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Ketonen, Laura; Lehtinen, Antti; Koskinen, Pekka – Physical Review Physics Education Research, 2023
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] In recent years, physics instructional labs have been under considerable research and development. However, there seems to be no shared understanding of how the assessment of instructional labs should be arranged to best serve students'…
Descriptors: Physics, Science Laboratories, Science Instruction, Summative Evaluation
Sobhanzadeh, Mandana; Zizler, Peter – Physics Teacher, 2021
In this paper, we present a selection methodology in the physics laboratory that lowers student anxiety and is beneficial to the instructors as well. At Mount Royal University, the traditional laboratory experimental exercises were replaced by a new style of laboratory called labatorials. In our previous research work, we found that labatorials…
Descriptors: Evaluation Methods, Introductory Courses, Physics, Laboratory Experiments
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
Al-Salmani, Fatema; Johnson, Jordan; Thacker, Beth – Physical Review Physics Education Research, 2023
We present an analysis of students' thinking skills as evidenced by free-response exam problems during the COVID-19 pandemic. We compare two inquiry-based, laboratory-based classical mechanics courses, one taught online and one taught in person during the pandemic, and two inquiry-based, laboratory-based electricity and magnetism courses, one…
Descriptors: Thinking Skills, Evaluation Methods, Comparative Analysis, Inquiry
Ketonen, Laura; Hähkiöniemi, Markus; Nieminen, Pasi; Viiri, Jouni – International Journal of Science and Mathematics Education, 2020
Peer assessment has been shown to advance learning, for example, by improving one's work, but the variance of learning benefits within or between studies has not been explained. The purpose of this case study was to examine what kinds of pathways students have through peer assessment and to study which factors affect them when peer assessment is…
Descriptors: Peer Evaluation, Evaluation Methods, Physics, Science Instruction
Gamo, Javier – IEEE Transactions on Education, 2019
Contribution: There are many on-line resources available to learn about optics and photonics, but no assessment tools exist to evaluate the learning achievements. This paper presents an assessment framework whose validity has been proven on a course with over 70 engineering students. Background: There is evidence that on-line resources complement…
Descriptors: Optics, Engineering Education, Computer Software, Validity
Ocaya, R. O.; Luhanga, P. V. C. – European Journal of Physics, 2011
It is shown that the well-known linear variation of p-n diode terminal voltage with temperature at different fixed forward currents allows easy and accurate determination of the semiconductor ideality factor and bandgap from only two data points. This is possible if the temperature difference required to maintain the same diode voltage drop can be…
Descriptors: Physics, Laboratories, Climate, Undergraduate Study
Sullivan, Dan M.; Smith, Robert W.; Kemnitz, E. J.; Barton, Kevin; Graham, Robert M.; Guenther, Raymond A.; Webber, Larry – Physics Teacher, 2010
Every student who studies atmospheric pressure in physics or chemistry learns the principles behind the construction of barometers. Cistern barometers, such as those found in most laboratories, consist of a long glass tube containing an inverted column of liquid having an open end in a cistern of the liquid. Students learn that the column of…
Descriptors: Physics, Laboratories, Scientific Concepts, Science Education
Weltner, Klaus; Esperidiao, Antonio Sergio C.; Miranda, Paulo – Science & Education, 2004
We show that the treatment of pendulum movement, other than the linear approximation,may be an instructive experimentally based introduction to the physics of non-linear effects. Firstly the natural frequency of a gravitational pendulum is measured as function of its amplitude. Secondly forced oscillations of a gravitational pendulum are…
Descriptors: Laboratory Equipment, Physics, Scientific Research, Evaluation Methods

Tomas, F. – Physics Teacher, 1971
Descriptors: College Science, Computer Programs, Evaluation Methods, Grading

Krieger, Albert G. – School Science and Mathematics, 1972
Descriptors: Acoustics, Equipment Evaluation, Evaluation, Evaluation Methods
Mader, Jan; Winn, Mary – AAPT Press (BK), 2008
This book is designed to be a quick and easy resource for anyone teaching physics for the first time. Written after extensive research, this book is filled with reliable labs, demos and activities that work well in the classroom. Also included are lesson plans, diagrams, and teacher notes for every activity. The book is not the end--it is just a…
Descriptors: Optics, Motion, Physics, Science Instruction

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

Moreira, M. A. – European Journal of Science Education, 1980
Described is a nontraditional approach to the evaluation of laboratory instruction in general physics courses which focuses on the identification of telling questions, key concepts and basic phenomena involved in the experiment, description of the method used, and the results. (DS)
Descriptors: College Science, Educational Research, Evaluation Methods, Higher Education

Slater, Timothy F.; Ryan, Joseph M. – Physics Teacher, 1993
Describes a performance assessment protocol that rates six goals: (1) methodology of research, (2) use of equipment, (3) accuracy in measurement, (4) application of concepts and formulas, (5) use of mathematics, and (6) completeness and clarity. Provides an example performance task evaluation sheet. (MVL)
Descriptors: Evaluation Methods, Higher Education, Performance Based Assessment, Physics
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