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Koeper, Ingo; Shapter, Joe; North, Vanessa; Houston, Don – Journal of University Teaching and Learning Practice, 2020
In science courses in general, but especially in first year chemistry classes, the amount of content that is delivered is often overwhelming and too complex for the student to easily cope with. Students not only have to gain knowledge in a variety of different fields, they also have to learn new laboratory skills and analytical techniques.…
Descriptors: Science Education, Chemistry, Science Curriculum, Curriculum Development
Kim, Sun Young; Hamdan Alghamdi, Amani K. – International Journal of Science and Mathematics Education, 2019
This mixed methods study explored how Saudi Arabia's science education reform is functioning in 2 public girls' secondary schools located in Dammam, 1 of the main cities in Saudi Arabia. Saudi Arabia recently launched a new initiative to promote science education innovation by providing science curriculum change, professional development for…
Descriptors: Females, Secondary School Teachers, Secondary School Students, Student Attitudes
Ramnarain, Umesh Dewnarain – International Journal of Science Education, 2011
The apartheid policies in South Africa had a marked influence on the accessibility and quality of school science experienced by the different race groups. African learners in particular were seriously disadvantaged in this regard. The issues of equity and redress were foremost in transformation of the education system, and the accompanying…
Descriptors: Curriculum Implementation, Blacks, White Students, Curriculum Development
Meissner, Barbara; Bogner, Franz – Journal of Chemical Education, 2011
Although teachers in principle are prepared to make use of science centers, such excursions often fail to facilitate learning processes. Therefore, it is necessary to improve the link between science centers and schools. The design and evaluation of valuable outreach projects may enhance students' out-of-school science learning. In our study, we…
Descriptors: Foreign Countries, Science Teaching Centers, Grade 5, Grade 8

Atkinson, G. F. – Education in Chemistry, 1978
This article looks at the problems of revision of laboratory courses. While revision of the syllabus of experiments is expensive, it is necessary to keep it up to date. The nature, causes, and rates of change in practical courses are discussed. (BB)
Descriptors: Chemistry, College Science, Curriculum Development, Curriculum Evaluation

Science and Children, 1978
Urges the use of the immediate environment of the school to serve as a focus and a medium to help plan activities and experiments in the different subject areas of science, and in the area of environment. (GA)
Descriptors: Curriculum Development, Elementary Education, Elementary School Science, Environment

Rodgers, Glen E. – Journal of Chemical Education, 1984
Chemistry students selected a main group of the periodic table, researched the group, and then presented a 70-minute lecture on the group; conducted two lecture demonstrations; and performed two laboratory experiments. This was done to determine what descriptive chemistry should be included in a new sophomore-level inorganic chemistry course. (JN)
Descriptors: College Science, Curriculum Development, Higher Education, Inorganic Chemistry

Elings, V.; Phillips, D. – American Journal of Physics, 1973
Describes a one-year program in which students are given lectures on instrumentation topics, acquire experience participating in campus and community laboratories, and complete individual projects to receive the master's degree. Indicates a high ability of attacking laboratory problems in students' achievement. (CC)
Descriptors: College Science, Computer Science, Curriculum Development, Educational Programs

Jones, S. T.; Alexander, C. – American Journal of Physics, 1973
Descriptors: College Science, Curriculum Development, Electric Circuits, Instructional Materials

Kurz, James S. – Science Teacher, 2001
Describes the Connecticut Academic Performance Test (CAPT) and explains the reasons for a curriculum change. Introduces CAPT-style labs which require students to identify a problem, ask questions, develop a hypothesis, design and conduct an experiment, analyze data, and draw conclusions. (YDS)
Descriptors: Academic Achievement, Curriculum Development, High Schools, Inquiry

Farmer, Arthur V. – Physics Teacher, 1985
Explains the "Overview-Case Study Method" for teaching high school physics which has evolved from the author's experience/success with a program in which 90 percent of the high school's students take physics as an elective. Areas considered include methods, case studies, textbooks, multilevel physics, qualitative physics, and real-life…
Descriptors: Case Studies, Curriculum Development, High Schools, Physics

Crawford, Frank S. – American Journal of Physics, 1973
Descriptors: College Science, Curriculum Development, Demonstrations (Educational), Instructional Materials

Brooks, 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

Wells, Phillip – Journal of Biological Education, 1982
Describes a sixth-form field course consisting of written materials for students and a teacher's booklet giving necessary techniques, lists of apparatus, and practical hints. The course aims to estimate energy flows in a woodland ecosystem by means of a series of practical sessions involving field/laboratory investigations and calculations.…
Descriptors: Course Descriptions, Curriculum Development, Ecology, Energy

Mulder, T.; Verdonk, A. H. – Journal of Chemical Education, 1984
Reports on a project in which observations of student and teaching assistant behavior were used to redesign a teaching unit on recrystallization. Comments on the instruction manual, starting points for teaching the unit, and list of objectives with related tasks are included. (JN)
Descriptors: Chemistry, College Science, Crystallography, Curriculum Development