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Jade Mitchell; Hongwan Li; Mark H. Weir; Julie Libarkin; Emily Pasek – Journal of Microbiology & Biology Education, 2024
Quantitative microbial risk assessment (QMRA) is a growing interdisciplinary field addressing exposures to microbial pathogens and infectious disease processes. Risk science is inherently interdisciplinary, but few of the contributing disciplinary programs offer courses and training specifically in QMRA. To develop multidisciplinary training in…
Descriptors: Curriculum Development, Curriculum Evaluation, Microcredentials, Interdisciplinary Approach
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Delgado, Cesar; You, Hye Sun – AERA Online Paper Repository, 2018
This paper provides a conceptual analysis and methodology to improve the Next Generation Science Standards' focus on interdisciplinary connections. The paper identifies a plethora of connections across Disciplinary Core Ideas that are neglected by the NGSS. In addition, it presents a methodology to generate "educative" curriculum…
Descriptors: Science Education, Interdisciplinary Approach, Science Curriculum, Middle School Students
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Pennee, Donna Palmateer – New Directions for Teaching and Learning, 2007
How does one develop and deliver the integrated core of a cross-disciplinary arts and sciences undergraduate degree when the degree program has no departmental or college home and no full-time faculty, but plenty of enthusiastic students who are looking for a unique educational experience? This article outlines how a formalized curriculum…
Descriptors: Curriculum Development, Faculty Evaluation, College Administration, Program Effectiveness
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Herron, J. Dudley, Ed.; Sherwood, Robert D. – Journal of Chemical Education, 1978
Reports the findings of a study done to compare student attitude and achievement in two different chemistry curriculum programs. Results indicate no significant difference in either attitude or achievement scores on the exam administered. Neither program was found to be better than the other. (MA)
Descriptors: Academic Achievement, Chemistry, Curriculum Evaluation, Educational Research
DeRosa, Bill – Humane Education, 1985
Presents development and preliminary results of a research project evaluating a curriculum guide developed by the National Association for the Advancement of Humane Education. Activities included humane education along with concepts and skills in language arts, social studies, science, and mathematics. Results are mixed with more impact on early…
Descriptors: Altruism, Curriculum Evaluation, Elementary Education, Environmental Education
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Thomson, R. G. – Journal of Veterinary Medical Education, 1978
A survey of many veterinary colleges, agriculture colleges, veterinary science departments, and medical schools to determine the extent to which pathology courses are offered to undergraduate agriculture and science students. Also included is a discussion of the content of courses designed for nonveterinary students and outlines of two such…
Descriptors: Agriculture, Course Descriptions, Curriculum Evaluation, Diseases
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Hauser, Jean G.; Yonke, Arthur – 1978
Described is an interdisciplinary curriculum of science and social science for the teaching of environmental education at the high school level. The curriculum is designed for use with either one or two semesters of a class meeting for 50 minutes, five times per week. The document outlines the components of the curriculum and presents extensive…
Descriptors: Conservation Education, Curriculum, Curriculum Development, Curriculum Evaluation
Dede, Christopher – 1976
This paper summarizes the model used for science/society programs at the University of Houston. The model is examined with respect to the following perspectives: the best disciplinary locus for science-related social issues; optimum teaching style, instructional background, and grade level; appropriate instructional objectives; ethical problems;…
Descriptors: College Science, Curriculum, Curriculum Evaluation, Educational Research
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Cohen, Ronald D. – Science Education, 1972
This third of a three-article series describes impact resulting from the neglect of student involvement, unstated delimitations in scientific methodology, and overemphasis of performance objectives. Provides a list of four recommendations for further curriculum innovation. (CC)
Descriptors: Behavioral Objectives, Curriculum Development, Curriculum Evaluation, Individual Differences
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McConnell, D. – Journal of Biological Education, 1983
Examined ways in which students viewed a particular human biology degree course which involves five subject areas (anatomy, biochemistry, genetics, physiology, psychology). Also assessed their reaction to studying subjects from other disciplines which form an integral part of their degree course. (Author/JN)
Descriptors: Anatomy, Biochemistry, Biology, College Science
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Farmelo, Graham – Physics Education, 1992
Discusses four topics presented in the science foundation course of the Open University that exemplify current developments in particle physics, in particular, and that describe important issues about the nature of science, in general. Topics include the omega minus particle, the diversity of quarks, the heavy lepton, and the discovery of the W…
Descriptors: Course Content, Curriculum Evaluation, Foreign Countries, Higher Education
Shann, Mary H.; And Others – 1975
This document reports on the 1974-75 Unified Science and Mathematics for Elementary Schools (USMES) evaluation investigating the cognitive and affective responses of USMES students to this interdisciplinary, process curriculum. It includes the results of a pre-post control group design to assess the curriculum's effects on students' basic skill…
Descriptors: Achievement Gains, Basic Skills, Curriculum Development, Curriculum Evaluation
Gardella, Ron – Clearing, 1988
Includes an environmental education curriculum assessment instrument designed to determine how well curriculum materials reflect some accepted goals of environmental education. (TW)
Descriptors: Curriculum Evaluation, Curriculum Research, Ecology, Educational Assessment
Johnstone, A. H.; Reid, N. – SASTA Journal, 1981
Discusses the rationale underlying the production of 16 interactive teaching packages designed to demonstrate to 15-16 year olds the historical, domestic, industrial, economic, and socio-moral implications of chemistry. Briefly describes each package and reviews assessment results. (DS)
Descriptors: Activity Units, Chemistry, Curriculum Development, Curriculum Evaluation
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Bruce, Alease S.; Jochums, Brenda L. – Journal of College Science Teaching, 1990
Describes how problem solving was incorporated into a clinical science curriculum by using a team teaching approach. The review of the content domain, the examination of objectives and test items, and the steps in the team development are included. The steps in development of the program are considered. (KR)
Descriptors: College Science, Content Analysis, Cooperative Planning, Course Descriptions
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