Publication Date
| In 2026 | 0 |
| Since 2025 | 65 |
| Since 2022 (last 5 years) | 385 |
| Since 2017 (last 10 years) | 1245 |
| Since 2007 (last 20 years) | 4109 |
Descriptor
Source
Author
Publication Type
Education Level
Audience
| Teachers | 607 |
| Practitioners | 128 |
| Students | 66 |
| Researchers | 36 |
| Policymakers | 18 |
| Administrators | 6 |
| Community | 4 |
| Parents | 4 |
| Media Staff | 1 |
| Support Staff | 1 |
Location
| Turkey | 196 |
| Australia | 54 |
| China | 49 |
| United Kingdom | 46 |
| United States | 46 |
| Canada | 44 |
| Germany | 43 |
| South Africa | 43 |
| United Kingdom (England) | 36 |
| Taiwan | 32 |
| Greece | 30 |
| More ▼ | |
Laws, Policies, & Programs
| No Child Left Behind Act 2001 | 15 |
| First Amendment | 2 |
| Kentucky Education Reform Act… | 1 |
| United States Constitution | 1 |
Assessments and Surveys
What Works Clearinghouse Rating
| Meets WWC Standards with or without Reservations | 1 |
Peer reviewedZeidler, Dana L.; Walker, Kimberly A.; Ackett, Wayne A.; Simmons, Michael L. – Science Education, 2002
Investigates the relationship between students' conceptions of the nature of science and their reactions to evidence that challenged their beliefs about socioscientific issues. Stimulates students to reflect on their own beliefs and defend their opinions and suggests that the reaction of students to anomalous socioscientific data are varied and…
Descriptors: Beliefs, High Schools, Inquiry, Science Education
Peer reviewedLiu, Shiang-Yao; Lederman, Norman G. – School Science and Mathematics, 2002
Examines the conceptions of nature of science (NOS) possessed by a group of gifted seventh-grade students from Taiwan. Concludes that there were no significant changes in students' views of NOS after instruction, possibly due to time limitations and a ceiling effect. (Author/MM)
Descriptors: Academically Gifted, Foreign Countries, Middle Schools, Science Education
Peer reviewedJohansson, K. E.; Nilsson, Ch – Physics Education, 2000
Introduces physics laboratory experiments offered to general public by the Stockholm Science Laboratory demonstrating collaboration between theory and experiment. (YDS)
Descriptors: General Education, Physics, Science Education, Science Experiments
Peer reviewedAduriz-Bravo, Agustin; Izquierdo, Merce; Galagovsky, Lydia – Revista de Educacion en Ciencias/Journal of Science Education, 2002
Presents a theoretical classification of relationships between the philosophy of science and didactics of science, based on the metadiscursive nature which philosophy and didactics share. Describes five different relationships between the two disciplines: material, instrumental, explanatory, rhetorical, and metatheoretical. (Author/MM)
Descriptors: Elementary Secondary Education, Higher Education, Philosophy, Science Education
Peer reviewedVan Berkel, Berry; De Vos, Wobbe; Verdonk, Adri H.; Pilot, Albert – Science and Education, 2000
Attempts to solve the problem of hidden structure in school chemistry. Argues that normal chemistry education is isolated from common sense, everyday life and society, the history and philosophy of science, technology, school physics, and chemical research. (Author/CCM)
Descriptors: Chemistry, Elementary Secondary Education, Science Curriculum, Science Education History
Peer reviewedGonzalez, Antonio Moreno – Science and Education, 2001
Explains how Henry Cavendish performed an experiment to measure the density of the earth. Considers the problems that can arise in maintaining the anachronisms of his approach. (MM)
Descriptors: Density (Matter), Gravity (Physics), Science History, Science Instruction
Peer reviewedTaralp, Alpay; Buyukbayram, Gulen; Armagan, Onsel; Yalcin, Ender – Journal of Chemical Education, 2004
Color is used for studying the chemically-tailored surfaces of silica gel and alumina. When this technique of using color was applied by the students, they were able to grasp the principles of surface engineering and acquire an appreciation of its merits and at the same time they were able to learn the fundamentals of aldehyde chemistry,…
Descriptors: Chemistry, Color, Science Education, Chemical Engineering
Peer reviewedVerdini, Roxana A.; Lagier, Claudia M. – Journal of Chemical Education, 2004
Voltammetry principles are introduced to students by means of a bipotentiometric method to determine vitamin C in fruits and vegetables. The aim is to draw attention to voltammetric methods, particular to the study of current-potential curves, stressing the potential applicability in areas of food quality control.
