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Buldu, Elif; Buldu, Metehan – SAGE Open, 2021
The study aimed to investigate pre-service early childhood teachers' (PSTs) collective pedagogical content knowledge (cPCK) and personal pedagogical content knowledge (pPCK) on the knowledge used in scientific process (SP) through the content representation (CoRe) design, interview, and knowledge used in scientific process (KSP) forms. The data…
Descriptors: Preschool Teachers, Preservice Teachers, Pedagogical Content Knowledge, Technological Literacy
Rutter, Charles; Pancorbo, Jennifer – Chemical Engineering Education, 2020
Fermentation is responsible for the production of myriad products across a variety of industrial sectors. In particular, the biomanufacturing industry requires a labor force proficient in fermentation and its associated technologies to drive the production of recombinant protein therapeutics. This paper describes the development of a course that…
Descriptors: Biotechnology, Manufacturing Industry, Biochemistry, Scientific Concepts
Chris Vicari – International Journal of Designs for Learning, 2020
The American Museum of Natural History (AMNH) in New York City implemented a science-based curriculum pairing augmented reality (AR) with a student-designed escape room experience to support astronomy learning. AR has the potential to simplify complex systems into digestible concepts. Designing an escape room experience provided students with an…
Descriptors: Student Empowerment, Design, Science Instruction, Computer Simulation
Hurley, Sarah Jessica; Murray, Alexa Lee; Cormas, Peter – Science and Children, 2014
This article describes a lesson taught in a designated English Language Learner (ELL) classroom in an elementary school in Pawtucket, Rhode Island, using a sheltered instruction approach. Eighty one percent of the students at this school are from diverse ethnic backgrounds where 25 per cent of them receive ELL services. A variety of languages are…
Descriptors: English Language Learners, Course Descriptions, Elementary School Science, Student Diversity
Abbas, A.; Alhammadi, H. Y.; Romagnoli, J. A. – Chemical Engineering Education, 2009
In this paper, we discuss our approach in teaching the final-year course Process Systems Engineering. Students are given ownership of the course by transferring to them the responsibility of learning. A project-based group environment stimulates learning while solving a real engineering problem. We discuss postgraduate student involvement and how…
Descriptors: Engineering Education, Student Projects, Student Research, Undergraduate Study
Chakrabarti, Debopam – Biochemistry and Molecular Biology Education, 2009
This new course in biotechnology for upper division undergraduates provides a comprehensive overview of the process of drug discovery that is relevant to biopharmaceutical industry. The laboratory exercises train students in both cell-free and cell-based assays. Oral presentations by the students delve into recent progress in drug discovery.…
Descriptors: Science Activities, Labor Market, Science Laboratories, Biotechnology
Clarke, Matthew A.; Giraldo, Carlos – Chemical Engineering Education, 2009
Chemical process simulation is one of the most fundamental skills that is expected from chemical engineers, yet relatively few graduates have the opportunity to learn, in depth, how a process simulator works, from programming the unit operations to the sequencing. The University of Calgary offers a "hands-on" postgraduate course in…
Descriptors: Computer Simulation, Chemical Engineering, Programming, Foreign Countries
Wynn, Robert H. – Engineering Education, 1987
Describes an approach to teaching engineering design that involves analyzing, designing, building, and testing a simple structure. Explains the procedures for the various activities and discusses how the design concept can be incorporated into other courses. (ML)
Descriptors: College Science, Course Descriptions, Engineering Education, Engineering Graphics

Gannon, John E.; Edgar, Arlan L. – Current, 1981
A Freshwater Winter ecology course for science teachers is described. Included are a description of the lectures, field activities, field techniques, sampling areas, and sampling methods. (DS)
Descriptors: Biology, College Science, Course Descriptions, Ecology

Gumprecht, Donald L.; Thrasher, Joseph S. – Journal of Chemical Education, 1990
Described is a course designed to better prepare students for employment in chemical industries. A course schedule for this interim course and a list of sources of speakers and speaker credentials is provided. (CW)
Descriptors: Chemistry, College Science, Course Descriptions, Higher Education

Schultz, Emeric – Journal of Chemical Education, 2000
Introduces a laboratory science course addressing scientific literacy. Includes three interrelated student projects for the laboratory section of the course. (Contains 27 references.) (YDS)
Descriptors: Chemistry, Course Descriptions, Higher Education, Nonmajors

Maruca, R. – Journal of Chemical Education, 1990
Described is an advanced undergraduate laboratory course which gives students an opportunity to grasp the material better than in the segmented approach. A list of required experiments and a discussion of the evaluation of the course are provided. (CW)
Descriptors: Chemistry, College Science, Course Descriptions, Higher Education

Burns, Scott F. – Journal of College Science Teaching, 1994
Explores the use of extra credit in an introductory geology course. Covers the organization and rational behind the program. (PR)
Descriptors: College Science, Course Descriptions, Geology, Higher Education

Volker, Eugene J.; Eldridge, David C. – Journal of College Science Teaching, 1986
Describes the goals, procedures, and activities of a Computers in Chemistry course for undergraduate chemistry majors. Provides a listing of topics which have user-friendly programs and of representative activities which have been incorporated into the course. Also includes suggestions for student assignments. (ML)
Descriptors: Chemistry, College Science, Computer Assisted Instruction, Course Content
Uffelman, Erich S. – Journal of Chemical Education, 2007
Two linked courses examining conservation science and art history of 17th-century Dutch painting are described. The two courses have been taught on campus and, most recently, as study-abroad courses in collaboration with the Center for European Studies, Universiteit Maastricht, The Netherlands. The highly interdisciplinary courses are intense, yet…
Descriptors: Nonmajors, Majors (Students), Art History, Interdisciplinary Approach