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Mitchell, Brandon; Ekey, Robert; McCullough, Roy; Reitz, William – Physics Teacher, 2018
Teaching simple circuits and Ohm's law to students in the introductory classroom has been extensively investigated through the common practice of using incandescent light bulbs to help students develop a conceptual foundation before moving on to quantitative analysis. However, the bulb filaments' resistance has a large temperature dependence,…
Descriptors: Statistical Analysis, Models, Equipment, Science Instruction
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Walkup, John R.; Key, Roger A.; Talbot, Patrick R. M. – Physics Education, 2019
A lab activity for teaching physics students the fundamentals of statistical analysis during the first few weeks of instruction is described. This activity involves students timing a pulse of light generated by an Arduino device of fixed duration with individual timers (e.g. stopwatch, iPhone timer). To select the most precise timing methods and…
Descriptors: Physics, Introductory Courses, Science Instruction, Laboratory Experiments
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de Sousa, Gabriel L. A.; Cardoso, George C. – Physics Education, 2018
We use analogies to provide introductory laboratory students intuition into measurement uncertainties. Using a battery-resistor circuit we discuss uncertainty concepts and derive expressions for uncertainty of the mean and sums of uncertainties. Finally, we draw attention to the fact that the interpretation of standard deviation as uncertainty…
Descriptors: Physics, Science Instruction, Statistical Analysis, Introductory Courses
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Yasuda, Jun-ichro; Mae, Naohiro; Hull, Michael M.; Taniguchi, Masa-aki – Physical Review Physics Education Research, 2018
In this study, we analyze the systematic error from false positives of the Force Concept Inventory (FCI). We compare the systematic errors of question 6 (Q.6), Q.7, and Q.16, for which clearly erroneous reasoning has been found, with Q.5, for which clearly erroneous reasoning has not been found. We determine whether or not a correct response to a…
Descriptors: Scientific Concepts, Science Instruction, College Science, Physics
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Al Sultan, Adam; Henson, Harvey, Jr.; Fadde, Peter J. – IAFOR Journal of Education, 2018
Many educators and educational institutions worldwide have agreed that the main goal of science education is to produce a scientifically literate community. Science teachers are key to the achievement of scientific literacy at all levels of education because of the essential role they play in preparing scientifically literate individuals. Studies…
Descriptors: Preservice Teachers, Elementary Education, Scientific Literacy, Self Efficacy
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Amos, Nathaniel; Heckler, Andrew F. – Physical Review Physics Education Research, 2018
In the context of introductory physics, we study student conceptual understanding of differentials, differential products, and integrals and possible pathways to understanding these quantities. We developed a multiple choice conceptual assessment employing a variety of physical contexts probing physical understanding of these three quantities and…
Descriptors: Physics, Introductory Courses, Science Instruction, Scores
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Crouch, Catherine H.; Wisittanawat, Panchompoo; Cai, Ming; Renninger, K. Ann – Physical Review Physics Education Research, 2018
In response to national calls for improved physical sciences education for students pursuing careers in the life sciences and medicine, reformed introductory physics for life sciences (IPLS) courses are being developed. This exploratory study is among the first to assess the effect of an IPLS course on students' attitudes, interest, and…
Descriptors: Science Instruction, Student Attitudes, Student Interests, Physics
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Maries, Alexandru; Singh, Chandralekha – Physical Review Physics Education Research, 2018
Drawing appropriate diagrams is a useful problem solving heuristic that can transform a problem into a representation that is easier to exploit for solving it. One major focus while helping introductory physics students learn effective problem solving is to help them understand that drawing diagrams can facilitate problem solution. We conducted an…
Descriptors: Science Instruction, Physics, Introductory Courses, Comparative Analysis
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Vonk, Matthew; Bohacek, Peter; Militello, Cheryl; Iverson, Ellen – Physical Review Physics Education Research, 2017
This study focuses on student development of two important laboratory skills in the context of introductory college-level physics. The first skill, which we call model making, is the ability to analyze a phenomenon in a way that produces a quantitative multimodal model. The second skill, which we call model breaking, is the ability to critically…
Descriptors: Models, Design, Video Technology, College Science
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Kustusch, Mary Bridget – Physical Review Physics Education Research, 2016
Students in introductory physics struggle with vector algebra and these challenges are often associated with contextual and representational features of the problems. Performance on problems about cross product direction is particularly poor and some research suggests that this may be primarily due to misapplied right-hand rules. However, few…
Descriptors: Algebra, Geometric Concepts, Academic Achievement, Introductory Courses
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McDaniel, Mark A.; Stoen, Siera M.; Frey, Regina F.; Markow, Zachary E.; Hynes, K. Mairin; Zhao, Jiuqing; Cahill, Michael J. – Physical Review Physics Education Research, 2016
The existing literature indicates that interactive-engagement (IE) based general physics classes improve conceptual learning relative to more traditional lecture-oriented classrooms. Very little research, however, has examined quantitative problem-solving outcomes from IE based relative to traditional lecture-based physics classes. The present…
Descriptors: Problem Solving, Introductory Courses, Physics, Science Instruction
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Gutmann, Brianne; Gladding, Gary; Lundsgaard, Morten; Stelzer, Timothy – Physical Review Physics Education Research, 2018
Encouraged by positive clinical results at the University of Illinois, mastery-style homework was integrated into a large semester-long preparatory physics course via an online homework system that used narrated animated video solutions as correctives. This paper discusses the impact and evolution of the homework in its first two years. The first…
Descriptors: Physics, Homework, Science Instruction, Introductory Courses
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Forrest, Rebecca L.; Stokes, Donna W.; Burridge, Andrea B.; Voight, Carol D. – Physical Review Physics Education Research, 2017
Pretesting and early intervention measures to identify and remediate at-risk students were implemented in algebra-based introductory physics to help improve student success rates. Pretesting via a math and problem-solving diagnostic exam administered at the beginning of the course was employed to identify at-risk students based on their scores.…
Descriptors: Remedial Mathematics, Intervention, Academic Achievement, Introductory Courses
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Hodges, Linda C.; Anderson, Eric C.; Carpenter, Tara S.; Cui, Lili; Feeser, Elizabeth A.; Gierasch, Tiffany Malinky – Journal of College Science Teaching, 2017
Clickers are often used as an active learning tool in face-to-face classes to enhance student engagement and assess student learning. In this article we share the variety of ways that we use clicker questions to promote deliberate practice in large science courses. Deliberate practice is the use of specifically structured exercises that develop…
Descriptors: Audience Response Systems, Science Instruction, Large Group Instruction, College Science
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Young, Nicholas T.; Heckler, Andrew F. – Physical Review Physics Education Research, 2018
In the context of a generic harmonic oscillator, we investigated students' accuracy in determining the period, frequency, and angular frequency from mathematical and graphical representations. In a series of studies including interviews, free response tests, and multiple-choice tests developed in an iterative process, we assessed students in both…
Descriptors: Interviews, Accuracy, Multiple Choice Tests, Algebra
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