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Serafini, Amanda; Matthews, Dorothy M. – American Biology Teacher, 2009
Natural selection is the mechanism of evolution caused by the environmental selection of organisms most fit to reproduce, sometimes explained as "survival of the fittest." An example of evolution by natural selection is the development of bacteria that are resistant to antimicrobial agents as a result of exposure to these agents. Triclosan, which…
Descriptors: Microbiology, Case Studies, Science Activities, Evolution
Knutson, Kristopher; Smith, Jennifer; Wallert, Mark A.; Provost, Joseph J. – Biochemistry and Molecular Biology Education, 2010
A successful laboratory experience provides the foundation for student success, creating active participation in the learning process. Here, we describe a new approach that emphasizes research, inquiry and problem solving in a year-long biochemistry experience. The first semester centers on the purification, characterization, and analysis of a…
Descriptors: Motivation, Biochemistry, Inquiry, Laboratory Training
Knutson, Kristopher; Smith, Jennifer; Nichols, Paul; Wallert, Mark A.; Provost, Joseph J. – Biochemistry and Molecular Biology Education, 2010
Research-based learning in a teaching environment is an effective way to help bring the excitement and experience of independent bench research to a large number of students. The program described here is the second of a two-semester biochemistry laboratory series. Here, students are empowered to design, execute and analyze their own experiments…
Descriptors: Student Research, Molecular Biology, Biochemistry, Learning Laboratories
Peer reviewedAndino, Raul H.; And Others – Biochemical Education, 1986
Background information, experimental approach, materials needed, procedures used, and typical results obtained are provided for genetic engineering experiments. The course in which these experiments are performed is also described. (JN)
Descriptors: Biochemistry, College Science, Course Descriptions, Genetic Engineering
Peer reviewedSherman, Marie – Journal of Chemical Education, 1984
Describes a one-semester biochemistry course designed for students who have completed courses in biology, CHEMStudy chemistry, and physical science. Course goals include presenting biochemical concepts (in preparation for college courses), challenging students considering science-related careers, and serving as a springboard for science fairs. (JN)
Descriptors: Academically Gifted, Biochemistry, Course Descriptions, Science Curriculum
Peer reviewedAnderson, Robert J.; Woodworth, Paul H. – Journal of Chemical Education, 1985
Describes laboratory experiments suitable for teaching the principles of digital electronics and computer interfacing to undergraduate chemistry students. Also describes the program for teaching laboratory uses of computers. The program functions to teach principles of computer interfacing while displacing as little chemistry as possible from the…
Descriptors: Chemistry, College Science, Computer Oriented Programs, Course Descriptions
Daniel E. Rivera – Chemical Engineering Education, 2005
From 1992 through 2003 the Chemical Engineering program at Arizona State offered an integrated series of core courses that taught students how conservation and accounting principles can be applied to describe engineering phenomena across disciplines. A brine-water mixing tank experiment was introduced in the third course in the series (ECE 394C:…
Descriptors: Chemical Engineering, Engineering Education, Scientific Research, Capstone Experiences
Jones, Gordon E. – 1986
A course was developed to help science teachers in Mississippi teach physics. Most of those teaching the subject were inexperienced in physics, had limited background in the subject, and were in need of help. The course provided these teachers with a deeper understanding of physics principles, emphasized problem-solving strategies, and included…
Descriptors: Course Descriptions, Demonstrations (Educational), High Schools, Material Development
Peer reviewedMcInerney, Michael – Journal of Computers in Mathematics and Science Teaching, 1984
Describes physics experiments (including speed, acceleration, and acceleration due to gravity) in which students write programs to obtain and manipulate experimental data using the Atari microcomputer game port. The approach emphasizes the essential physics of the experiments while affording students useful experience of automatic data collection.…
Descriptors: Acceleration (Physics), College Science, Computer Oriented Programs, Course Descriptions
Peer reviewedHeady, Judith E. – Journal of College Science Teaching, 1993
Describes problems with teaching embryology in the traditional manner. Presents a new approach where students prepare presentations, questions, and discussion topics. During laboratory periods, students conducted their own long-term research projects. (PR)
Descriptors: Biology, College Science, Course Descriptions, Embryology
Peer reviewedBrooks, David W. – Journal of College Science Teaching, 1985
Discusses how "live" experiments were combined with media packages and recorded lectures to allow coverage of more material and foster greater student/teacher interactions. Notes were distributed at the beginning of the semester which allow students to record experimental data from class demonstrations. Problems and suggestions for course…
Descriptors: Chemistry, College Science, Course Descriptions, Curriculum Development
Will, Nancy A., Comp. – 1984
This publication provides supplemental information which can be used by the teacher to accompany each unit in the Regents Biology Syllabus. Each unit of the supplement addresses topics and understandings in the corresponding unit of the syllabus. These units are: (1) unity and diversity among living things; (2) maintenance in living things; (3)…
Descriptors: Biology, Course Descriptions, Demonstrations (Educational), High Schools
New York State Education Dept., Albany. – 1985
Listed in this syllabus are concepts and understandings in four areas dealing with science, technology and society: (1) relationship of science and technology; (2) the nature of technology; (3) the interaction of science, technology, and society; and (4) making decisions about technology. Included with these concepts and understandings are…
Descriptors: Course Descriptions, Elementary School Science, Intermediate Grades, Junior High Schools
College Board, New York, NY. – 1984
The College Board's Advanced Placement (AP) biology program is explained and options within it are explored in this guide for teachers. Experienced AP biology teachers were surveyed for information concerning approaches that were effective in their programs. Descriptions and suggestions from the 14 respondents are reported in the area of: (1)…
Descriptors: Advanced Courses, Advanced Placement Programs, Biology, College Science
New York State Education Dept., Albany. Bureau of Curriculum Development. – 1985
Listed in this science syllabus are concepts and understandings in five areas of astronomy (earth, studying the heavens, earth's moon, the sun and other stars, and the solar system) and two areas of aerospace science (flight in air and flight in space). Included with these The booklet also includes questions for students to answer and, when…
Descriptors: Aerospace Education, Astronomy, Course Descriptions, Earth Science
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