Publication Date
| In 2026 | 0 |
| Since 2025 | 0 |
| Since 2022 (last 5 years) | 2 |
| Since 2017 (last 10 years) | 3 |
| Since 2007 (last 20 years) | 5 |
Descriptor
| Computer Simulation | 15 |
| Laboratory Procedures | 15 |
| Science Education | 15 |
| College Science | 7 |
| Higher Education | 7 |
| Teaching Methods | 7 |
| Computer Software | 6 |
| Computer Assisted Instruction | 5 |
| Computer Uses in Education | 5 |
| Foreign Countries | 5 |
| Science Activities | 5 |
| More ▼ | |
Source
Author
| Ahtee, Maija, Ed. | 1 |
| Almange, Claude | 1 |
| Amahmid, Omar | 1 |
| Anderson, Robert H. | 1 |
| Birk, James P., Ed. | 1 |
| Brittain, T. | 1 |
| Bílek, Martin | 1 |
| Calver, M. C. | 1 |
| Charkaoui, Fadya | 1 |
| Dewhurst, D. G. | 1 |
| Dillenseger, Jean-Louis | 1 |
| More ▼ | |
Publication Type
Education Level
| Postsecondary Education | 4 |
| Higher Education | 3 |
| Secondary Education | 3 |
Audience
| Practitioners | 7 |
| Teachers | 6 |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Havlícková, Veronika; Šorgo, Andrej; Bílek, Martin – Problems of Education in the 21st Century, 2023
Hands-on dissections of animals are traditionally regarded as an essential part of biology education. Nowadays, regardless of the reported educational benefits, there is a gradual change in the concept and acceptance of hands-on dissection, leading in many cases to its abandonment in schools and its replacement with alternatives such as 3D models,…
Descriptors: Laboratory Procedures, Biology, Science Education, Educational Technology
Ormandy, Elisabeth; Schwab, Janella C.; Suiter, Samantha; Green, Nicole; Oakley, Janice; Osenkowski, Pamela; Sumner, Christine – American Biology Teacher, 2022
Animal dissection is practiced to varying degrees around the world and is particularly prevalent in North America throughout all levels of education. However, a growing number of studies suggest that nonanimal teaching methods (NAMs) (e.g., virtual anatomy tools and three-dimensional models) are better for achieving learning goals compared to…
Descriptors: Animals, Laboratory Procedures, Teaching Methods, Computer Simulation
Amahmid, Omar; El Guamri, Youssef; Yazidi, Mohamed; Razoki, Bouchra; Rassou, Khadija Kaid; Rakibi, Youness; Farouk, Ibrahim Amine; Charkaoui, Fadya – Anatolian Journal of Education, 2019
The study aimed to explore Lower Secondary School curriculum of Life Sciences, in Morocco, to establish the current status of animal use and the extent at which it is a curriculum requirement for the introduction of the prescribed concepts and objectives. Two questionnaires were developed and administered to teachers and students to assess their…
Descriptors: Animals, Biological Sciences, Science Education, Teacher Attitudes
Schleich, Jean-Marc; Dillenseger, Jean-Louis; Houyel, Lucile; Almange, Claude; Anderson, Robert H. – Anatomical Sciences Education, 2009
Learning embryology remains difficult, since it requires understanding of many complex phenomena. The temporal evolution of developmental events has classically been illustrated using cartoons, which create difficulty in linking spatial and temporal aspects, such correlation being the keystone of descriptive embryology. We synthesized the…
Descriptors: Computer Graphics, Cartoons, Pediatrics, Embryology
Peer reviewedBrittain, T. – Biochemical Education, 1986
Describes an experiment which allows students to identify the nature of the time-course for chymotrypsin and to obtain mechanistic information on the two kinetic phases in terms of their concentration dependence. Also describes the computer simulation (available from the author) used in the experiment. (JN)
Descriptors: Biochemistry, College Science, Computer Simulation, Computer Software
Peer revieweddo Couto Tavares, Milton; And Others – Physics Education, 1991
A mechanical analogy between the microscopic motion of a charged carrier in an ordinary resistor and the macroscopic motion of a ball falling along a slanted board covered with a lattice of nails is introduced. The Drude model is also introduced to include the case of inelastic collisions. Computer simulation of the motion is described. (KR)
Descriptors: Computer Simulation, Electricity, Laboratory Procedures, Misconceptions
