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Showing 1 to 15 of 30 results Save | Export
Morales, Hector – Techniques: Connecting Education and Careers (J1), 2010
Incorporating business skills such as problem-solving, public presentations, collaboration, and self-direction into STEM (science, technology, engineering and mathematics) subjects is an excellent way to build students' enthusiasm for these disciplines. When educators add workplace internships to the learning experience, they are well on their way…
Descriptors: Careers, Experiential Learning, Engineering, High School Seniors
Luciano, Carl S.; Young, Matthew W.; Patterson, Robin R. – Microbiology Education, 2002
Describes a student-centered laboratory course in which student teams select phage from sewage samples and characterize the phage in a semester-long project that models real-life scientific research. Results of student evaluations indicate a high level of satisfaction with the course. (Author/MM)
Descriptors: Active Learning, Experiential Learning, Higher Education, Microbiology
Peer reviewed Peer reviewed
Manning, Francis; Zuzel, Katherine – Journal of Biological Education, 2003
Cell death is an essential factor in many biological processes including development. Discusses two types of cell death: (1) necrosis (induced by sodium azide); and (2) apoptosis (induced by sodium chromate). Illustrates key features that differ between these two types of cells death including loss of membrane integrity and internucleosomal DNA…
Descriptors: Biology, Cytology, Experiential Learning, Higher Education
Peer reviewed Peer reviewed
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Halme, Dina Gould; Khodor, Julia; Mitchell, Rudolph; Walker, Graham C. – CBE - Life Sciences Education, 2006
In this article, we describe an exploratory study of a small-scale, concept-driven, voluntary laboratory component of Introductory Biology at the Massachusetts Institute of Technology. We wished to investigate whether students' attitudes toward biology and their understanding of basic biological principles would improve through concept-based…
Descriptors: Student Attitudes, Scientific Methodology, Biology, Science Experiments
Cassel, D. K. – Journal of Agronomic Education, 1986
Describes how a field research site provides grauduate soil physics students with practical field-oriented experiences. Explains the structure of the course and the nature of the course's investigations. Assesses the advantages and obstacles associated with the field research technique. (ML)
Descriptors: College Science, Course Descriptions, Experiential Learning, Field Instruction
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Raborn, Diane Torres; Daniel, Mary Jo – TEACHING Exceptional Children, 1999
Describes the use of a mystery substance, Oobleck, in a graduate-level course for secondary special-education teachers that considered ways to teach science. Principles of science instruction, teaching students with diverse disabilities, instructional congruence, student assessment, and modifications are addressed. (DB)
Descriptors: Disabilities, Educational Principles, Experiential Learning, Graduate Study
Cundell, Diana R. – Microbiology Education, 2002
Reports on the development of a series of assignments for use in a basic microbiology course involving sophomore-, junior-, and senior-level students from five different biology majors. Assignments include writing, a class debate, and case history studies. (Author/MM)
Descriptors: Active Learning, Course Descriptions, Curriculum Design, Educational Strategies
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Hinckley, Daniel A.; Seybold, Paul G. – Journal of Chemical Education, 1987
Discusses the benefits of thermochromic transformations for studying thermodynamic properties. Describes an experiment that uses a commercially available dye, attains equilibrium rapidly, employs a simple, single-beam spectrophotometer, and is suitable for both physical chemistry and introductory chemistry laboratories. (TW)
Descriptors: Chemical Equilibrium, Chemical Reactions, Chemistry, College Science
Peer reviewed Peer reviewed
Janners, Martha Y. – Journal of College Science Teaching, 1988
Describes how to organize a student-directed laboratory investigation which is based on amphibian metamorphosis, lasts for nearly a term, and involves extensive group effort. Explains the assignment, student response and opinion, formal paper, and instructor responsibilities. (RT)
Descriptors: Biological Sciences, Biology, College Science, Experiential Learning
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Oller, Anna R. – American Biology Teacher, 2006
Forensic science courses encompasses the disciplines of biology, chemistry, mathematics, and physics, which provides an opportunity for students to become engaged in all content areas within one course. The inquiry-based learning environment allows visualization of results almost immediately, facilitating student interest. The laboratory…
Descriptors: Hands on Science, Inquiry, Laboratory Experiments, Science Education
Lord, Thomas R. – 1988
This study was designed to determine if the final grade in college biology at a suburban community college was a true measure of student's knowledge. One hundred and seventy undergraduates taking a semester course in biology took part in the study. This population was randomly separated into a control, placebo, and experimental group. The progress…
Descriptors: Academic Achievement, Biology, College Science, Community Colleges
Steinberg, Esther R.; Baskin, A. B. – Engineering Education, 1987
Reports on a study which investigated the effects of having students analyze circuits in the laboratory compared with troubleshooting from homework problems. Results indicated that laboratory experiences provide a richer learning experience than lecture and homework alone. (TW)
Descriptors: College Science, Computer Science, Computer Uses in Education, Electric Circuits
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Jackson, E. A. – European Journal of Engineering Education, 1987
Discusses the importance of laboratory experiments in which students were given a few guidelines and small groups had to design the experiments. Describes the old and new orders of laboratory projects and the effects of change. (CW)
Descriptors: College Science, Engineering, Engineering Education, Experiential Learning
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Grenda, Stanley C. – Journal of Chemical Education, 1986
Presents a technique for eliminating errors in the analysis of the nickel subgroup of the aluminum-nickel group cations. Describes the process of color and chemical changes that occur in this group as a result of ligand and coordination number changes. Discusses opportunities for student observations. (TW)
Descriptors: Chemistry, College Science, Demonstrations (Educational), Experiential Learning
Peer reviewed Peer reviewed
Lea, Suzanne M. – Journal of College Science Teaching, 1993
Describes the "Physics by Inquiry" course that is designed to address student misconceptions. Explains how the course was taught at the University of North Carolina at Greensboro for teachers and how it was taught at Ohio State University for elementary-education majors. Concludes the course is exportable to many different environments…
Descriptors: College Science, Earth Science, Experiential Learning, Higher Education
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