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Matthew Clemson; Alice Huang; Gareth Denyer; Maurizio Costabile – Biochemistry and Molecular Biology Education, 2025
The teaching of laboratory skills to undergraduate students is central to all experimental sciences. In this setting, students must understand the experimental procedures as well as the fundamental principle(s) being demonstrated, all while learning within a limited time. Other limiting factors include access to equipment and reagents, resulting…
Descriptors: Science Laboratories, Science Process Skills, Science Instruction, Undergraduate Students
Turan Güntepe, Ebru; Keles, Esra – International Journal of Contemporary Educational Research, 2023
This study aims to design an educational process for teaching scientific concepts during the preschool period based on the instructional design model of Seels and Glasgow and to evaluate its effectiveness. For this purpose, a material set incorporating a teacher's manual and interactive holographic materials was developed. The teacher's manual…
Descriptors: Instructional Design, Science Instruction, Teaching Methods, Scientific Concepts
David Gammack – Journal of Teaching and Learning with Technology, 2015
In this article we discuss the possible uses of NetLogo as an educational tool for High School and early-years undergraduate students. The paper is geared towards teachers from all disciplines who require students to problem solve, be quantitative and logical but want a project orientated platform to build or reinforce knowledge. The tools and…
Descriptors: Computer Uses in Education, Computer Simulation, Thinking Skills, Science Process Skills
Samon, Sigal; Levy, Sharona T. – Science Education, 2017
The study explores how a complexity approach empowers science learning. A complexity approach represents systems as many interacting entities. The construct of micro-macro compatibility is introduced, the degree of similarity between behaviors at the micro- and macro-levels of the system. Seventh-grade students' learning about gases was studied…
Descriptors: Difficulty Level, Systems Approach, Science Education, Secondary School Students
Ruiz-Martinez, A.; Pereniguez-Garcia, F.; Marin-Lopez, R.; Ruiz-Martinez, P. M.; Skarmeta-Gomez, A. F. – IEEE Transactions on Learning Technologies, 2013
In the teaching of computer networks the main problem that arises is the high price and limited number of network devices the students can work with in the laboratories. Nowadays, with virtualization we can overcome this limitation. In this paper, we present a methodology that allows students to learn advanced computer network concepts through…
Descriptors: Computer Networks, Concept Teaching, Science Process Skills, Teaching Methods
Ting, Choo-Yee; Phon-Amnuaisuk, Somnuk; Chong, Yen-Kuan – Educational Technology & Society, 2008
This article aims at discussing how Dynamic Decision Network (DDN) can be employed to tackle the challenges in modeling temporally variable scientific inquiry skills and provision of adaptive pedagogical interventions in INQPRO, a scientific inquiry exploratory learning environment for learning O'level Physics. We begin with an overview of INQPRO…
Descriptors: Discovery Learning, Educational Environment, Science Instruction, Inquiry
Iversen, Kjaerand; Nilsson, Per – International Journal of Computers for Mathematical Learning, 2007
This paper focuses on the different ways in which students in lower secondary school (14-16 year olds) experience compound random events, presented to them in the form of combined junctions. A carefully designed ICT environment was developed enabling the students to interact with different representations of such structures. Data for the analysis…
Descriptors: Constructivism (Learning), Computer Uses in Education, Computer Simulation, Secondary School Students
Peer reviewedHuppert, J.; Lomask, S. Michal; Lazarowitz, R. – International Journal of Science Education, 2002
Investigates the impact of computer simulation on students' academic achievement and their mastery of science process skills with regard to their cognitive stages. Based on the computer simulation program "The Growth Curve of Microorganisms" which requires 10th grade biology students to use problem solving skills while simultaneously…
Descriptors: Academic Achievement, Computer Simulation, Computer Uses in Education, Educational Technology
Peer reviewedStern, Judith – Journal of Science Education and Technology, 2000
Describes general curriculum design principles and specific software design implementations resulting from an ongoing collaboration between software designers and programmers, researchers, and a classroom teacher and his students. Traces the development of E-Lab software in the context of the principles that emerged during the design process.…
Descriptors: Computer Simulation, Computer Software Development, Computer Uses in Education, Curriculum Design
Peer reviewedSing, Lee; Chee, Chia Teck – Journal of Computers in Mathematics and Science Teaching, 1997
Describes a simulation done by students in a Year 4 undergraduate physics laboratory course on pulse technology. The course objective was to provide students with experience in computation pulsed electrical circuits and in comparing the computation with experiments. Results showed that the microcomputer simulated experiments made for a more…
Descriptors: Computer Simulation, Computer Uses in Education, Electrical Systems, Higher Education
Peer reviewedEidson, Sandra; Simmons, Patricia E. – Journal of Computers in Mathematics and Science Teaching, 1998
Examines the relationship of microcomputer simulation graphics and alphanumeric modes of data presentation to ninth-grade biology students' science process skills and conceptual understanding of selected science topics (N=64). Concludes that use of microcomputers and appropriate software can result in significant learning and understanding of…
Descriptors: Computer Simulation, Computer Software, Computer Uses in Education, Educational Technology
Peer reviewedGuisasola, J.; Barragues, J. I.; Valdes, P.; Pedroso, F. – Physics Education, 1999
Describes changes in scientific research methods that have been brought about by the use of computers. Presents an example of the falling of a body in a fluid to show students how computers can be used to experiment with mathematical models and to automate experiments. Contains 11 references. (Author/WRM)
Descriptors: Computer Simulation, Computer Uses in Education, Higher Education, Hypothesis Testing

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