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Campbell, Dean J.; Staiger, Felicia A.; Jujjavarapu, Chaitanya N. – Journal of Chemical Education, 2015
The whoosh bottle rocket car has been redesigned to be more reusable and more robust, making it even easier to use as a demonstration. Enhancements of this demonstration, including the use of heat sensitive ink and electronic temperature probes, enable users to find warmer and cooler regions on the surface of the whoosh bottle.
Descriptors: Motor Vehicles, Auto Mechanics, Undergraduate Students, Science Course Improvement Projects
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Fantz, Todd D.; Grant, Melva R. – Technology and Engineering Teacher, 2013
The article offers information on making technology education students interested in science and mathematics through the use of a T-shirt launcher design project. This project was designed for junior and senior level high school students who have completed or are currently taking physics and precalculus. The project involves designing an…
Descriptors: STEM Education, Science Interests, Science Course Improvement Projects, High School Students
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Henriksen, Ellen K.; Bungum, Berit; Angell, Carl; Tellefsen, Catherine W.; Frågåt, Thomas; Bøe, Maria Vetleseter – Physics Education, 2014
In this article, we discuss how quantum physics and relativity can be taught in upper secondary school, in ways that promote conceptual understanding and philosophical reflections. We present the ReleQuant project, in which web-based teaching modules have been developed. The modules address competence aims in the Norwegian national curriculum for…
Descriptors: Quantum Mechanics, Physics, Secondary School Science, Secondary School Curriculum
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Metcalfe, Gareth – Primary Science, 2014
How can educators provide children with a genuine experience of carrying out an extended scientific investigation? And can teachers change the perception of what it means to be a scientist? These were key questions that lay behind "The Human Condition" project, an initiative funded by the Primary Science Teaching Trust to explore a new…
Descriptors: Scientific Methodology, Scientific Research, Investigations, Learning Experience
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Maloney, Jane; Curtis, Sheila – Primary Science, 2012
How do teachers help children understand the difference between the structure of a flower and that of a root? Depending on the time of year this activity is quite easy. Get a bunch of flowers, germinate some chickpeas and raid the kitchen for carrots and beetroots--the children can experience the "real thing". But what if teachers want the…
Descriptors: Teaching Methods, Models, Scientific Literacy, Use Studies
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Putti, Alice – Science Teacher, 2012
This guided inquiry activity was developed to help students "view" an equilibrium system from the particulate level and make connections to their macroscopic observations. Part I helps students observe a physical equilibrium system in which water is transferred between two larger containers. In Part II, students examine what happens to a chemical…
Descriptors: Chemistry, Science Activities, Science Course Improvement Projects, Science Instruction
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Smith, Karianne; Hughes, William – Technology and Engineering Teacher, 2013
In the fall of 2011, Park Forest Middle School (PFMS) students approached the STEM faculty with numerous questions regarding the popular television show Myth Busters, which detailed Greek mathematician, physicist, engineer, and inventor, Archimedes. Two episodes featured attempts to test historical accounts that Archimedes developed a death ray…
Descriptors: STEM Education, Science Course Improvement Projects, Student Projects, Scientific Concepts
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Lindquist, William; Forsberg, Britt – Science and Children, 2014
One author shares the unique opportunity to be immersed in the science of "sound at work" through participation in NOAA's (National Oceanic and Atmospheric Administration) Teacher at Sea Program. A third- through fifth-grade learning outcome within the Nature of Science section of the "Next Generation Science Standards"…
Descriptors: Acoustics, Instructional Innovation, Science Course Improvement Projects, Teaching Methods
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Koser, John – Physics Teacher, 2011
Students in introductory physics courses often don't study thermodynamics or thermodynamic events. If any thermal physics is taught in introductory courses (e.g., Physics 101 for Liberal Arts Majors), it usually involves the concepts of specific heat and various temperature scales. Seldom are the first and second laws of thermodynamics taught in…
Descriptors: Introductory Courses, Thermodynamics, Scientific Concepts, Concept Teaching
Sparks, Sarah D. – Education Week, 2010
When a federal court in 2005 rejected an attempt by the Dover, Pennsylvania, school board to introduce intelligent design as an alternative to evolution to explain the development of life on Earth, it sparked a renaissance in involvement among scientists in K-12 science instruction. Now, some of those teaching programs, studies, and research…
Descriptors: Evolution, Class Activities, Court Litigation, Controversial Issues (Course Content)
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Subramaniam, Karthigeyan – Clearing House: A Journal of Educational Strategies, Issues and Ideas, 2012
This article examines the merits of WebQuests in facilitating students' in-depth understanding of science concepts using the four principles of learning gathered from the National Research Council reports "How People Learn: Brain, Mind, Experience, and School" (1999) and the "How Students Learn: Science in the Classroom" (2005) as an analytic…
Descriptors: Scientific Principles, Courseware, Classroom Techniques, Scientific Concepts
Schunn, Christian – National Center for Engineering and Technology Education, 2011
At the University of Pittsburgh, the author and his colleagues have been exploring a range of approaches to design challenges for implementation in high school science classrooms. In general, their approach has always involved students working during class time over the course of many weeks. So, their understanding of what works must be…
Descriptors: Engineering Education, Engineering Technology, Scientific Principles, Learning Experience
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Spector, Barbara S.; Burkett, Ruth; Leard, Cyndy – Science Educator, 2012
This paper introduces a model for using informal science education venues as contexts within which to teach the nature of science. The model was initially developed to enable university education students to teach science in elementary schools so as to be consistent with "National Science Education Standards" (NSES) (1996) and "A Framework for…
Descriptors: Elementary Secondary Education, Scientific Principles, Experiential Learning, Science Education
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Fagerlund, Johan; Zevenhoven, Ron; Hulden, Stig-Goran; Sodergard, Berndt – Journal of Chemical Education, 2010
To determine the carbonation degree of materials used in mineral carbonation experiments, a fast, simple, and sufficiently accurate method is required. For this purpose, a method based on the reaction between carbonates and hydrochloric acid was developed. It was noted that this method could also be used to teach undergraduate students some basic…
Descriptors: Undergraduate Students, Thermodynamics, Inorganic Chemistry, Measurement Equipment
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Wolyniak, Michael J.; Alvarez, Consuelo J.; Chandrasekaran, Vidya; Grana, Theresa M.; Holgado, Andrea; Jones, Christopher J.; Morris, Robert W.; Pereira, Anil L.; Stamm, Joyce; Washington, Talitha M.; Yang, Yixin – CBE - Life Sciences Education, 2010
Synthetic biology is the application of engineering and mathematical principles to develop novel biological devices and circuits. What separates synthetic biology from traditional molecular biology is the development of standardized interchangeable DNA "parts," just as advances in engineering in the nineteenth century brought about standardized…
Descriptors: Genetics, Biology, Workshops, Consortia