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Showing 1 to 15 of 20 results Save | Export
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Katherine A. Blackford; Adrienne A. Calderon; Nelson T. Gaillard; Alexander Zera; Daniel Droege; Stephanie G. Pitch; Caitlin M. Binder; Peter C. Marsden; Laura L. Fredriksen; Alexis A. Shusterman; Michelle C. Douskey; Anne M. Baranger – Journal of Chemical Education, 2022
The COVID-19 pandemic has emphasized the importance of designing effective methods for remote teaching. At the University of California, Berkeley, and the University of California, Santa Cruz, instructors adapted to the necessity of remote laboratory instruction by creating choose-your-own-adventure-style video-based online experiments introduced…
Descriptors: Science Laboratories, Electronic Learning, Curriculum Design, Curriculum Evaluation
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Jose´ M. Leo´n Ninin; Andrea E. Colina Blanco; Andreas Held; Britta Planer-Friedrich – Journal of Chemical Education, 2022
Environmental forensics is the application of knowledge from geosciences and chemistry in a legal setting, e.g., to determine the origin and consequences of contamination events. Teaching environmental forensics requires reactivating prior knowledge from different fields of natural sciences, filling knowledge gaps, and connecting pieces of…
Descriptors: Law Enforcement, Court Litigation, Prior Learning, Natural Sciences
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Kustusch, Mary Bridget; Manogue, Corinne; Price, Edward – Physical Review Physics Education Research, 2020
[This paper is part of the Focused Collection on Curriculum Development: Theory into Design.] A level of curricular design, called "design tactics," is identified to fill a gap in the research literature between the broad principles that guide curriculum development and the detailed writing of specific activities and lessons. The use of…
Descriptors: Physics, Curriculum Development, Science Instruction, Curriculum Design
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Robertson, Amy D.; Goodhew, Lisa M.; Heron, Paula R. L.; Scherr, Rachel E. – Physics Education, 2019
Existing accounts of student thinking about mechanical wave propagation and superposition emphasize that students sometimes treat wave pulses as objects, saying, for example, that pulses bounce off of one another when they meet. In this paper, we present a context in which students explicitly reason about pulses as not-objects, instead describing…
Descriptors: Physics, Scientific Concepts, Energy, Science Process Skills
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Burkholder, Eric W.; Murillo-Gonzalez, Gabriel; Wieman, Carl – Physical Review Physics Education Research, 2021
Previous work has looked at the relationship between high school preparation and student performance in calculus-based introductory mechanics (physics 1) courses. Here, we extend that work to look at performance in introductory calculus-based electricity and magnetism (physics 2), and we look at the significance of what college math courses have…
Descriptors: Physics, Science Instruction, Introductory Courses, Calculus
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Walkup, John R.; Key, Roger A.; Duncan, Sean Patrick; Sheldon, Avery E.; Walkup, Michael A. – Physics Education, 2020
Error analysis consumes much of the focus in introductory physics labs. Catastrophic cancellation is a spike in error that occurs when subtracting two measurements of roughly equal magnitude. Often termed "loss of significance" or "subtractive cancellation," this effect can easily relegate experimental results to utter…
Descriptors: Physics, Science Instruction, Laboratory Experiments, Teaching Methods
Greene, Kim; Heyck-Williams, Jeff; Timpson Gray, Elicia – Educational Leadership, 2017
Problem solving spans all grade levels and content areas, as evidenced by this compilation of projects from schools across the United States. In one project, high school girls built a solar-powered tent to serve their city's homeless population. In another project, 4th graders explored historic Jamestown to learn about the voices lost to history.…
Descriptors: Problem Solving, Females, High School Students, Homeless People
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Loverude, Michael – Physical Review Special Topics - Physics Education Research, 2015
As part of an ongoing project to examine student learning in upper-division courses in thermal and statistical physics, we have examined student reasoning about entropy and the second law of thermodynamics. We have examined reasoning in terms of heat transfer, entropy maximization, and statistical treatments of multiplicity and probability. In…
Descriptors: Science Instruction, Scientific Concepts, Physics, Thermodynamics
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Kohnle, Antje; Passante, Gina – Physical Review Physics Education Research, 2017
Analyzing, constructing, and translating between graphical, pictorial, and mathematical representations of physics ideas and reasoning flexibly through them ("representational competence") is a key characteristic of expertise in physics but is a challenge for learners to develop. Interactive computer simulations and University of…
Descriptors: Physics, Science Instruction, Quantum Mechanics, Computer Simulation
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Liu, Ou Lydia; Ryoo, Kihyun; Linn, Marcia C.; Sato, Elissa; Svihla, Vanessa – International Journal of Science Education, 2015
Although researchers call for inquiry learning in science, science assessments rarely capture the impact of inquiry instruction. This paper reports on the development and validation of assessments designed to measure middle-school students' progress in gaining integrated understanding of energy while studying an inquiry-oriented curriculum. The…
Descriptors: Energy, Science Education, Psychometrics, Case Studies
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Rowat, Amy C.; Sinha, Naveen N.; Sörensen, Pia M.; Campàs, Otger; Castells, Pere; Rosenberg, Daniel; Brenner, Michael P.; Weitz, David A. – Physics Education, 2014
Cooking is a tangible, familiar, and delicious tool for teaching physics, which is easy to implement in a university setting. Through our courses at Harvard and UCLA, each year we are engaging hundreds of undergraduate students, primarily non-science majors, in science concepts and the scientific research process. We find that weekly lectures by…
Descriptors: Science Instruction, College Science, Undergraduate Students, Nonmajors
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Sadaghiani, Homeyra R. – Physical Review Special Topics - Physics Education Research, 2011
We have been piloting web-based multimedia learning modules (MLMs), developed by the Physics Education Research Group at the University of Illinois at Urbana Champaign (UIUC), as a "prelecture assignment" in several introductory physics courses at California State Polytechnic University at Pomona. In this study, we report the results…
Descriptors: Multimedia Materials, Learning Modules, Blended Learning, Online Courses
Business-Higher Education Forum, 2013
This is the first in a series of Business-Higher Education Forum (BHEF) playbooks intended to assist companies, higher education institutions, private philanthropies, membership associations, professional societies, government agencies, and other stakeholders seeking to understand the potential value of investing in coordinated strategic,…
Descriptors: Higher Education, Labor Force Development, Partnerships in Education, Academic Persistence
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Kishore, Padmini; Kisiel, James – International Journal of Environmental and Science Education, 2013
Although studies examining student understanding of key concepts are common throughout the science education literature, few have examined science concepts linked to conservation or environmental issues such as global warming and alternative energy. How students make sense of these complex concepts has the potential to influence their role as…
Descriptors: High School Students, Secondary School Science, Concept Formation, Scientific Concepts
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Donovan, D. A.; Atkins, L. J.; Salter, I. Y.; Gallagher, D. J.; Kratz, R. F.; Rousseau, J. V.; Nelson, G. D. – CBE - Life Sciences Education, 2013
We report on the development of a life sciences curriculum, targeted to undergraduate students, which was modeled after a commercially available physics curriculum and based on aspects of how people learn. Our paper describes the collaborative development process and necessary modifications required to apply a physics pedagogical model in a life…
Descriptors: Physics, Botany, Biology, Educational Change
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