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Ayyildiz, Yildizay; Tarhan, Leman; Gil, Aylin – Research in Science & Technological Education, 2023
Background: Research on chemistry education has found that students have commonly some difficulties in understanding chemical changes. These difficulties in the learning process have negatively affected students' success. For this reason, it is very important to overcome students' learning difficulties with new materials that prevent the…
Descriptors: Chemistry, Science Achievement, Science Curriculum, Course Descriptions
Wiets Botes; Anita Philip – Research in Social Sciences and Technology, 2025
This study investigated whether the Key Concepts in Science Project influenced the pedagogical development of Natural Science teachers. Grounded in social constructivism, emphasising collaborative learning and hands-on interaction, the study employed qualitative methods to collect empirical data. Through photographic evidence, field notes, and…
Descriptors: Natural Sciences, Science Teachers, Scientific Concepts, Cooperative Learning
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
Flores-Morales, Patricio; Campos-Requena, Víctor H.; Gatica, Nicolás; Muñoz, Carla; Pérez, Mónica A.; Rivas, Bernabe´ L.; Sánchez, Susana A.; Suwalsky, Mario; Tapiero, Yesid; Urbano, Bruno F. – Journal of Chemical Education, 2017
Polymers are part of our lives; scientists dedicated to polymer science design new materials thinking about more eco-friendly methodologies and satisfying people's needs. In most universities, polymer science is taught by academics associated with the traditional chemistry departments (organic, analytical, physical, and inorganic chemistry). In…
Descriptors: Foreign Countries, Chemistry, College Science, Science Instruction
Florian, Gabriel; Florian, Aurelia-Daniela; Pufu, Nicolae – Acta Didactica Napocensia, 2015
This paper proposes an optional syllabus for the students in the XIIth grade. The proposed theme analyzes the concept of "variable mass" both in terms of classical mechanics and relativistic mechanics. In terms of classical mechanics we refer to the slow motion of a body, whose mass ranges in ascending way (by annealing a mass particle…
Descriptors: Course Descriptions, High School Seniors, Grade 12, Science Curriculum
McElhinny, Teresa L.; Dougherty, Michael J.; Bowling, Bethany V.; Libarkin, Julie C. – Science & Education, 2014
We review the state of genetics instruction in the United States through the lens of backward design, with particular attention to the goals and assessments that inform curricular practice. An analysis of syllabi and leading textbooks indicates that genetics instruction focuses most strongly on foundations of DNA and Mendelian genetics. At the…
Descriptors: Genetics, Science Instruction, Science Curriculum, Textbooks
Wilcox, Jennifer – Chemical Engineering Education, 2006
A graduate-level computational chemistry course was designed and developed and carried out in the Department of Chemical Engineering at Worcester Polytechnic Institute in the Fall of 2005. The thrust of the course was a reaction assignment that led students through a series of steps, beginning with energetic predictions based upon fundamental…
Descriptors: Chemical Engineering, Computation, Science Curriculum, Curriculum Design

Krannich, Larry K.; And Others – Journal of Chemical Education, 1977
Describes a 14 unit remedial chemistry course which offers a traditional lecture approach and a Personalized System of Instruction (PSI) approach for preparing students a traditional chemistry sequence. (SL)
Descriptors: Chemistry, College Science, Course Descriptions, Higher Education

Prokop, Charles F. – Physics Teacher, 1988
Describes a high school physics teaching sequence including more modern topics. The first quarter covers cosmology, astronomy, optics, wave mechanics, relativity, gravity, and quantum theory. The second quarter covers classical mechanics. The third quarter covers electromagnetism and electronics. The fourth quarter consists of thermodynamics and…
Descriptors: Course Content, Course Descriptions, Physics, Science Curriculum

Schmidt, Martin F., Jr. – Physics Teacher, 1995
Describes the reordering of a ninth-grade physics course that aimed at making core concepts clear to the students while at the same time developing students' skills and depth of understanding. Discusses its benefits and associated problems. (JRH)
Descriptors: Course Descriptions, Mathematics, Physics, Science Course Improvement Projects

Long, Dale D. – Physics Teacher, 1978
Describes a physics course concerned with the physical principles underlying devices used and natured occurrences observed in daily experience. (SL)
Descriptors: College Science, Course Descriptions, Fundamental Concepts, Higher Education

O'Melia, Dennis J. – Journal of College Science Teaching, 1989
Describes a biology course to meet the needs of nontraditional students. Included is information on the course including the needs, beginnings, framework of basic concepts with a multisensory approach, and course objectives. Reports the data showing student success. (YP)
Descriptors: Biology, College Science, Community Colleges, Course Descriptions

Yoder, Claude H. – Journal of Chemical Education, 1977
Presents an integrated chemistry curriculum based upon major concepts. (SL)
Descriptors: Chemistry, College Science, Course Descriptions, Fundamental Concepts

Moreira, Christian J. – Science Teacher, 1994
Describes a Principles of Technology course as an innovative approach to teaching physics that does away will the hype and stigma that frightens off many potential students. (PR)
Descriptors: Course Descriptions, Educational Technology, High Schools, Physics

Boas, Mary L. – American Journal of Physics, 1979
Discusses a method used at DePaul University of Chicago, Illinois, in a relativity course for students who are not science majors, emphasizing logical reasoning rather than memory of facts. (HM)
Descriptors: Cognitive Processes, College Science, Course Descriptions, Higher Education
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