Descriptors: Quality Control, Chemistry, Scientific Principles, Scientific Methodology
Peer reviewedChenthamarakshan, C. R.; Tacconi, N. R. de; Xu, Lucy; Rajeshwar, Krishnan – Journal of Chemical Education, 2004
Photophysical and photochemical properties of semiconductor metal oxide colloids are studied in the context of photoelectrochemical conversion and storage of solar energy. The experiment teaches the instrumental principles of UV-visible spectrophotometry, spectral acquisition and background subtraction strategies and diode array spectrometers.
Descriptors: Energy, Chemistry, Science Education, Science Experiments
Peer reviewedJones-Wilson, T. Michelle; Burtch, Elizabeth A. – Journal of Chemical Education, 2005
Electrophilic aromatic substitution (EAS) experiment is designed for the second-semester and undergraduate organic chemistry laboratory. In the EAS experiment, the principles of green chemistry are discussed and illustrated in conjunction with the presentation of electrophilic aromatic substitution.
Descriptors: Organic Chemistry, Undergraduate Students, Science Experiments, Scientific Principles
Erdogan, Ibrahim – Science Activities: Classroom Projects and Curriculum Ideas, 2005
In this extended earth science activity, students create a hands-on model of a volcano to achieve an understanding of volcanic structure, lava flows, formation of lava layers, and the scientific work of archaeologists and geoscientists. During this simulation activity, students have opportunities to learn science as inquiry and the nature of…
Descriptors: Earth Science, Science Activities, Science Instruction, Simulation
Peer reviewedNavarro, Daniela Maria do Amaral Ferraz; Navarro, Marcelo – Journal of Chemical Education, 2004
An experiment developed for an undergraduate organic chemistry laboratory course that can be used to introduce the catalytic hydrogenation reaction, catalysis electrochemical principles and gas chromatography is presented. The organic compounds hydrogenated by the electrocatalytic hydrogenation (ECH) process were styrene, benzaldehyde and…
Descriptors: Organic Chemistry, Science Experiments, Undergraduate Students, Science Curriculum
Aduriz-Bravo, Agustin – Science & Education, 2004
This article refers to a framework to teach the philosophy of science to prospective and in-service science teachers. This framework includes two components: a list of the main schools of twentieth-century philosophy of science (called "stages") and a list of their main theoretical ideas (called "strands"). In this paper, I show that two of these…
Descriptors: Scientific Principles, Laboratory Equipment, Science Teachers, Teaching Models
Machamer, Peter; Hepburn, Brian – Science & Education, 2004
Galileo changed the very concepts or categories by which natural philosophy could deal with matter and motion. Central to these changes was his introduction of time as a fundamental concept. He worked with the pendulum and with the inclined plane to discover his new concept of motion. Both of these showed him that acceleration and time were…
Descriptors: Fundamental Concepts, Motion, Science Instruction, Scientific Principles
Rosenblatt, Louis B. – Science & Education, 2004
We begin with the pendulum and the curious authority of the expression for the period of its swing,T = 2[pi][image omitted]l/g. That this is not an empirical result--[pi]$ is an irrational number--leads to an examination of the nature of physics. In the course of things, we come to Plato's critique of poetry in "The Republic" and the fundamental…
Descriptors: Mechanics (Physics), Poetry, Science Instruction, Motion

Direct link
