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Transforming Education, 2020
The Case Study Compilation was developed with and for educators to provide examples of practice related to three questions: (1) What does it mean to focus on social-emotional development and the creation of positive learning environments?; (2) How can educators integrate their approaches to social, emotional, and academic development?; and (3)…
Descriptors: Case Studies, Faculty Development, Coaching (Performance), Vignettes
Jaggars, Shanna Smith; Edgecombe, Nikki; Stacey, Georgia West – Community College Research Center, Columbia University, 2013
Student outcomes in online courses trail considerably behind those in face-to-face courses. In order to gain insight into why this might be, the Community College Research Center (CCRC) undertook a series of studies that examined 23 high-demand, entry-level online courses at two community colleges in one state. CCRC researchers observed the online…
Descriptors: Online Courses, Community Colleges, College Faculty, Teacher Student Relationship
Georgia State Dept. of Education, Atlanta. Office of Instructional Services. – 1984
This six-chapter guide is designed to help Georgia teachers adopt or adapt various options into the local school's science curriculum. Major areas addressed in the chapters are: (1) secondary school curriculum development (focusing on performance objectives, sequencing the curriculum, evaluation, and scientific literacy); (2) teaching methods…
Descriptors: Biology, Chemistry, Classroom Techniques, Course Descriptions
Peer reviewedDuncan-Hewitt, Wendy C. – American Journal of Pharmaceutical Education, 1992
A University of Toronto pharmaceutics course which organizes information about physical chemistry around real problems, presented as case studies or laboratory projects, is described. Problems were addressed in class discussions or by unsupervised eight-student groups using self- and group evaluation procedures. Results are discussed, and three…
Descriptors: Case Studies, Chemistry, Course Descriptions, Evaluation Methods
Hiebert, Clyde – 1992
For various reasons, students do not have access to laboratory facilities and yet need courses in the laboratory sciences such as chemistry. This paper describes "Outreach Chemistry," a course developed to provide a chemistry laboratory experience for students attending schools that lack science laboratories. Designed for off-campus students whose…
Descriptors: Chemistry, Curriculum Development, Higher Education, Instructional Innovation
Peer reviewedJournal of Chemical Education, 1985
Provides highlights of lectures, workshops, papers, and symposia presented at a conference which addressed such areas of chemical education as college/high school chemistry teaching; curriculum/curriculum development; safety; two-year programs; computers; toxicology and health hazards; problem-solving; writing skills development; textbooks;…
Descriptors: Chemistry, College Science, Conferences, Higher Education
Peer reviewedWorthy, Ward – Chemical and Engineering News, 1989
Reviews current biochemistry, education, and polymer course options found in chemistry programs. Proposes a new core curriculum with 28 semester hours with courses in inorganic, chemical, and instrumental analysis, organic, bioorganic, and physical chemistry. Notes that the new curriculum would better prepare students for the existing employment…
Descriptors: Biochemistry, Chemistry, College Science, Curriculum Design
Adelman, Clifford, Ed. – 1989
This report examines possible national indicators for learning outcomes in the individual disciplines of higher education. It consists of versions of five project final reports, each underscoring a distinct approach to developing a model in the context of a specific discipline. Each model applies, however, to several similar disciplines. Stressed…
Descriptors: Biology, Chemistry, Computer Science, Engineering
Peer reviewedKandel, Marjorie – Journal of College Science Teaching, 1989
Explains a scheme for grading student performance which stresses skills, technique, decision making, and notebook entries. Describes grading system and potential pitfalls. (RT)
Descriptors: Chemistry, College Science, Course Content, Grading
Peer reviewedTabbutt, Frederick D.; And Others – Journal of Chemical Education, 1989
This paper reports on the success of a laboratory teaching technique for teaching undergraduate chemistry. Discussed are the premises of the approach, and the use of the computer, the explorations, and the seminar which are included in the course. (CW)
Descriptors: Chemistry, College Science, Computer Uses in Education, Course Descriptions
Peer reviewedLicata, Kenneth P. – Science Teacher, 1988
Explains the use of constructing and analyzing analogies as a way to enhance student understanding and recollection of scientific concepts. Offers suggestions for topics including energy activation, phases of matter, electron transitions, equilibrium, covalent bonds, wave and particle duality, reaction types, ideal versus real gases, and oxidation…
Descriptors: Chemistry, Comprehension, Concept Formation, Concept Teaching
Peer reviewedPool, Robert – Science, 1990
Described are chemistry and physics courses at several colleges as applications of the New Liberal Arts program for nonscience majors. The major themes of the program and several examples of this approach are discussed. (CW)
Descriptors: Chemistry, College Science, Course Content, Course Descriptions
Peer reviewedJordan, Thomas M. – Science Teacher, 1989
Explained is a representation of the three categories of spectra. Discusses what a lesson on spectra should include, background information, and equipment needed. Provided is a diagram of an absorption box. (RT)
Descriptors: Astronomy, Chemistry, Laboratory Equipment, Light
Peer reviewedFoukaridis, G. N.; McFarlane, L. R. – Journal of Chemical Education, 1988
Notes that criticism of the training offered by universities to future chemists is well documented. Suggests a 17-step model for the planning of a chemistry course that utilizes a competency-based training program. Explains each step and lists sample objectives. (MVL)
Descriptors: Accountability, Chemical Industry, Chemistry, College Science
American Chemical Society, Washington, DC. – 1983
Provided are guidelines for evaluating undergraduate professional education in chemistry. The guidelines summarize an approved program as including: 400 hours of classroom work; 500 hours of laboratory work; a core curriculum covering principles of analytical, inorganic, organic, and physical chemistry; 1 year of advanced work in chemistry or…
Descriptors: Chemistry, College Science, Computer Literacy, Core Curriculum
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