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Mattice, John – Journal of Chemical Education, 2008
To visualize what takes place in a chromatography column, enlarge the molecules to human size and expand the columns to keep the ratio of size of molecule to size of column the same. If we were molecules, what would the columns be like? A typical gas chromatography (GC) capillary column would be 50 x 10 [superscript 6] 6 km (31 million mi) long,…
Descriptors: Chemistry, Science Instruction, Molecular Structure, Scientific Principles
Carlone, Heidi B.; Haun-Frank, Julie; Webb, Angela – Journal of Research in Science Teaching, 2011
When evaluating equity, researchers often look at the "achievement gap." Privileging knowledge and skills as primary outcomes of science education misses other, more subtle, but critical, outcomes indexing inequitable science education. In this comparative ethnography, we examined what it meant to "be scientific" in two fourth-grade classes taught…
Descriptors: Ethnography, Science Education, Classroom Techniques, Science Interests
Koksal, Mustafa Serdar – Asia-Pacific Forum on Science Learning and Teaching, 2009
The "explicit-reflective-embedded" approach is an effective way of teaching nature of science (NOS). But, the studies have not provided a clear or explicit definition of the approach in terms of an instructional design framework. The approach has two sides including embedding into content knowledge and purposively teaching the NOS aspects as a…
Descriptors: Delphi Technique, Instructional Design, Scientific Principles, Biology
Horibe, Shusaku; Underwood, Bret – Physics Education, 2009
Classroom activities that include the process of model building, in which students build simplified physical representations of a system, have the potential to help students make meaningful connections between physics and the real world. We describe a lesson designed with this intent for an introductory college classroom that engages students in…
Descriptors: Class Activities, Learning Activities, Teaching Methods, Relevance (Education)
Ng, Pun-hon; Wong, Siu-ling; Mak, Se-yuen – Physics Education, 2009
In this article, we describe a simple method which can be used to measure the efficiency of a low power dc motor, a motor-converted dynamo and a coupled motor-dynamo module as a function of the speed of rotation. The result can also be used to verify Faraday's law of electromagnetic induction. (Contains 1 table and 8 figures.)
Descriptors: Energy, Science Instruction, Physics, Magnets
Millard, Julie T. – Journal of Chemical Education, 2009
Several case studies from popular television medical dramas are described for use in an undergraduate biochemistry course. These cases, which illustrate fundamental principles of biochemistry, are used as the basis for problems that can be discussed further in small groups. Medical cases provide an interesting context for biochemistry with video…
Descriptors: Biochemistry, Case Studies, Television, Drama
Hanegan, Nikki; Friden, Kelley; Nelson, C. Riley – School Science and Mathematics, 2009
Science is a dynamic discipline, representative of the nature of science. Yet, young science students continue to think everything is already discovered. In this study, we examine why students are not actively doing science. From professional development to student engagement, how are classrooms and students changing as we increase teachers'…
Descriptors: Scientific Principles, Professional Development, Teaching Methods, Pedagogical Content Knowledge
Narjaikaew, Pattawan; Emarat, Narumon; Arayathanitkul, Kwan; Cowie, Bronwen – International Journal of Science and Mathematics Education, 2010
The study investigated the impact on student motivation and understanding of magnetism of teaching sequences based on an inductive approach. The study was conducted in large lecture classes. A pre- and post-Conceptual Survey of Electricity and Magnetism was conducted with just fewer than 700 Thai undergraduate science students, before and after…
Descriptors: Teaching Methods, Student Motivation, Magnets, Science Instruction
Day, Lawrence – Teaching Science, 2008
For the case of objects thrown from an elevated position, students tend to believe an object thrown at an upward angle will always land farther away than one thrown horizontally at the same speed. That this is not always the case comes as a great surprise to many. By analysing the situation of a horizontally-thrown object outdistancing one thrown…
Descriptors: Motion, Science Instruction, Physics, Scientific Principles
Leif, Todd R. – Physics Teacher, 2008
This past semester I brought a Lava Lite[R] Lamp into my classroom. Why bring such a thing into class? Many of today's students are part of the "retro" movement. They buy clothes from the '60s, they wear their hair like people did in the '60s, and they look for the ideals and themes related to living in the 1960s. Physics education reform is also…
Descriptors: Physics, Science Instruction, Teaching Methods, Educational Change
Johansson, K. E.; Milstead, D. – Physics Education, 2008
The teaching of the Heisenberg uncertainty principle provides one of those rare moments when science appears to contradict everyday life experiences, sparking the curiosity of the interested student. Written at a level appropriate for an able high school student, this article provides ideas for introducing the uncertainty principle and showing how…
Descriptors: Physics, High School Students, Science Instruction, Scientific Principles
Arya, Diana Jaleh – ProQuest LLC, 2010
School science has been criticized for its lack of emphasis on the tentative, dynamic nature of science as a process of learning more about our world. This criticism is the guiding force for this present body of work, which focuses on the question: what are the educational benefits for middle school students of reading texts that highlight the…
Descriptors: Middle School Students, Readability, Scientific Principles, Minority Groups
Busch, Hauke C. – Physics Teacher, 2010
A traditional physical science course was transformed into an environmental physical science course to teach physics to non-science majors. The objective of the new course was to improve the learning of basic physics principles by applying them to current issues of interest. A new curriculum was developed with new labs, homework assignments,…
Descriptors: Nonmajors, Homework, Physics, Teaching Methods
Bean, Thomas E.; Sinatra, Gale M.; Schrader, P. G. – Journal of Science Education and Technology, 2010
The use of computer simulations as educational tools may afford the means to develop understanding of evolution as a natural, emergent, and decentralized process. However, special consideration of developmental constraints on learning may be necessary when using these technologies. Specifically, the essentialist (biological forms possess an…
Descriptors: Misconceptions, Models, Evolution, Bias
Hochberg, Robert; Gabric, Kathleen – American Biology Teacher, 2010
The "new biology" of the 21st century is increasingly dependent on mathematics, and preparing high school students to have both strong science and math skills has created major challenges for both disciplines. Researchers and educators in biology and mathematics have been working long hours on a project to create high school teaching modules…
Descriptors: Biology, Mathematics Skills, Mathematics Instruction, Interdisciplinary Approach

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