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Ariyaporn Haripottawekul; Li-Qiong Wang – Athens Journal of Education, 2025
Over the past decade, education literature has extensively discussed collaborative, student-led, and interdisciplinary methodologies. Despite numerous studies on these aspects of education, concrete examples integrating all three elements are scarce. Chemistry and Art, a course developed at Brown University, addresses this gap by integrating all…
Descriptors: Undergraduate Students, Student Research, Instructional Materials, Chemistry
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Bram H. Frohock; Cade A. Macallister; Maria T. Gallardo-Williams – Journal of Chemical Education, 2022
A teaching team composed of a faculty member (lecture) and a graduate teaching assistant (lab) endeavored to engage students enrolled in several sections of the same organic chemistry course through the use of social media. Students were encouraged to follow both instructors on Twitter and were asked to share aspects of the class using the social…
Descriptors: Organic Chemistry, Science Instruction, Graduate Students, Teaching Assistants
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Sherer, Renslow; Wan, Yu; Dong, Hongmei; Cooper, Brian; Morgan, Ivy; Peng, Biwen; Liu, Jun; Wang, Lin; Xu, David – Advances in Physiology Education, 2014
To modernize its stagnant, traditional curriculum and pedagogy, the Medical School of Wuhan University in China adopted (with modifications) the University of Chicago's medical curriculum model. The reform effort in basic sciences was integrating histology and physiology into one course, increasing the two subjects' connection to clinical…
Descriptors: Foreign Countries, Medical Schools, Educational Change, Teaching Methods
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Colabroy, Keri L. – Biochemistry and Molecular Biology Education, 2011
Engaging undergraduate students in designing and executing original research should not only be accompanied by technique training but also intentional instruction in the critical analysis and writing of scientific literature. The course described here takes a rigorous approach to scientific reading and writing using primary literature as the model…
Descriptors: Undergraduate Students, Teaching Methods, Laboratory Experiments, Laboratory Training
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Baltzis, Konstantinos B.; Koukias, Konstantinos D. – Journal of Science Education and Technology, 2009
Laboratory-based courses play a significant role in engineering education. Given the role of electronics in engineering and technology, laboratory experiments and circuit simulation IT tools are used in their teaching in several academic institutions. This paper discusses the characteristics and benefits of both methods. The content and structure…
Descriptors: Engineering Education, Undergraduate Study, Electronics, Laboratory Experiments
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Pierre, J. W.; Tuffner, F. K.; Anderson, J. R.; Whitman, D. L.; Ula, A. H. M. S.; Kubichek, R. F.; Wright, C. H. G.; Barrett, S. F.; Cupal, J. J.; Hamann, J. C. – IEEE Transactions on Education, 2009
This paper describes a one-credit laboratory course for freshmen majoring in electrical and computer engineering (ECE). The course is motivational in nature and exposes the students to a wide range of areas of electrical and computer engineering. The authors believe it is important to give freshmen a broad perspective of what ECE is all about, and…
Descriptors: Introductory Courses, Problem Based Learning, Computer Science, Engineering
Perna, A. J.; And Others – 1975
A required senior-level chemical engineering course at Colorado State University is described. The first nine weeks are devoted to the theory portion of the course, which includes the following topics: LaPlace transformations and time constants, block diagrams, inverse transformations, linearization, frequency response analysis, graphical…
Descriptors: Computers, Course Content, Course Descriptions, Engineering
Mihm, Richard J. – Phys Teacher, 1970
Describes a laboratory-centered introductory physics course for high school juniors and seniors. Course philosophy, objectives, laboratory procedures, syllabus, and evaluation methods are presented. A list of laboratory exercises, and a detailed description of three of them are included. (LC)
Descriptors: Course Content, Course Descriptions, Course Evaluation, Instruction
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Klatt, Leon N.; Sheafer, James C. – Journal of Chemical Education, 1974
Discusses the general design and operation of a quantitative analysis laboratory which is relevant to the student's career objectives and provides reliable and objective criteria for judging student performance. Included are a list of core experiments and a description of student responses. (CC)
Descriptors: Chemistry, College Science, Course Content, Course Descriptions
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Moore, John H., Jr.; O'Haver, Thomas C. – Journal of Chemical Education, 1974
Discusses offering of a modular course designed to acquaint the student with methods of observing and quantitatively measuring the properties and reactions of chemicals. Included is a brief sketch of course content and requirements. (CC)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
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Aikens, D. A.; And Others – Journal of Chemical Education, 1975
The program objectives are to instruct students in laboratory techniques, experimental procedures, evaluation of results, and laboratory project design. Integration of techniques which may span several areas of chemistry is emphasized in the solution of problems. Current course content of the program is listed. (GS)
Descriptors: Chemistry, College Science, Course Content, Course Descriptions
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Bergeson, Haven E. – American Journal of Physics, 1975
Describes a one-quarter introductory electronics course in which the students use a variety of inexpensive integrated circuits to design and construct a large number of useful circuits. Presents the subject matter of the course in three parts: linear circuits, digital circuits, and more complex circuits. (GS)
Descriptors: College Science, Course Content, Course Descriptions, Curriculum Development
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Schwartz, Peter L. – Journal of Medical Education, 1975
Ten laboratory experiments are described which are used in a successful clinical biochemistry laboratory course (e.g. blood alcohol, glucose tolerance, plasma triglycerides, coronary risk index, gastric analysis, vitamin C and E). Most of the experiments are performed on the students themselves using simple equipment with emphasis on useful…
Descriptors: Biochemistry, Course Content, Course Descriptions, Course Evaluation
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Franz, William S. – Science Teacher, 1979
An applied science course with a variety of activities and independent studies for unmotivated high school students is described. (SA)
Descriptors: Biology, Course Content, Course Descriptions, Course Organization
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England, R.; Field, R. W. – Chemical Engineering Education, 1989
This article focuses on the changes made in the undergraduate laboratory program of the first degree course in chemical engineering at the University of Bath (England). Describes experiments relating to the Engineering Applications 1 (EA1) requirements set by the Engineering Council. (YP)
Descriptors: College Science, Course Content, Course Descriptions, Engineering
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