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Fisher, William P., Jr. – Measurement: Interdisciplinary Research and Perspectives, 2011
Humphry's article, "The Role of the Unit in Physics and Psychometrics," offers fundamental clarifications of measurement concepts that Fisher hopes will find a wide audience. In particular, parameterizing discrimination while preserving statistical sufficiency will indeed provide greater flexibility in accounting "for the effects of empirical…
Descriptors: Physics, Psychometrics, Statistical Analysis, Measurement
Whitworth, Brooke A.; Bell, Randy L. – Science Teacher, 2013
Traditionally, teachers assess students' physics understanding through lab activities, responses to open-ended word problems, and tests. But there is another way to measure student understanding, one in which students apply their learning to the world around them. This article shows how to implement student portfolios, which allow students to…
Descriptors: Physics, Portfolios (Background Materials), Portfolio Assessment, Secondary School Science
Dega, Bekele Gashe; Kriek, Jeanne; Mogese, Temesgen Fereja – Research in Science Education, 2013
The purpose of this study was to categorize 35 Ethiopian undergraduate physics students' alternative conceptions in the concepts of electric potential and energy. A descriptive qualitative research design was used to categorize the students' alternative conceptions. Four independently homogeneous ability focus groups were formed to elicit the…
Descriptors: Foreign Countries, Undergraduate Students, Physics, Scientific Concepts
Carter, Jason R.; West, John B. – Advances in Physiology Education, 2013
Compare and contrast strategies remain common pedagogical practices within physiological education. With the support of an American Physiological Society Teaching Career Enhancement Award, we have developed a junior- or senior-level undergraduate curriculum for exercise physiology that compares and contrasts the physiological adaptations of…
Descriptors: Physiology, Science Education, Exercise Physiology, Undergraduate Students
Ergin, Ismet – Educational Research and Reviews, 2013
The aim of this study is to state the points when choosing a method in studies concerning physics course new curriculum by evaluating researches whose topics are secondary physics course curriculum (in Turkey) in terms of subject, objective, method and consequences. 24 researches conducted within the lines of secondary physics course curriculum…
Descriptors: Foreign Countries, Physics, Science Instruction, Science Curriculum
Dunac, Patricia S.; Demi, Kadir – Physics Education, 2013
We engaged secondary science students in a teacher and student constructed Uno card game (UCG) to change their conceptual understanding of the various energy transformations. The paper outlines how we incorporated Toulmin's argumentation pattern (Toulmin 1958 "The Uses of Argument"(Cambridge: Cambridge University Press)) in the UCG,…
Descriptors: Science Instruction, Physics, Secondary School Science, Games
MacLeod, Katarin – European Journal of Physics Education, 2013
Science, technology, society, and environment (STSE) education has recently received attention in educational research, policy, and science curricular development. Fewer strides have been made in examining the connections between STSE education and learning/teaching physics. Examples of moving STSE theory into practice within a physics classroom…
Descriptors: STEM Education, Physics, Science Education, Correlation
Smith, Trevor I.; Thompson, John R.; Mountcastle, Donald B. – Physical Review Special Topics - Physics Education Research, 2013
One goal of physics instruction is to have students learn to make physical meaning of specific mathematical expressions, concepts, and procedures in different physical settings. As part of research investigating student learning in statistical physics, we are developing curriculum materials that guide students through a derivation of the Boltzmann…
Descriptors: Science Instruction, Mechanics (Physics), Mathematics, Scientific Concepts
Rodríguez, Y.; Santana, A.; Mendoza, L. M. – Physics Education, 2013
Recently, with the development of more powerful and accurate computational tools, the inclusion of new didactic materials in the classroom is known to have increased. However, the form in which these materials can be used to enhance the learning process is still under debate. Many different methodologies have been suggested for constructing new…
Descriptors: Physics, Optics, Computation, Technology Uses in Education
Maurines, Laurence; Beaufils, Daniel – Science & Education, 2013
Physics and chemistry programs at the secondary school level in France recommend introducing components of the history of science (HS). Emphasis is placed on a "cultural" dimension, which is poorly defined but essentially refers to elements of epistemological nature. Moreover, the few examples of activities based on HS suggested by the…
Descriptors: Physics, Chemistry, Learning Activities, Teaching Methods
Taasoobshirazi, Gita; Farley, John – International Journal of Science Education, 2013
The 24-item Physics Metacognition Inventory was developed to measure physics students' metacognition for problem solving. Items were classified into eight subcomponents subsumed under two broader components: knowledge of cognition and regulation of cognition. The students' scores on the inventory were found to be reliable and related to students'…
Descriptors: Physics, Metacognition, Measures (Individuals), Problem Solving
Watkins, Jessica; Mazur, Eric – Journal of College Science Teaching, 2013
In this paper we present results relating undergraduate student retention in science, technology, engineering, and mathematics (STEM) majors to the use of Peer Instruction (PI) in an introductory physics course at a highly selective research institution. We compare the percentages of students who switch out of a STEM major after taking a physics…
Descriptors: Undergraduate Students, STEM Education, Academic Persistence, Majors (Students)
Eirin-Lopez, Jose M. – Biochemistry and Molecular Biology Education, 2013
The study of chromatin constitutes one of the most active research fields in life sciences, being subject to constant revisions that continuously redefine the state of the art in its knowledge. As every other rapidly changing field, chromatin biology requires clear and straightforward educational strategies able to efficiently translate such a…
Descriptors: Undergraduate Students, Information Science, Evolution, Physics
Liu, Dennis W. C. – CBE - Life Sciences Education, 2013
To understand how life works, it is essential to understand physics and chemistry. Most biologists have a clear notion of where chemistry fits into their life sciences research and teaching. Although we are physical beings, physics does not always find a place in the biology curriculum. Physics informs and enlightens biology in myriad dimensions,…
Descriptors: Physics, Biology, Fused Curriculum, Unified Studies Curriculum
O'Shea, Brian; Terry, Laura; Benenson, Walter – CBE - Life Sciences Education, 2013
We present outcomes from curricular changes made to an introductory calculus-based physics course whose audience is primarily life sciences majors, the majority of whom plan to pursue postbaccalaureate studies in medical and scientific fields. During the 2011-2012 academic year, we implemented a Physics of the Life Sciences curriculum centered on…
Descriptors: Physics, Majors (Students), Active Learning, Teaching Methods

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