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Saputra, H.; Suhandi, A.; Setiawan, A.; Permanasari, A.; Firmansyah, J. – Physics Education, 2023
This study proposes an online practicum model supported by Wireless Sensor Network (WSN) to implement a physics practicum after the COVID-19 Pandemic. This system is guided by exploratory inquiry questions to help structure students' mindsets in answering investigative questions. Online practicum is also integrated with video conferencing, chat,…
Descriptors: Science Tests, Computer Assisted Testing, Physics, Practicums
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Haldolaarachchige, Neel; Hettiarachchilage, Kalani – Physics Education, 2022
Physics educators keep adding many skill developments to science and engineering students during their education as individuals and groups including critical thinking, conceptual understanding, problem-solving, mathematical implementation, computational implementation, etc. Here, we are discussing how to reach and analyse students' outcomes within…
Descriptors: Physics, Science Instruction, Calculus, In Person Learning
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Dunnett, K.; Bartlett, P. A. – Physics Education, 2018
It was planned to introduce online pre-laboratory session activities to a first-year undergraduate physics laboratory course to encourage a minimum level of student preparation for experiments outside the laboratory environment. A group of 16 and 17 year old laboratory work-experience students were tasked to define and design a pre-laboratory…
Descriptors: Physics, Science Instruction, Science Laboratories, Undergraduate Study
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Hoffman, Ian M. – Physics Education, 2012
The form and function of a collaborative assessment known as a "Buddy Quiz" is presented. The assessment is conducted in three successive phases over a contiguous 45-60 min class period. A portion of each quiz is completed in collaboration with one or two peers and a portion is completed without collaboration. The quiz is primarily…
Descriptors: Feedback (Response), Physics, Cooperation, Scientific Enterprise
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LoPresto, Michael C. – Physics Education, 2009
Consonance and dissonance are subjective perceptions that are reactions of the human ear to whether or not musical intervals sound "pleasing." The physical causes of consonance and dissonance are not as well understood as other subjective properties of sound perceived by the ear such as pitch, loudness, and quality (timbre). What follows is an…
Descriptors: Intervals, Human Body, Perception, Auditory Stimuli
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Elton, Lewis – Physics Education, 1997
Proposes that more cost-effective physics teaching could be achieved if methods of teaching and learning were substantially revised from the point of view of the desired objectives and if teachers recognized the need for continuing professional development in this area. Also recommends more student self-assessment, both as an economical measure…
Descriptors: College Instruction, Cost Effectiveness, Evaluation Methods, Higher Education
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Allain, Rhett; Abbott, David; Deardorff, Duane – Physics Education, 2006
What do we want our students to get out of the introductory physics course? Often these goals include improved conceptual understanding, improved critical thinking and improved writing and communication. These can be difficult goals to accomplish. One possible way to address these goals is through the use of peer ranking of student writing. In a…
Descriptors: Writing Assignments, Physics, Introductory Courses, Scientific Concepts
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Phillips, M. D. – Physics Education, 1972
Classifies experimental error into two main groups: systematic error (instrument, personal, inherent, and variational errors) and random errors (reading and setting errors) and presents mathematical treatments for the determination of random errors. (PR)
Descriptors: Data Analysis, Error Patterns, Evaluation Methods, Experiments
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Austin, Lydia B.; Shore, Bruce M. – Physics Education, 1995
Describes a study in which concept maps drawn by high school students (n=12) were evaluated using quantitative measures. Results indicate that the concept maps are useful in assessing the understanding of relationships between the concepts required for multiple step problem solving in physics. Contains 12 references. (DDR)
Descriptors: Concept Formation, Concept Mapping, Educational Research, Evaluation Methods
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Archenhold, W. F. – Physics Education, 1972
Descriptors: Advanced Placement Programs, Curriculum Development, Evaluation, Evaluation Methods
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Archenhold, W. F. – Physics Education, 1972
Descriptors: College Entrance Examinations, Evaluation Methods, National Competency Tests, Physics
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Dimes, R. E. – Physics Education, 1973
Summarizes classifications of educational objectives, types of test items, and principles underlying the construction of tests. Indicates that a combination of essay and objective tests is preferable in the overall evaluation of a course. (CC)
Descriptors: Behavioral Objectives, Evaluation Methods, Item Analysis, Objective Tests
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Vickers, 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
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Hockey, S. W. – Physics Education, 1973
Discusses measurement techniques developed in the Nuffield A level physical science assessment and statistical results obtained in 1968 and 1971. Concludes that individual projects are contributors of positive and valuable educational experiences to the course. (CC)
Descriptors: Curriculum Evaluation, Educational Development, Educational Research, Evaluation Methods
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Halliday, J. S. – Physics Education, 1981
Analyzes the relationship between learning objectives and assessment items for Technical Education Council physics courses. Suggests improvements. (SK)
Descriptors: College Science, Course Evaluation, Course Objectives, Evaluation Methods