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Showing 1 to 15 of 26 results Save | Export
T. J. McKenna – Teachers College Press, 2025
In "Making Sense of Sensemaking," readers will learn how to navigate the journey from traditional teaching to a dynamic, student-centered approach that emphasizes understanding over rote learning. Grounded in the latest educational research and aligned with the Next Generation Science Standards (NGSS), this book provides practical…
Descriptors: Authentic Learning, STEM Education, Elementary Secondary Education, Learning Experience
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Thomas, Kelli, Ed.; Huffman, Douglas, Ed. – IGI Global, 2020
The addition of the arts to STEM education, now known as STEAM, adds a new dimension to problem-solving within those fields, offering students tools such as imagination and resourcefulness to incorporate into their designs. However, the shift from STEM to STEAM has changed what it means for students to learn within and across these disciplines.…
Descriptors: STEM Education, Art Education, Educational Change, Barriers
Ackermans, S. T. M.; Trum, H. M. G. J. – Engineering Education, 1988
Discusses a two-year masters program; one year of lecture and practical training, and a second year on a supervised design task in an industry or development laboratory. Reviews the emphases of the curriculum. Describes the two paths to engineering careers in the Netherlands. (MVL)
Descriptors: College Science, Course Content, Curriculum Design, Curriculum Development
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Worthy, 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
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Tanner, Mark W.; And Others – Innovative Higher Education, 1993
To prepare new international graduate students for assignments as teaching assistants, the University of Washington chemistry department worked with specialists in language, pedagogy, and chemistry to design a discipline-specific training program. The program's structure, participants, benefits and limitations, and effectiveness in its first year…
Descriptors: Chemistry, College Instruction, College Science, Foreign Students
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Foukaridis, 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
United Nations Educational, Scientific and Cultural Organization, Bangkok (Thailand). Principal Regional Office for Asia and the Pacific. – 1988
This manual is the result of a regional training workshop on the cost-effectiveness of different training strategies in population education by Unesco in Kathmandu, Nepal, June 1-8, 1987. The purpose of the manual is to enable project staff to initiate studies to determine cost-effective training strategies in population growth control education.…
Descriptors: College Science, Family Planning, Higher Education, Overpopulation
David, Edward E., Jr.; Willenbrock, F. Karl – Engineering Education, 1988
Reexamines the recommendations of "A National Action Agenda for Engineering Education." Cites at least one exemplary effort related to each. Covers the overburdened curriculum; practice oriented graduate programs; design, manufacturing, and construction; instructional laboratories; faculty pool, professional development for faculty;…
Descriptors: College Preparation, College Science, Construction (Process), Curriculum Design
Fromm, Eli; Quinn, Robert G. – Engineering Education, 1989
Presented is a blueprint for restructuring the first two years of the engineering curriculum. Four new concepts for the first two years are discussed: (1) the mathematical and scientific foundations of engineering, (2) fundamentals of engineering, (3) the engineering laboratory, and (4) the professional and personal enrichment program. (MVL)
Descriptors: College Science, Curriculum Design, Curriculum Development, Engineering
Scottish Environmental Education Council (Scotland). – 1987
This curriculum guideline for environmental education in Scottish schools is for levels 10-14, 14-16, and post-16. The rationale of the program is based on a belief of uneasiness of ordinary people about their environment, the relationship of people with their environment, a need for change, a lack of current progress, the need to teach for the…
Descriptors: Conservation Education, Conservation (Environment), Curriculum Design, Curriculum Development
Cady, K. Bingham; And Others – Engineering Education, 1988
Discusses the restructuring of the graduate program to accommodate emerging fields in engineering. Notes half of the graduate degrees Cornell grants each year are M.Eng. degrees. Offers 12 specialties: aerospace, agriculture, chemical, civil, electrical, mechanical and nuclear engineering; computer science, engineering physics; geological…
Descriptors: College Science, Course Content, Curriculum Design, Curriculum Development
Osborne, Roger; And Others – 1979
The aim of the Learning in Science Project is to: (1) investigate science teaching/learning at the Form 1 to 4 level (ages 10 to 14); (2) identify some of the key difficulties in this subject area; and (3) find ways of overcoming such difficulties. The project is seen both as an evaluative and a research project in that it is concerned with…
Descriptors: Academic Achievement, Curriculum Development, Educational Needs, Elementary School Science
Murr, L. E. – Engineering Education, 1988
Expresses the opinion that education has overemphasized the written word and needs to move back to the oral tradition. Warns that Americans are trained to use the left brain whereas much of engineering needs right brain processing. Gives perspectives to improve engineering education. (MVL)
Descriptors: Cognitive Development, Cognitive Processes, Cognitive Psychology, College Science
Biddulph, Fred; And Others – 1983
The first working paper of the Learning in Science Project (Primary)--LISP(P)--"Toward a Framework," outlined what was then seen (1982) as the major aim of the project and proposed a research plan that seemed capable of enabling the project to establish difficulties that teachers have teaching science, to identify difficulties children…
Descriptors: Comprehension, Concept Formation, Concept Teaching, Curriculum Development
Kyle, William C., Jr.; And Others – 1989
In 1987, the Cheshire Public Schools initiated a science curriculum review. Teachers, parents, and students recognized that the existing textbook-based elementary science program was a dismal portrayal of such a dynamic discipline. There was community consensus that reading about science and acquiring scientific vocabulary words were not the same…
Descriptors: Community Cooperation, Curriculum Design, Curriculum Development, Curriculum Research
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