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Hamilton, Nicholas B.; Remington, Jacob M.; Schneebeli, Severin T.; Li, Jianing – Journal of Chemical Education, 2022
We reported a redesign of a physical chemistry laboratory course (CHEM 166) for our chemistry majors at the University of Vermont carried out during the COVID-19 pandemic. We started to teach this course after a curriculum reform, which split an upper-division undergraduate laboratory course into physical and analytical chemistry laboratories. To…
Descriptors: Outcome Based Education, Chemistry, Science Laboratories, Science Curriculum
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Wrighting, Diedra M.; Dombach, Jamie; Walker, Mike; Cook, Jenene; Duncan, Marlina; Ruiz, Gisselle Velez; Colón-Carmona, Adán; Birren, Bruce – CBE - Life Sciences Education, 2021
The historic underrepresentation of women, certain racial and ethnic minorities, and members of other marginalized groups in careers in science, technology, engineering, and mathematics (STEM) reflects a disproportionate exit of individuals from these academic and career paths due to both environmental and personal factors. To transition…
Descriptors: Undergraduate Students, Disproportionate Representation, STEM Education, Academic Persistence
Annabelle Tam-Ha Lolinco – ProQuest LLC, 2024
Scientific literacy is an increasingly important skill for today and tomorrow's citizens. Encapsulated in the definition of being scientifically literate, one must be knowledgeable about science and technology in context and be able to interpret and communicate the information well. Introductory science courses, like general chemistry, are key…
Descriptors: Chemistry, Science Instruction, Scientific Literacy, Introductory Courses
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Ram, Manulal P.; Ajay, K. K.; Nair A., Gopinathan – Higher Education for the Future, 2020
Learning outcomes are inevitably to be declared by any university and educational institution at every level of their programmes. It should have a general scheme for all programmes regardless of the discipline specificities, individual courses or even independent instructional units. Such outcomes are stated at different levels based on the…
Descriptors: Earth Science, Science Curriculum, Taxonomy, Outcome Based Education
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Megan D. Radyk; Lillian B. Spatz; Mahliyah L. Adkins-Threats; Kitra Cates; Celine L. St Pierre – Advances in Physiology Education, 2023
The development of science writing and presentation skills is necessary for a successful science career. Too often these skills are not included in pre- or postsecondary science, technology, engineering, and mathematics (STEM) education, leading to a disconnect between high schoolers' expectations for college preparedness and the skills needed to…
Descriptors: Course Evaluation, Secondary School Science, Science Education, Communication (Thought Transfer)
District of Columbia Public Schools, Washington, DC. Research Information Center. – 1978
This document contains a comprehensive instructional program. Overall objectives for the areas of reading, mathematics, science and language arts/English for pre-kindergarten through twelfth grade education levels are presented. It is suggested that each teacher use the objectives as a basis for planning instructional activities and assessment…
Descriptors: Competency Based Education, Course Objectives, Curriculum Guides, Early Childhood Education
Aronstein, Laurence W.; Beam, Kathryn J. – 1973
This paper discusses a college-level course on contemporary topics in science offered to non-science majors at the State University College of New York. The authors examine the objectives, methods, and various student groupings utilized in the course, investigate why it has been successful, and make recommendations for courses of this nature. The…
Descriptors: College Science, Course Content, Course Descriptions, Course Objectives
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Clegg, Andrew – School Science Review, 1987
Described is the teaching of technology in British secondary schools. Some of the types of technology courses are described and issues and trends related to the teaching of technology are considered. (RH)
Descriptors: Course Objectives, Curriculum, Science and Society, Science Curriculum
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Troup, Alice – Anthropology and Education Quarterly, 1976
Describes a curriculum segment designed for a high school level introductory anthropology course which illustrates the application of considerations of materials suitable for students, anthropological concepts and methods which best assist students in understanding relationship patterns, and teaching techniques which lead to successful…
Descriptors: Anthropology, Classroom Techniques, Course Descriptions, Course Objectives
Hill, Andrew – 1980
Sociology education at two-year colleges is examined as revealed in a study of science education conducted by the Center for the Study of Community Colleges that involved: (1) a review of the literature, (2) an examination of catalogs and class schedules from 175 institutions nationwide, and (3) a survey of 94 sociology instructors. The report…
Descriptors: Class Size, College Curriculum, Community Colleges, Course Objectives
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Bergendahl, Christina; Tibell, Lena – Journal of Chemical Education, 2005
An investigation on whether a course designed strategically so that assessment methods are aligned with course objectives promotes the students' capacity for higher-order cognitive thinking is presented. Students' view of their own learning process in this course is examined.
Descriptors: Course Objectives, Curriculum Development, Science Curriculum, Evaluation Methods
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Brawer, Florence B.; Friedlander, Jack – 1979
The findings and conclusions of a study of curriculum and instruction in two-year college social science, science, and science-related technology programs are summarized in three sections. The first selects from 1977-1978 curriculum data which were gathered from catalogs and class schedules of a representative national sample of 175 two-year…
Descriptors: College Curriculum, Community Colleges, Course Objectives, Curriculum Design
Manitoba Dept. of Education, Winnipeg. – 1984
This guide, developed for the physics 200, 300 program in Manitoba, is designed to articulate with previous science courses; provide concepts, processes, and skills which will enable students to continue in physics-related areas; and relate physics to practical applications in everyday life. It includes a program overview (with program goals and…
Descriptors: Behavioral Objectives, Core Curriculum, Course Descriptions, Course Objectives
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Beasley, Warren – Journal of Chemical Education, 1980
Reviews the tradition of teaching and learning of organic chemistry in high school courses. Includes an analysis of present student performance and possible directions of future chemistry programs. Report is based on research of instruction and learning of organic chemistry in 90 high schools. (Author/JN)
Descriptors: Chemistry, Course Objectives, Curriculum Evaluation, Curriculum Problems
Waina, Richard B. – 1969
Educational objectives were developed for an undergraduate electrical engineering curriculum. The courses studied were computer programming, electrical science, electrical networks, electronic engineering, and engineering communications. The courses were analyzed in terms of purpose, content, and objectives. Definitive problems for each course…
Descriptors: Course Objectives, Curriculum Development, Educational Objectives, Engineering Education
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