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Ronald L. Reyes; Kristina P. Isleta; Jennifer D. Regala; Daisy Mae R. Bialba – Journal of Computer Assisted Learning, 2024
Background: The adoption of virtual laboratories (VLs) has experienced a significant surge, catalysed by the global changes in the educational landscape, notably influenced by the COVID-19 pandemic. Originally supplementary to traditional in-person laboratory experiments, VLs swiftly transitioned into a primary source of hands-on laboratory…
Descriptors: Science Laboratories, Computer Simulation, Educational Technology, Science Instruction
Jacob C. Crislip; Esai Lopez; Cameron D. Armstrong; Taylor Petell; Laila Abu-Lail; Andrew R. Teixeira – Advances in Engineering Education, 2023
A chemical engineering student's knowledge of theory, experimental design, and real-world processes is tested and enforced in the Unit Operations laboratory courses. However, instructors are facing challenges of delivering high-quality, hands-on laboratory content with limited resources and increasingly large class sizes. Limited in-lab time is…
Descriptors: College Students, Chemical Engineering, Science Laboratories, Computer Simulation
Ali, Numan; Ullah, Sehat; Khan, Dawar – Education and Information Technologies, 2022
Virtual Chemistry Laboratories (VCLs) are used as an alternative to the physical laboratories, where users can enhance their performance for hands-on chemistry experiments. However, cognitive load and other issues make the VCLs impractical. The issue of cognitive load arises due to the complexity of the environment by displaying a number of…
Descriptors: Cognitive Processes, Difficulty Level, Electronic Learning, Chemistry
Stelz-Sullivan, Eleanor J.; Marchetti, Barbara; Karsili, Tolga – Education Sciences, 2022
Computational and atmospheric chemistry are two important branches of contemporary chemistry. With the present topical nature of climate change and global warming, it is more crucial than ever that students are aware of and exposed to atmospheric chemistry, with an emphasis on how modeling may aid in understanding how atmospherically relevant…
Descriptors: Computation, Chemistry, Science Education, Simulation
Gao, Ruomei; Lloyd, Judith; Kim, Youngjoo – Journal of Chemical Education, 2020
The COVID-19 outbreak has altered chemistry laboratory instruction and forced us to reconsider the balance between face-to-face and online teaching. Our students preferred face-to-face teaching (score 4.1/5 on a Likert-like scale) to virtual laboratory exercises (3.4/5) despite the fact that their performance score was actually lower in…
Descriptors: COVID-19, Pandemics, Chemistry, Science Instruction
Taramopoulos, A.; Psillos, D. – Journal of Computer Assisted Learning, 2017
The present study investigates the impact of utilizing virtual laboratory environments combining dynamically linked concrete and abstract representations in investigative activities on the ability of students to comprehend simple and complex phenomena in the field of electric circuits. Forty-two 16- to 17-year-old high school students participated…
Descriptors: Energy, Computer Simulation, High School Students, Computer Assisted Instruction
Marty, Michael T.; Beussman, Douglas J. – Journal of Chemical Education, 2013
An in-depth understanding of all parameters that affect an instrumental analysis method, allowing students to explore how these instruments work so that they are not just a "black box," is key to being able to optimize the technique and obtain the best possible results. It is, however, impractical to provide such in depth coverage of…
Descriptors: Science Instruction, College Science, Spectroscopy, Science Laboratories
Machet, Tania; Lowe, David; Gutl, Christian – European Journal of Engineering Education, 2012
This paper explores the hypothesis that embedding a laboratory activity into a virtual environment can provide a richer experimental context and hence improve the understanding of the relationship between a theoretical model and the real world, particularly in terms of the model's strengths and weaknesses. While an identified learning objective of…
Descriptors: Laboratory Experiments, Teaching Methods, Models, Theory Practice Relationship
Gallis, Michael R. – Physics Teacher, 2010
This paper discusses the use of video analysis software and computer-generated animations for student activities. The use of artificial video affords the opportunity for students to study phenomena for which a real video may not be easy or even possible to procure, using analysis software with which the students are already familiar. We will…
Descriptors: Computer Software, Video Technology, Animation, Computer Simulation
Singh, Gurmukh – Journal of Educational Technology Systems, 2012
The present article is primarily targeted for the advanced college/university undergraduate students of chemistry/physics education, computational physics/chemistry, and computer science. The most recent software system such as MS Visual Studio .NET version 2010 is employed to perform computer simulations for modeling Bohr's quantum theory of…
Descriptors: Undergraduate Students, Quantum Mechanics, Physics, Chemistry
Fogarty, Ian; Geelan, David – Journal of Computers in Mathematics and Science Teaching, 2013
Students in 4 Canadian high school physics classes completed instructional sequences in two key physics topics related to motion--Straight Line Motion and Newton's First Law. Different sequences of laboratory investigation, teacher explanation (lecture) and the use of computer-based scientific visualizations (animations and simulations) were…
Descriptors: Foreign Countries, Computer Simulation, Animation, Computer Assisted Instruction
Yuza, Steve C. – ProQuest LLC, 2010
The purpose of this study was to determine the effects of interactive multimedia simulations and virtual dissection software on depth of learning among students participating in biology and chemistry laboratory courses. By understanding more about how simulation and virtual dissection software changes depth of learning, educators will have the…
Descriptors: Research Problems, Instructional Design, Computer Assisted Instruction, Laboratory Procedures
Thomas, M. S.; Kothari, D. P.; Prakash, A. – IEEE Transactions on Education, 2011
Automation of power systems is gaining momentum across the world, and there is a need to expose graduate and undergraduate students to the latest developments in hardware, software, and related protocols for power automation. This paper presents the design, development, and commissioning of an automation lab to facilitate the understanding of…
Descriptors: Foreign Countries, Undergraduate Students, Graduate Students, Computer Assisted Instruction
Using Simulation Module, PCLAB, for Steady State Disturbance Sensitivity Analysis in Process Control
Ali, Emad; Idriss, Arimiyawo – Chemical Engineering Education, 2009
Recently, chemical engineering education moves towards utilizing simulation soft wares to enhance the learning process especially in the field of process control. These training simulators provide interactive learning through visualization and practicing which will bridge the gap between the theoretical abstraction of textbooks and the…
Descriptors: Engineering Education, Chemical Engineering, Computer Simulation, Science Instruction
Abdulwahed, Mahmoud; Nagy, Zoltan K. – Computers & Education, 2011
This paper introduces a novel model of laboratory education, namely the TriLab. The model is based on recent advances in ICT and implements a three access modes to the laboratory experience (virtual, hands-on and remote) in one software package. A review of the three modes is provided with highlights of advantages and disadvantages of each mode.…
Descriptors: Undergraduate Students, Graduate Students, Science Laboratories, Cognitive Psychology
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