unit cell from exploring, from a broad view, the crystal…
Descriptors: Foreign Countries, Learning Modules, Science Instruction, Pilot Projects
Asay, Loretta Johnson – ProQuest LLC, 2013
Analogies are ubiquitous during instruction in science classrooms, yet research about the effectiveness of using analogies has produced mixed results. An aspect seldom studied is a model of instruction when using analogies. The few existing models for instruction with analogies have not often been examined quantitatively. The Teaching With…
Descriptors: Science Education, Logical Thinking, Concept Mapping, Science Instruction
Carleton, Renee E. – Bioscene: Journal of College Biology Teaching, 2012
Computer-aided learning (CAL) is used increasingly to teach anatomy in post-secondary programs. Studies show that augmentation of traditional cadaver dissection and model examination by CAL can be associated with positive student learning outcomes. In order to reduce costs associated with the purchase of skeletons and models and to encourage study…
Descriptors: Computer Assisted Instruction, Computers, Anatomy, Internet
Florida, Jennifer – Journal of Computers in Mathematics and Science Teaching, 2012
The study deals with the development of an analogy-integrated e-learning module on Cellular Respiration, which is intended to facilitate conceptual understanding of students with different brain hemisphere dominance and learning styles. The module includes eight analogies originally conceptualized following the specific steps used to prepare…
Descriptors: Foreign Countries, Cognitive Style, Learning Modules, Biochemistry
Ioannidou, Andri; Repenning, Alexander; Webb, David; Keyser, Diane; Luhn, Lisa; Daetwyler, Christof – International Journal of Computer-Supported Collaborative Learning, 2010
Why has technology become prevalent in science education without fundamentally improving test scores or student attitudes? We claim that the core of the problem is "how" technology is being used. Technologies such as simulations are currently not used to their full potential. For instance, physiology simulations often follow textbooks by…
Descriptors: Socialization, Student Attitudes, Computer Uses in Education, Hygiene
Herron, Sherry; Gopal, Tamilselvi – Journal of Computers in Mathematics and Science Teaching, 2012
We conducted a series of summer workshops on bioinformatics to increase educators' knowledge of this new field of inquiry with the assumption that their knowledge will, in turn, impact student achievement. The workshops incorporated experiential learning and self-reflection (Loucks-Horsley et al. 1998). Educators demonstrated significant increases…
Descriptors: Pretests Posttests, Experiential Learning, Teacher Workshops, Biology

Peters, H. J. – Computers and Education, 1980
CONDUIT distributes eight packages of computer-based instructional materials in its physics series; three are simulations of physical phenomena, and the others require students to write programs to solve physics problems. Specialized versions are being developed for microcomputers with graphical output and modern computer languages. (CMV)
Descriptors: Computer Assisted Instruction, Course Descriptions, Learning Modules, Physics

Bork, Alfred – Contemporary Educational Psychology, 1987
This paper describes three interactive computer programs used with personal computers to present science learning modules for all ages. Developed by groups of teachers at the Educational Technology Center at the University of California, Irvine, these instructional materials do not use the techniques of contemporary artificial intelligence. (GDC)
Descriptors: Computer Assisted Instruction, Courseware, Difficulty Level, Interaction

Kane, D.; Sherwood, B. – Computers and Education, 1980
Describes and illustrates the tutorial and homework exercise lessons, student routing, course organization, administration, and evaluation of a PLATO computer-based course in classical mechanics. An appendix lists 41 lessons developed for the course. (CMV)
Descriptors: Computer Assisted Instruction, Course Descriptions, Homework, Learning Modules
Trowbridge, David; Bork, Alfred – AEDS Monitor, 1981
Describes a project designed to assist 12- to 14-year-old students in developing abstract reasoning skills in math and science via interactive computer programs. Examples of learning modules designed to be run on microcomputers are included. Seven references are listed. (MER)
Descriptors: Abstract Reasoning, Adolescents, Computer Assisted Instruction, Junior High Schools
Todd, Peter A. – Bioscience Education e-Journal, 2007
A combination of factors including longer working hours, emphasis on professional development, and increased access to the Internet have fuelled the current high demand for distance learning options in tertiary biology. Distance learner students come from a heterogeneous pool of ages, backgrounds and abilities and they require choice in how they…
Descriptors: Distance Education, Internet, Online Courses, Electronic Learning
Haney, Michael R. – 1982
Microcomputers can perform two distinct functions in high school science classes, providing computer-assisted instruction and serving as tools in experimentation. This report describes a project based on three premises: that science is primarily the process of examining, modeling, and understanding nature; that the best way to learn science is by…
Descriptors: Computer Assisted Instruction, Computer Oriented Programs, Educational Media, High Schools