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Showing 1 to 15 of 111 results Save | Export
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Lorusso, Nicholas S.; Gemmellaro, M. Denise – Biochemistry and Molecular Biology Education, 2023
One significant impact of the COVID-19 pandemic for educators in forensic science was adapting what is traditionally a very applied field to a virtual learning environment. Because of this, science classes with a practical laboratory component had to implement significant adjustments to ensure that student learning objectives were still met,…
Descriptors: Crime, Science Education, Distance Education, Electronic Learning
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Burns, Karolyn; Molina-Castrillón, Diego – Science Teacher, 2023
Historically, science education has not adequately addressed the concerns and values of BIPOC individuals and women, especially those who fall into both categories. One way that educators are addressing this disparity is by incorporating social justice into their curricula. Climate change is one of today's most pressing issues, and youth have much…
Descriptors: Science Education, Climate, Social Justice, Pollution
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Ekkens, Tom – Physics Teacher, 2022
In many introductory physics classes, diffraction of light is introduced first, then more advanced diffraction topics such as x-ray diffraction, Bragg's law, and crystallography are covered. Since using x-rays raises safety concerns and atomic spacing in a crystal is not easy to change, microwaves with macroscopic crystals have been used to study…
Descriptors: Data Collection, Physics, Science Education, Introductory Courses
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Forringer, Edward Russell – Physics Teacher, 2022
In a 1993 book review, E. Pearlstein asks, "Why don't textbook authors begin their discussion of magnetism by talking about magnets? That's what students have experience with." A similar question can be asked, "Why don't professors have students measure the force between permanent magnets in introductory physics labs?" The…
Descriptors: Science Education, Physics, Magnets, Measurement
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Aiken, John M.; Lewandowski, H. J. – Physical Review Physics Education Research, 2021
We present a model for sharing quantitative data in the field of physics education research and use it to present a newly available dataset as an example. This model is in line with calls from across physics and science more generally to democratize data and results through open access. The model includes suggestions for data collection, creation…
Descriptors: Physics, Educational Research, Data, Shared Resources and Services
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Xie, Charles; Li, Chenglu; Ding, Xiaotong; Jiang, Rundong; Sung, Shannon – Journal of Chemical Education, 2021
Digital sensors allow people to collect a large quantity of data in chemistry experiments. Using infrared thermography as an example, we show that this kind of data, in conjunction with videos that stream the chemical phenomena under observation from a vantage point, can be used to construct digital twins of experiments to support science…
Descriptors: Chemistry, Video Technology, Technology Integration, Laboratory Experiments
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LoPresto, Michael C. – Physics Teacher, 2018
In a recent "AstroNote," I described a simple exercise on the mass-luminosity relation for main sequence stars as an example of exposing students in a general education science course of lower mathematical level to the use of quantitative skills such as collecting and analyzing data. Here I present another attempt at a meaningful…
Descriptors: Physics, Scientific Concepts, Astronomy, General Education
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Blake, Mel; McKee, James; Statom, Richard; Qiu, Chiong; Menapace, Francis – Journal of Astronomy & Earth Sciences Education, 2018
Micrometeorites originate from small pieces of rock from space colliding with the Earth's atmosphere at high velocity, such as the Perseid meteors which hit the atmosphere at 60 km/s. When they do so, they burn up, causing a flash of light that we see as a meteor. Many groups have been successful collecting these particles using various devices.…
Descriptors: Citizen Participation, Scientific Research, Data Collection, Astronomy
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Prinster, Andrew J.; Hoskins, Josephina L.; Strode, Paul K. – American Biology Teacher, 2019
Students learning the skills of science benefit from opportunities to move between the scientific problems and questions they confront and the mathematical tools available to answer the questions and solve the problems. Indeed, students learn science best when they are actively engaged in pursuing answers to authentic and relevant questions. We…
Descriptors: Science Education, Science Process Skills, Problem Solving, Statistical Analysis
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Pence, Harry E.; Williams, Antony J. – Journal of Chemical Education, 2016
The amount of computerized information that organizations collect and process is growing so large that the term Big Data is commonly being used to describe the situation. Accordingly, Big Data is defined by a combination of the Volume, Variety, Velocity, and Veracity of the data being processed. Big Data tools are already having an impact in…
Descriptors: Chemistry, Science Education, Data Collection, Data Analysis
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Tchoua, Roselyne B.; Qin, Jian; Audus, Debra J.; Chard, Kyle; Foster, Ian T.; de Pablo, Juan – Journal of Chemical Education, 2016
Structured databases of chemical and physical properties play a central role in the everyday research activities of scientists and engineers. In materials science, researchers and engineers turn to these databases to quickly query, compare, and aggregate various properties, thereby allowing for the development or application of new materials. The…
Descriptors: Science Education, Chemistry, Thermodynamics, Databases
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Turrin, Margie – Science Teacher, 2015
Data and data analysis are central to science and the complex world in which people live. Students need to practice working with data--addressed in the "Next Generation Science Standards" (NGSS Lead States 2013)--starting with small, self-collected data sets and moving on to larger, remotely collected data assemblages. Small data sets…
Descriptors: Science Education, Data Collection, Data Analysis, Experiential Learning
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Hewitt, Jim – Journal of Learning Analytics, 2015
The article, "Distributed Revisiting: An Analytic for Retention of Coherent Science Learning" is an interesting study that operates at the intersection of learning theory and learning analytics. The authors observe that the relationship between learning theory and research in the learning analytics field is constrained by several…
Descriptors: Retention (Psychology), Science Education, Educational Research, Data Collection
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Nation, Molly Trendell; Feldman, Allan; Wang, Ping – Science Teacher, 2015
Global climate change and its effects are real and immediate. Students must gain an understanding of climate science so they can participate in public debate about how to reduce the emission of heat-trapping gases and how their communities can mitigate the effects of global warming. In this activity, students model these effects on Earth's oceans…
Descriptors: Global Approach, Climate, Pollution, Investigations
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Fulton, Lori – Science and Children, 2017
Writing in science is a natural way to integrate science and literacy and meet the goals set by the "Next Generation Science Standards" ("NGSS") and the "Common Core State Standards" ("CCSS"), which call for learners to be engaged with the language of science. This means that students should record…
Descriptors: Elementary School Teachers, Elementary School Science, Science Education, Writing Instruction
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