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McCance, Katherine; Weston, Timothy; Niemeyer, Emily – Journal of College Science Teaching, 2020
In this article, the authors describe how classroom observations were used to characterize differences in instructional practices among undergraduate science courses. Student and faculty behaviors and dialogues were quantified using the Teaching Dimensions Observation Protocol (TDOP) in introductory science courses across multiple disciplines…
Descriptors: Classroom Observation Techniques, Active Learning, Introductory Courses, College Science
Wilson, Sarah Beth; Varma-Nelson, Pratibha – Journal of College Science Teaching, 2021
Peer-Led Team Learning (PLTL) is a small-group, collaborative problem-solving model that has significantly increased student performance in a variety of chemistry undergraduate courses and other STEM courses. Cyber Peer-Led Team Learning (cPLTL), an online adaptation of PLTL, has been effective in general chemistry courses, but this study was the…
Descriptors: Peer Teaching, Teamwork, Cooperative Learning, Problem Solving
Antonenko, Pavlo D.; Jahanzad, Farzaneh; Greenwood, Carmen – Journal of College Science Teaching, 2014
Collaborative problem solving is an essential component of any 21st century science career. Scientists are hired, retained, and promoted for solving problems in dynamic and interdisciplinary teams. They discuss issues, explain and justify their opinions, debate, elaborate, and reflect on their collective knowledge. At the same time, both…
Descriptors: Problem Solving, Cooperative Learning, Science Instruction, Scaffolding (Teaching Technique)
Popejoy, Kate; Asala, Kathryn S. – Journal of College Science Teaching, 2013
High failure rates in introductory large lecture chemistry courses for STEM majors have been of concern for years. Through our weekly Team Approach to Successful Learning (TASL) workshops, students learn and apply problem-solving strategies, coached by specially trained peer learning coaches (LCs). These coaches concurrently enroll in Chemistry…
Descriptors: Teamwork, STEM Education, Chemistry, Science Instruction
Barreto, Jose; Reilly, John; Brown, David; Frost. Laura; Coticone, Sulekha Rao; Dubetz, Terry Ann; Beharry, Zanna; Davis-McGibony, C. Michele; Ramoutar, Ria; Rudd, Gillian – Journal of College Science Teaching, 2014
New technological developments have minimized training, hardware expense, and distribution problems for the production and use of instructional videos, and any science instructor can now make instructional videos for their classes. We created short "Khan style" videos for the topic of buffers in biochemistry and assigned them as…
Descriptors: Case Studies, Science Instruction, Teaching Methods, Biochemistry
Case, Eddie; Stevens, Ron; Cooper, Melanie – Journal of College Science Teaching, 2007
While problem solving is a generally accepted goal of most science courses, it has previously been difficult to determine the extent to which students' problem-solving abilities are impacted by these courses. Interactive Multi-Media Exercises (IMMEX) is a web-based software package that can deliver multiple cases of case-based problems and keep…
Descriptors: Problem Solving, Computer Assisted Instruction, College Science, Chemistry

Battles, Denise A.; Franks, Melvin E.; Morrison-Shetlar, Alison I.; Orvis, Jessica N.; Rich, Fredrick J.; Deal, Tony J. – Journal of College Science Teaching, 2003
Describes a course developed for undergraduate students that includes an environmental science lecture and laboratory section. Focuses on the laboratory section as the critical component with activities that are real-world related, hands-on, problem solving-based, and use cooperative learning approaches. (Contains 12 references.) (Author/YDS)
Descriptors: Cooperative Learning, Environmental Education, Ethnicity, Hands on Science

Buxeda, Rosa J.; Moore, Deborah A. – Journal of College Science Teaching, 2000
Introduces a study that identifies which learning styles are prevalent in biology majors. Uses the findings of the study to design a microbiology course. Presents activities that address the different learning styles. Uses self-assessment and portfolios for student evaluation. Includes recommendations for instructional improvement. (Contains 19…
Descriptors: Active Learning, Cognitive Style, Cooperative Learning, Curriculum Design

Anderson, Elaine J. – Journal of College Science Teaching, 1997
Describes a non-laboratory science course for nonscience majors that actively engages students in a variety of learning activities. Highlights students' positive evaluations of the course. Also describes active learning experiences incorporated into the course. (JRH)
Descriptors: Active Learning, Cooperative Learning, Critical Thinking, Educational Strategies

Woods, Donald R. – Journal of College Science Teaching, 1993
Describes the interactions and applications of three models of learning: Bloom's taxonomy, the Jungian or Myers-Brigg's Typology, and William Perry's model of attitude toward learning. (PR)
Descriptors: College Science, Cooperative Learning, Educational Psychology, Engineering Education
Dinan, Frank J. – Journal of College Science Teaching, 2006
The time and effort spent during the first days of a new semester are key to the success of the class that lies ahead. What happens during these first days can set a tone that inspires students to work actively and cooperatively to achieve success in the new semester, or to sit back and assume a "here we go again" attitude. In this article, the…
Descriptors: Student Attitudes, Success, Organic Chemistry, College Students

Klionsky, Daniel J. – Journal of College Science Teaching, 1998
Points out that college freshmen expect major changes in the academic environment as they move from secondary school. Recommends that faculty use this opportunity to show students how to think for themselves. (DDR)
Descriptors: Biology, Concept Formation, Cooperative Learning, Educational Strategies

Duch, Barbara J. – Journal of College Science Teaching, 1996
Describes an honors general physics course designed to demonstrate to students that physics is vital to their understanding of physiology, medicine, the human body, rehabilitation, and other health fields. Presents evidence that indicates that active group learning and connections to real-world applications help students learn physics and apply…
Descriptors: Cooperative Learning, Course Descriptions, Educational Strategies, Field Trips