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Dumar, John – Physics Teacher, 2021
When our school implemented AP Physics 1, I wanted to include a project that would extend over time, use more advanced data analysis, and teach students about handling experimental error. Using a donated 5-inch Newtonian telescope and an entry-level digital camera, the students gathered data from digital images of the four Galilean moons, Io,…
Descriptors: Science Instruction, Physics, Advanced Placement Programs, Laboratory Equipment
Stoeckel, Marta R.; Roehrig, Gillian H. – Physical Review Physics Education Research, 2021
Women are underrepresented at multiple levels of physics education. One avenue for understanding the classroom experiences that perpetuate underrepresentation is physics identity, defined using the three dimensions of recognition, performance, and competence. Existing literature suggests that women tend to have a much weaker physics identity than…
Descriptors: Gender Differences, Class Activities, Laboratory Experiments, Discovery Learning
Rosenberg, Joshua M.; Lawson, Michael A. – Education Sciences, 2019
Science educators have begun to explore how students have opportunities to not only view and manipulate simulations, but also to analyze the complex sources of data they generate. While scholars have documented the characteristics and the effects of using simulations as a source of data in face-to-face, K-12 classrooms, how simulations can be…
Descriptors: Online Courses, High School Students, Secondary School Science, Physics
Bonjour, Jessica L.; Hass, Alisa L.; Pollock, David W.; Huebner, Aaron; Frost, John A. – Journal of Chemical Education, 2017
Development of benchtop, portable Fourier transform nuclear magnetic resonance (NMR) and infrared (IR) spectrometers has opened up opportunities for creating university-high school partnerships that provide high school students with hands-on experience with NMR and IR instruments. With recent changes to the international baccalaureate chemistry…
Descriptors: Organic Chemistry, Spectroscopy, Measurement Equipment, Science Education
Siegel, Deborah – Science Teacher, 2013
Science fairs can be good motivators, but as extracurricular activities, they leave some students behind. However, by staging a Science Challenge Day at school, educators can involve all students in doing everything from choosing activities to judging projects. This article presents a model for running a successful Science Challenge Day. The…
Descriptors: Science Instruction, Advanced Placement Programs, Discipline, Teamwork
Beeken, Paul – Physics Teacher, 2011
While perusing various websites in search of a more challenging lab for my students, I came across a number of ideas where replacing the string in an Atwood's machine with a simple ball chain like the kind found in lamp pulls created an interesting system to investigate. The replacement of the string produced a nice nonuniform acceleration, but…
Descriptors: Physics, Laboratory Experiments, Science Experiments, Science Instruction

Whelan, R.; Espinoza, F. – Physics Teacher, 1989
Discusses a high school advanced placement physics course cooperating with neighboring college. Describes the background, titles of experiments, report format, and discussion. (YP)
Descriptors: Advanced Placement Programs, College School Cooperation, College Science, Laboratories
Cross, Tina R.; Cross, Victor E. – American Biology Teacher, 2004
A statistical comparison of real and virtual frog dissections methods has been made. A study was designed to test whether students in high school AP biology class performed equally well using both methods or one method was better than the other.
Descriptors: Advanced Placement Programs, Biology, Laboratory Procedures, Comparative Analysis

Liebermann, John, Jr.; Yun, Ki J. – Journal of Chemical Education, 1988
Examines a solubility laboratory experiment using silver acetate and spectrophotometers for an Advanced Placement chemistry course. Covers experimental procedure, analysis of saturated solutions, and a discussion of chemistry involved. Includes an absorbance curve for silver ions and solution preparation suggestions. (ML)
Descriptors: Advanced Placement Programs, Chemical Analysis, Chemical Reactions, Chemistry
Advanced Placement Chemistry: A Feasible, Alternative Approach to Advanced Placement Chemistry Labs.

Bergmeier, Brian D. – Journal of Chemical Education, 1984
Discusses two factors to consider when initiating advanced placement (AP) chemistry, namely, the quality of those teaching the program and the time necessary to teach the relevant concepts. Suggests offering laboratory sessions during evening hours as an alternative to traditional daytime arrangements for laboratory blocks. (JN)
Descriptors: Advanced Placement Programs, Chemistry, Scheduling, Science Curriculum
Cacciatore, Kristen L.; Sevian, Hannah – Journal of Chemical Education, 2006
We present an alternative to a traditional first-year chemistry laboratory experiment. This experiment has four key features: students utilize stoichiometry, learn and apply principles of green chemistry, engage in authentic scientific inquiry, and discover why each part of a scientific lab report is necessary. The importance and essential…
Descriptors: Stoichiometry, Technical Writing, Verbal Communication, Chemistry

Lundberg, Doug – American Biology Teacher, 1993
Describes using a local college for the teaching of the recommended Advance Placement laboratories as a way to increase greatly needed course time and to increase the amount of equipment available. (PR)
Descriptors: Advanced Placement Programs, Biology, College Science, High Schools

Herr, Norman Edward – Journal of Research in Science Teaching, 1992
Contrasts the traditional honors program and the Advanced Placement program of the College Entrance Examination Board using the self-reports of 155 high school science teachers experienced in both programs. Examines the perceived influences of each program format upon the use of basic teaching techniques, laboratory experiences, pacing of the…
Descriptors: Academic Freedom, Advanced Placement Programs, Comparative Analysis, Creative Thinking