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Joanna E. Haye-Bertolozzi; Cecily B. DeFreece; Christopher Bolden; Kalila Daveron; Hector Biliran – Biochemistry and Molecular Biology Education, 2025
Course-based undergraduate research experiences (CUREs) are important for providing undergraduates with authentic research experiences. At Xavier University of Louisiana, a Genetics Laboratory CURE course was developed and implemented. The goals of developing this Genetics CURE laboratory course were: (1) to provide a large number of students the…
Descriptors: Curriculum Development, Undergraduate Study, Undergraduate Students, Student Research
Styles, Erin B.; Polvi, Elizabeth J. – Teaching & Learning Inquiry, 2022
The last class session of the academic term represents an excellent opportunity to solicit meaningful feedback from students who have just completed the course. To capitalize on the students' first-hand knowledge of their own experiences with our course and maximize the impact of the last class for our Canadian graduate-level genetics course, we…
Descriptors: Foreign Countries, Graduate Students, Student Attitudes, Course Evaluation
Thielen, Joanna; Samuel, Sara M.; Carlson, Jake; Moldwin, Mark – Issues in Science and Technology Librarianship, 2017
Engineering researchers face increasing pressure to manage, share, and preserve their data, but these subjects are not typically a part of the curricula of engineering graduate programs. To address this situation, librarians at the University of Michigan, in partnership with the Climate and Space Sciences and Engineering Department, developed a…
Descriptors: Graduate Students, Data, Information Management, Climate
Boger, Rebecca; Adams, Jennifer D.; Powell, Wayne – Journal of Geoscience Education, 2014
Recognizing the need to attract more students, especially those from underrepresented groups, a team of college faculty and experienced New York City Department of Education (DOE) Earth Science Teachers redesigned the two foundational Earth and Environmental Science courses required for all teacher and science major students in the Department of…
Descriptors: Place Based Education, College Science, Earth Science, Urban Universities
deBraga, Michael; Boyd, Cleo; Abdulnour, Shahad – Teaching & Learning Inquiry, 2015
A primary goal of university instruction is the students' demonstration of improved, highly developed critical thinking (CT) skills. However, how do faculty encourage CT and its potential concomitant increase in student workload without negatively impacting student perceptions of the course? In this investigation, an advanced biology course is…
Descriptors: Scholarship, Instruction, Learning, Critical Thinking
Pai, Aditi – Journal of Effective Teaching, 2009
The Biology department at Spelman, a historically black women's college has undertaken a major curriculum revision in the last few years. A primary goal of this revision is to increase the breadth of topics in biology classes. Historically, classes in the areas of ecology and evolution have been underrepresented whereas Spelman has always offered…
Descriptors: Black Colleges, Evolution, Advanced Courses, Biology
Shuster, Michele; Peterson, Karen – CBE - Life Sciences Education, 2009
The war on cancer has been waged for nearly 40 years, yet the cancer burden remains high, especially among minority and underserved populations. One strategy to make strides in the war on cancer and its disparate impacts is to increase the diversity of the cancer research workforce. We describe an approach to recruit a diverse population of future…
Descriptors: Undergraduate Students, Cancer, Student Surveys, Oncology
Pickar, Arnold D; And Others – 1967
Described is the development of a course that combines subject matter from introductory courses in biology, chemistry, and physics. The syllabus was written by four college science teachers, three of whom taught the course at Portland State College to 32 freshmen and sophomores. To evaluate the course, achievement tests and attitude surveys were…
Descriptors: Biology, Chemistry, College Science, Course Content
Pimmel, Russell; Weed, H. R. – Engineering Education, 1974
Describes a course planned for bio-medical engineering students. Intended outcomes of the course include an understanding of medical problems, their courses, diagnosis and treatment, and an awareness of the physician's philosophy and approach. (GS)
Descriptors: College Science, Course Descriptions, Course Evaluation, Curriculum Development
Peer reviewedStevens, R. J.; Jeveli, E. – American Biology Teacher, 1975
Evaluates a research paper-laboratory experience biology course developed in lieu of the traditional biology course. Results indicated this course to be of value as a way of showing students exactly how scientists work. It is recommended that this course not be a substitute for tradtional biology but be used to augment the understanding of…
Descriptors: Biology, College Science, Course Descriptions, Course Evaluation
Fowler, Wallace T.; Watkins, R. D. – 1975
With the decline in enrollment in the early 1970's, many aerospace engineering departments had too few students to offer some required courses. At the University of Texas at Austin, a set of personalized system of instruction (PSI) materials for the aircraft performance, stability, and control course was developed. The paper includes a description…
Descriptors: Aerospace Education, College Science, Course Descriptions, Course Evaluation
Peer reviewedUritam, Rein A. – Journal of College Science Teaching, 1973
Descriptors: College Science, Course Descriptions, Course Evaluation, Curriculum Development
Peer reviewedGrobe, Cary H.; Sturges, Allan W. – Science Education, 1973
Studied the superiority of audio-tutorial instruction among 79 students by using the pretest-posttest control group design, and concluded the absence of significant difference in achievement analyses both between the control and experimental groups and varying-aptitude subgroups. (CC)
Descriptors: Academic Achievement, College Science, Conventional Instruction, Course Evaluation
Sherren, David C. – Journal of Engineering Education, 1972
Descriptors: College Science, Course Descriptions, Course Evaluation, Curriculum Development
Peer reviewedHigginbotham, I. G. – Physics Education, 1975
Describes the application of the Keller Plan to an introductory physics course. Presents the organization of the course, faculty and student reaction to the course, and an assessment of the course on the basis of student grade distribution. (GS)
Descriptors: College Science, Course Descriptions, Course Evaluation, Curriculum Development
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