Petersson, Helge; Sinkvist, David; Wang, Chunliang; Smedby, Orjan – Anatomical Sciences Education, 2009
Despite a long tradition, conventional anatomy education based on dissection is declining. This study tested a new virtual reality (VR) technique for anatomy learning based on virtual contrast injection. The aim was to assess whether students value this new three-dimensional (3D) visualization method as a learning tool and what value they gain…
Descriptors: Student Attitudes, Textbooks, Computer Simulation, Visualization
Peer reviewedSchool Science Review, 1983
Describes computer measurement of capacitor charge decay, change of fringe width with color, computer simulation of color mixing, Doppler effect/carrier waves, gravitational waves, microwave apparatus, computer simulation of Brownian motion, search coils and problems with the teaching of the relationships of velocity, frequency, and wavelength in…
Descriptors: College Science, Computer Programs, Computer Simulation, High Schools
Peer reviewedSchool Science Review, 1984
Presents an experiment which links mass spectrometry to gas chromatography. Also presents a simulation of iron extraction using a ZX81 computer and discussions of Fehling versus Benedict's solutions, transition metal ammine complexes, electrochemical and other chemical series, and a simple model of dynamic equilibria. (JN)
Descriptors: Chemical Analysis, Chemical Equilibrium, Chemical Reactions, Chemistry
Peer reviewedCalver, M. C.; And Others – Journal of Biological Education, 1990
The assumptions common to all capture-recapture models for estimating population size are reviewed. A simulation using either a playing board, counters, and dice or computers is described. Classroom implications of using the board game are discussed. (KR)
Descriptors: Biology, College Science, Computer Assisted Instruction, Computer Simulation
Peer reviewedWorthy, Ward – Chemical and Engineering News, 1988
Announces the incorporation of a laboratory information management system (LIMS) into the academic environment. Describes the applications of a computer-automated laboratory system at one university. Stresses the benefits to students of the use of such a system in terms of entry into the industrial environment and to professors in grading. (CW)
Descriptors: Chemistry, College Science, Computer Assisted Instruction, Computer Simulation
Ahtee, Maija, Ed.; Meisalo, Veijo, Ed.; Lavonen, Jari, Ed. – 1994
The 15 conference papers in this report address a variety of issues such as computer applications in mechanics and optics, three-dimensional representation in physics teaching, computers in the physics laboratory, information technologies, the perceptual approach in physics education, improving students' conceptual understanding in physics, using…
Descriptors: Computer Simulation, Computer Software, Computer Uses in Education, Educational Strategies
Peer reviewedBirk, James P., Ed. – Journal of Chemical Education, 1990
Four microcomputer applications are presented including: "Computer Simulated Process of 'Lead Optimization': A Student-Interactive Program,""A PROLOG Program for the Generation of Molecular Formulas,""Determination of Inflection Points from Experimental Data," and "LAOCOON PC: NMR Simulation on a Personal Computer." Software, availability,…
Descriptors: Atomic Structure, Chemical Analysis, Chemistry, College Science
Peer reviewedJezl, Barbara Ann – Science, 1990
Reviewed are "LABTECH NOTEBOOK,""LabVIEW," and "Parameter Manager pmPLUS/pmTALK." Each package is described including functions, uses, hardware, and costs. Advantages and disadvantages of this type of laboratory approach are discussed. (CW)
Descriptors: College Science, Computer Assisted Instruction, Computer Interfaces, Computer Simulation
Peer reviewedDewhurst, D. G.; And Others – Journal of Biological Education, 1990
Described are two methods which use microcomputers to illustrate the use of the electrocardiogram and the function of the heart. Included are a simulation and a method of collecting live electrocardiograms. Hardware, software, and the use of these systems are discussed. (CW)
Descriptors: Biological Sciences, Cardiovascular System, Computer Interfaces, Computer Simulation

Direct link
