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Jones-Held, Susan; Paoletti, Robert; Glick, David; Held, Michael E. – Bioscene: Journal of College Biology Teaching, 2010
In this article we describe a multi-week investigative laboratory in microbial ecology/diversity and nitrogen cycling that we have used in our introductory biology course. This module encourages active student involvement in experimental design, using the scientific literature and quantitative analysis of large data sets. Students analyze soil…
Descriptors: Research Design, Laboratories, Ecology, Biology
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Kausaite, Asta; van Dijk, Martijn; Castrop, Jan; Ramanaviciene, Almira; Baltrus, John P.; Acaite, Juzefa; Ramanavicius, Arunas – Biochemistry and Molecular Biology Education, 2007
Detection of biologically active compounds is one of the most important topics in molecular biology and biochemistry. One of the most promising detection methods is based on the application of surface plasmon resonance for label-free detection of biologically active compounds. This method allows one to monitor binding events in real time without…
Descriptors: Biochemistry, Molecular Biology, Laboratory Training, Experiments
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Martin-Dunlop, Catherine; Hodum, Peter – Journal of College Science Teaching, 2009
This article describes a research study in which a biologist and his research on Antarctic seabirds became part of an integrated science course for prospective elementary teachers. Students used the scientist's database on seabird chick growth rates for an experimental design investigation while the "regular" classes had a single science…
Descriptors: Research Design, Investigations, Scientific Principles, Databases
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Mildenhall, Paula; Swan, Paul; Northcote, Maria; Marshall, Linda – Australian Primary Mathematics Classroom, 2008
As part of the project titled "Hands-On Heads-On: The Effective Use of Manipulatives Both Virtual and Physical" being undertaken at Edith Cowan University, there was an investigation into the use of virtual manipulatives and the interactive whiteboard (IWB). Virtual manipulatives may be defined as a virtual representation of a physical…
Descriptors: Investigations, Mathematical Concepts, Manipulative Materials, Educational Technology
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Lord, Thomas; Shelly, Chad; Zimmerman, Rachel – Journal of College Science Teaching, 2007
Can you imagine a class where students cover the content with each other rather than simply listening to the professor's lecture? Can you envision students developing their own laboratory investigations and quizzing each other weekly to check for understanding? Well, that's pretty much how the major science organizations across the nation are…
Descriptors: Investigations, College Science, Botany, Laboratory Experiments
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Brewer, Carol A. – American Biology Teacher, 1996
Presents investigations of leaf surface wetness that provide ideal opportunities for students to explore the relationships between leaf form and function, to study surface conditions of leaves and plant physiology, and to make predictions about plant adaptation in different environments. Describes simple procedures for exploring questions related…
Descriptors: Biology, Higher Education, Inquiry, Investigations
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Burgess, Tim – Physics Teacher, 1996
Presents activities and investigations that provide a trail of physics-related topics for students to investigate at a bowling alley. (JRH)
Descriptors: Higher Education, Investigations, Mechanics (Physics), Physics
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Lawson, Anton E. – American Biology Teacher, 1996
Presents activities that use the learning cycle to engage students in meaningful inquiries in the study of Mendelian genetics. Includes content-related background and teaching tips for each phase of the learning cycle. (JRH)
Descriptors: Biology, Genetics, Higher Education, Inquiry
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Francis, Richard L. – Mathematics Teacher, 1993
A number for which the number of digits categorizes the number is called a star number. A set of star numbers having a designated property is called a constellation. Discusses nature and cardinality of constellations made up of star square, star prime, star abundant, and star deficient numbers. Presents five related problems for exploration. (MDH)
Descriptors: Discovery Learning, High Schools, Higher Education, Investigations
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Dengate, Bob – Australian Mathematics Teacher, 1992
Suggests structured investigations as a method of teaching mathematics to preservice elementary school teacher. Presents an example problem that asks students to determine the maximum number of regions that can be created by connecting any two points around the circumference of a circle. (MDH)
Descriptors: Discovery Learning, Elementary Education, Higher Education, Investigations
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Yuretich, Richard F. – Journal of College Science Teaching, 2003
Active learning promotes higher-level reasoning, and it can be achieved in large classes without wholesale changes in class format. Applicable methods include in-class mini-investigations, robust multiple-choice exam questions, online quizzes or review, and cooperative learning, particularly during exams. Data gleaned from observing student…
Descriptors: Investigations, Computer Assisted Instruction, Cooperative Learning, Tests
Alaska State Professional Teaching Practices Commission, Anchorage. – 1992
This handbook describes procedures used by Alaska's Professional Teaching Practices Commission (PTPC) in dealing with matters of professional conduct and certification within the teaching profession. The handbook summarizes procedures for handling complaints, investigations, hearings, and appeals. Guidelines for screening complaints are listed. A…
Descriptors: Codes of Ethics, Due Process, Educational Policy, Elementary Secondary Education
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Kinderman, Jesusa Valdez – Physics Teacher, 1992
Describes a computer simulation of the Compton effect designed to lead students to discover (1) the relationship of the electron's final kinetic energy to its angle of scattering and (2) the relationship between the scattering angles of the outgoing electron and photon. (MDH)
Descriptors: Computer Assisted Instruction, Computer Simulation, Discovery Learning, Energy