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Meghan L. Cook; Victor J. Ricchezza; Jeffrey G. Ryan; Sarah L. Sheffield; H. L. Vacher – Journal of Geoscience Education, 2024
A quantitative literacy course titled "Computational Geology" has been taught at the University of South Florida for over 20 years at the undergraduate level, largely by the same professor. Due to the extended course tenure, a unique opportunity presented itself to qualitatively study what the perceived broader impacts of the course were…
Descriptors: Phenomenology, Cognitive Processes, Geology, Science Instruction
Chun Chu; Jessica L. Dewey; Weiwei Zheng – Journal of Chemical Education, 2023
To enhance students' learning and help them understand the whole picture of the field of inorganic chemistry, an inorganic laboratory technique course was designed that uses scaffolded, inquiry-based lab experiments and project-based learning. The scaffolded, inquiry-based laboratories taught in the first 8 weeks of the course helped students…
Descriptors: Inquiry, Scientific Research, Scaffolding (Teaching Technique), Student Projects
Al-Salmani, Fatema; Thacker, Beth – Physical Review Physics Education Research, 2021
We designed a rubric to assess free-response exam problems in order to compare thinking skills evidenced in exams in classes taught by different pedagogies. The rubric was designed based on Bloom's taxonomy and then used to code exam problems. We have analyzed historical and recent exam problems in both algebra-based and calculus-based exams. In…
Descriptors: Inquiry, Thinking Skills, Scoring Rubrics, Algebra
Cheruvelil, Kendra Spence; De Palma-Dow, Angela; Smith, Karl A. – American Biology Teacher, 2020
Biology labs often make use of student teams. However, some students resist working in teams, often based on poor experiences. Although instructors sometimes struggle with student teams, effective teams in biology labs are achievable. We increased student learning and satisfaction when working in research teams by (1) including in the syllabus a…
Descriptors: Student Research, Teamwork, Biology, Science Laboratories
Evans, Hedeel Guy; Heyl, Deborah L.; Liggit, Peggy – Journal of Chemical Education, 2016
This biochemistry laboratory course was designed to provide significant learning experiences to expose students to different ways of succeeding as scientists in academia and foster development and improvement of their potential and competency as the next generation of investigators. To meet these goals, the laboratory course employs three…
Descriptors: Biochemistry, Science Instruction, Course Evaluation, College Faculty
Murthy, Pushpalatha P. N.; Thompson, Martin; Hungwe, Kedmon – Journal of Chemical Education, 2014
A semester-long laboratory course was designed and implemented to familiarize students with modern biochemistry and molecular biology techniques. The designed format involved active student participation, evaluation of data, and critical thinking, and guided students to become independent researchers. The first part of the course focused on…
Descriptors: Course Descriptions, Microbiology, Science Instruction, Molecular Biology
Behmke, Derek A.; Atwood, Charles H. – Chemistry Education Research and Practice, 2013
To a first approximation, human memory is divided into two parts, short-term and long-term. Cognitive Load Theory (CLT) attempts to minimize the short-term memory load while maximizing the memory available for transferring knowledge from short-term to long-term memory. According to CLT there are three types of load, intrinsic, extraneous, and…
Descriptors: Homework, Cognitive Ability, Computer Assisted Testing, Item Response Theory
Nordstrom, Katrina; Korpelainen, Paivi – Teaching in Higher Education, 2011
Problem solving is a critical skill for engineering students and essential to development of creativity and innovativeness. Essential to such learning is an ease of communication and allowing students to address the issues at hand via the terminology, attitudes, humor and empathy, which is inherent to their frame of mind as novices, without the…
Descriptors: Learner Engagement, Video Technology, Engineering Education, Creativity
O'Connor, Kim C. – Chemical Engineering Education, 2007
Advances in the biological sciences necessitate the training of chemical engineers to translate these fundamental discoveries into applications that will benefit society. Accordingly, Tulane University revised its core chemical engineering curriculum in 2005 to include a new introductory course in bioengineering and biotechnology for sophomores.…
Descriptors: Introductory Courses, Biotechnology, Chemical Engineering, Science Instruction

Brekke, Stewart E. – Physics Teacher, 1999
Argues that high school teachers have given up on trying to teach equations and mathematics to poorly prepared, inner-city, or very average students. Describes a mathematical problem-solving physics course for all types of students from average to honors. (CCM)
Descriptors: Course Descriptions, Mathematical Applications, Physics, Problem Solving

Genyea, Julien – Journal of Chemical Education, 1983
Provides ideas and suggestions for helping students increase their problem-solving skills, including a four-step general problem-solving approach. Specific examples (considering qualitative problems and problem sequence) and comments on testing/grading are also provided. (JN)
Descriptors: Chemistry, College Science, Course Descriptions, Higher Education

Gupta, Gian – Journal of College Science Teaching, 1983
Describes a course designed to familiarize students with alternative sources of energy, with emphasis on problem-solving strategies. Includes list of major topics/subtopics addressed and list of textbooks and recommended readings on alternative energy sources. (JN)
Descriptors: College Science, Course Content, Course Descriptions, Energy

Cummings, Lynda; Winston, Michael – Science Teacher, 1998
Describes the Solutions model used at Shelley High School in Idaho which gives students the opportunity to gain practical experience while tackling community problems. This approach is built on the three fundamentals of an integrated curriculum, a problem-solving focus, and service-based learning. Sample problems include increasing certain trout…
Descriptors: Course Descriptions, Experiential Learning, Integrated Curriculum, Problem Solving

Arambula-Greenfield, Teresa – Journal of College Science Teaching, 1996
Describes a problem-based human biology course for undergraduate nonscience majors. Discusses the nature of problem-based learning, effectiveness of problem-based learning in a nonmajors' science course, course development, and implications. Contains 14 references. (JRH)
Descriptors: Biology, Course Descriptions, Educational Strategies, Higher Education

Arthur, M. A.; Thompson, J. A. – Journal of Natural Resources and Life Sciences Education, 1999
Presents a course for natural resource conservation and management students that explicitly teaches integration of disciplinary knowledge using an internet-based approach to natural resource issues. (Author/CCM)
Descriptors: Conservation Education, Course Descriptions, Curriculum Development, Higher Education