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Shea, Lauren; Bégin, Chantale; Osovitz, Christopher; Prevost, Luanna – Journal of College Science Teaching, 2020
Active-learning approaches have recently been broadly promoted on many campuses, but research is limited on how varying levels of interaction impact student success. The aim of this study was to compare student success between two sections of an introductory biology course that used classroom response systems (i.e., clickers), but were taught with…
Descriptors: Audience Response Systems, Class Size, Introductory Courses, Biology
Tomkin, Jonathan H.; Beilstein, Shereen O.; Morphew, Jason W.; Herman, Geoffrey L. – International Journal of STEM Education, 2019
Background: With the increased attention on the need to retain students within STEM majors, it is important for STEM instructors to adopt evidence-based instructional practices that are student-centric and employ active learning techniques. However, traditional approaches for increasing student-centric, active learning practices such as workshops,…
Descriptors: Communities of Practice, Active Learning, Large Group Instruction, STEM Education
Hymers, Devin; Newton, Genevieve – Canadian Journal for the Scholarship of Teaching and Learning, 2019
Educational techniques that improve student engagement have repeatedly been shown to improve performance at the class level at many institutions and in multiple disciplines. However, knowledge of engagement in individual activities in large first-year classes, where there may be several subpopulations of students in different programs reflecting…
Descriptors: Learner Engagement, Majors (Students), Student Attitudes, Active Learning
Kanin, Maralee R.; Pontrello, Jason K. – Biochemistry and Molecular Biology Education, 2016
Calls to bring interdisciplinary content and examples into introductory science courses have increased, yet strategies that involve course restructuring often suffer from the need for a significant faculty commitment to motivate change. Minimizing the need for dramatic course reorganization, the structure, reactivity, and chemical biology…
Descriptors: Biology, Introductory Courses, Science Curriculum, Science Instruction
Leinonen, Risto; Asikainen, Mervi A.; Hirvonen, Pekka E. – Physical Review Special Topics - Physics Education Research, 2013
As has been shown by previous research, students may possess various misconceptions in the area of thermal physics. In order to help them overcome misconceptions observed prior to instruction, we implemented a one-hour lecture-based intervention in their introductory thermal physics course. The intervention was held after the conventional lectures…
Descriptors: Physics, Science Instruction, Thermodynamics, Scientific Concepts
Linton, Debra L.; Pangle, Wiline M.; Wyatt, Kevin H.; Powell, Karli N.; Sherwood, Rachel E. – CBE - Life Sciences Education, 2014
We investigated some of the key features of effective active learning by comparing the outcomes of three different methods of implementing active-learning exercises in a majors introductory biology course. Students completed activities in one of three treatments: discussion, writing, and discussion + writing. Treatments were rotated weekly between…
Descriptors: Active Learning, Introductory Courses, Biology, Majors (Students)
Assessment of the Impact of Case Studies on Student Learning Gains in an Introductory Biology Course
Chaplin, Susan – Journal of College Science Teaching, 2009
Student performance in lecture-based versus case study-based instruction was compared in this study. Case-based teaching that emphasized problem solving and discussion significantly improved student performance on exams throughout the semester and enhanced students' abilities to correctly answer application- and analysis-type questions. (Contains…
Descriptors: Introductory Courses, Biology, Educational Change, Case Method (Teaching Technique)

Fritschner, Linda Marie – Teaching Sociology, 2001
Uses a relational approach to teach about race showing how it effects whites as well as people of color. Reveals differences in attitudes and feelings on race and age. Uses answers from nine questions submitted by each student as a basis for lecture and guided classroom discussion. (DAJ)
Descriptors: Discussion (Teaching Technique), Educational Strategies, Higher Education, Introductory Courses

Jensen, Elizabeth J.; Owen, Ann L. – Journal of Economic Education, 2003
Examines effective teaching techniques using a unique data set that allows matching student and instructor characteristics to assess impact on student interest in economics. Finds devoting more time to discussion is effective but varies by type of student. Determines that a using many teaching techniques appeals to learning styles adopted by good…
Descriptors: Advanced Students, Cognitive Style, College Students, Discussion (Teaching Technique)

Windschitl, Mark – College Teaching, 1999
Describes and evaluates a technique used in two science lecture courses (biochemistry and introductory meteorology), in which lectures were interspersed with frequent, brief discussions within spontaneously formed small groups. Some differences were found in the ways the two professors managed the technique, but both felt in-class participation…
Descriptors: Biochemistry, Classroom Techniques, College Instruction, Comparative Analysis

Laws, Priscilla – Change, 1991
At Dickinson College (Pennsylvania), a workshop approach to teaching introductory physics, in which students alternate hands-on experience and theoretical discussion, has been effective in improving student attitudes toward the subject, helping students master concepts considered difficult to teach, making students comfortable with laboratory…
Descriptors: College Curriculum, Course Organization, Discussion (Teaching Technique), Experiential Learning
Goswick, R. A.; And Others – 1981
Each of four instructors was assigned two sections of introductory psychology, one experimental and one lecture/control. Experimental sections were divided into teams of five to eight students and complied with the following schedule for each of seven two-week unites. In the first class meeting, subject matter was introduced and discussion topics…
Descriptors: College Students, Comparative Analysis, Discussion (Teaching Technique), Group Discussion

Libby, R. Daniel – Journal of Chemical Education, 1995
Describes the application of the Piaget-based learning cycle technique for teaching an introductory organic chemistry course. Explains the step-by-step process used to convert a lecture course into a discussion-based active learning course. A learning cycle provides students with concrete material and aids them in understanding abstract concepts…
Descriptors: Active Learning, Cognitive Processes, Concept Formation, Discovery Learning

Bierzychudek, Paulette; Reiness, C. Gary – Bioscience, 1992
Describes a course entitled "DNA and Evolution" in which students develop an appreciation for what science is and how it is practiced as well as an understanding of how some of the most central ideas in biology were developed and tested. Discusses the design of the course, the lecture and discussion topics, and the results and their…
Descriptors: Biology, Course Content, Course Descriptions, Discussion (Teaching Technique)

Francisco, Joseph S.; Nicoll, Gayle; Trautmann, Marcella – Journal of Chemical Education, 1998
Four different methods of teaching--cooperative learning, class discussions, concept maps, and lectures--were integrated into a freshman-level general chemistry course to compare students' levels of participation. Findings support the idea that multiple modes of learning foster the metacognitive skills necessary for mastering general chemistry.…
Descriptors: Chemistry, College Freshmen, Concept Mapping, Cooperative Learning
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