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Trout, Joseph J.; Jacobsen, Tara; Buondonno, Gracie; Weber, Courtney – Physics Education, 2022
This project produced an online astronomy course based on the free, online OpenStax textbook. When this project was conceived, about a year before the COVID-19 pandemic, the authors had no idea that in a short period of time, most college and university classes would be online. This abrupt change in modalities of courses, from traditional,…
Descriptors: Astronomy, Physics, Teaching Methods, Science Instruction
Körber, C.; Hammer, I.; Wynen, J.-L.; Heuer, J.; Müller, C.; Hanhart, C. – Physics Education, 2018
Numerical simulations are playing an increasingly important role in modern science. In this work it is suggested to use a numerical study of the famous perihelion motion of the planet Mercury (one of the prime observables supporting Einsteins general relativity) as a test case to teach numerical simulations to high school students. The paper…
Descriptors: Motion, Physics, Science Instruction, Simulation
Alexopoulos, A.; Pavlidou, M.; Cherouvis, S. – Physics Education, 2019
In recent years the realisation that children make decisions and choices about subjects they like in primary school became widely accepted. The role of the primary school teacher as the main ambassador for a subject is therefore crucial in inspiring and enthusing the younger generation towards STEM. However, in most European countries, primary…
Descriptors: Physics, Science Instruction, Elementary School Teachers, Teacher Role
Kapon, S.; Ganiel, U.; Eylon, B. – Physics Education, 2009
This article presents an approach to integrating public e-lectures on contemporary physics into a traditional high-school syllabus. This approach was used in a long-distance professional development course for in-service physics teachers. Each lecture was related to a specific obligatory syllabus chapter, and was accompanied by learner-centred…
Descriptors: Scientific Principles, Physics, Science Instruction, Teaching Methods
Peer reviewedStewart, Mary – Physics Education, 1995
Discusses the ineffectiveness of the lecture method when used with heterogeneous populations. Describes the development of a course designed to be responsive to the way students learn and how they are motivated to learn. (DDR)
Descriptors: Course Descriptions, Educational Change, Educational Strategies, Higher Education
Peer reviewedWelch, P. A. – Physics Education, 1972
Describes a team teaching effort in advanced level physics for a secondary school in England. Lectures in various listed topics are assigned to, and tutorials are distributed among, different team members. Lecture notes, several of which are given, are distributed to decrease student reliance on note taking. (TS)
Descriptors: Advanced Programs, Course Descriptions, Instruction, Physics
Peer reviewedRandall, R. F. Y. – Physics Education, 1978
Describes the physical science courses at Lanchester Polytechnic. These courses are broad-based and offerings cover a wide range of options and use a variety of teaching-learning methods. (GA)
Descriptors: Chemistry, College Science, Course Descriptions, Elective Courses
Peer reviewedCourt, G. R.; And Others – Physics Education, 1976
Discusses the philosophy and organization of an introductory college physics course that emphasizes laboratory experiments. Also presents a brief outline of the laboratory work. (MLH)
Descriptors: College Science, Course Descriptions, Curriculum, Higher Education
Peer reviewedLiley, B. S.; And Others – Physics Education, 1976
Describes an introductory laboratory physics course covering dynamics, fields, and waves. The course involves six hourrs of laboratory work and six hours of self-study every two weeks. Understanding concepts rather than laboratory techniques is stressed. (MLH)
Descriptors: College Science, Course Descriptions, Curriculum, Higher Education
Peer reviewedDavies, E. R.; Penton, S. J. – Physics Education, 1976
Describes a laboratory teaching technique in which a single topic (in this case, bipolar junction transistors) is studied over a period of weeks under the supervision of one staff member, who also designs the laboratory work. (MLH)
Descriptors: College Science, Course Descriptions, Curriculum, Higher Education
Peer reviewedBrandt, D.; And Others – Physics Education, 1974
Discusses the use of programmed scripts, textbooks, films, and cassette tapes to conduct a self-instruction laboratory course. Indicates the presence of marked positive effects on the development of the students' ability to plan their own experiments. (CC)
Descriptors: Autoinstructional Aids, College Science, Course Descriptions, Course Objectives
Peer reviewedMace, W. K. – Physics Education, 1971
Describes some of the general principles involved in the planning of a teaching sequence. Discusses in more detail one example of a complete syllabus including major concepts and experiments. (Author/TS)
Descriptors: Course Descriptions, Course Organization, Curriculum Development, Kinetics
Peer reviewedVickers, S.; Clare, P. H. – Physics Education, 1982
A syllabus for A-level examination in Industrial Studies has been developed to foster "industrial literacy" by giving students an understanding of industry's economic/social significance and developing in them an ability to understand concepts underlying policy and decision-making in companies. Discusses assessment instruments…
Descriptors: Course Descriptions, Evaluation Methods, Higher Education, Industrial Education
Peer reviewedBrown, Martin; McMahon, Harry – Physics Education, 1979
Describes the structure of a physics course organized into independent-learning modules and designed to make use of the facilities of a Computer Assisted Management of Learning (CAMOL) package. (GA)
Descriptors: Computer Assisted Instruction, Course Descriptions, Curriculum Development, Individualized Instruction
Peer reviewedLi, Guangzhou – Physics Education, 1997
Describes the evolution of the seven major physics syllabi used in all secondary schools in China and analyzes the shifts of these syllabi in terms of objectives, content, instructional hours and teaching methods. Suggests changes for China's future secondary-physics education, including the need for modern experimental equipment such as computers…
Descriptors: Computer Uses in Education, Course Descriptions, Curriculum Development, Foreign Countries
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