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Choon Fu Goh; Eng Tek Ong – Innovations in Education and Teaching International, 2024
Flipped classroom in pharmacy education has been widely explored with a major focus on its effectiveness but little emphasis is given to assess the different in-class activities. Therefore, this work compares two in-class activities in an overall flipped classroom: analogical learning and team-based learning (TBL) for a pharmacy course. The…
Descriptors: Flipped Classroom, Teaching Methods, Pharmaceutical Education, Student Interests
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Renee Bouley – Journal of Chemical Education, 2022
In-class activities that use a collaborative learning approach were developed for a one-semester biochemistry course as a way to achieve higher student engagement. The redesign of this course from a traditional lecture to a format that incorporated a significant active learning component without reducing the amount of content is described. These…
Descriptors: High Achievement, Biochemistry, Class Activities, Feedback (Response)
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Carmichael, Cheryl L.; Schwartz, Anna M.; Coyle, Maureen A.; Goldberg, Matthew H. – Teaching of Psychology, 2019
In two studies, we demonstrate an engaging classroom activity that facilitates student learning about Kohlberg's theory of moral development by using digital resources to foster active, experiential learning. In addition to hearing a standard lecture about moral development, students watched a video of a morally provocative incident, then worked…
Descriptors: Class Activities, Moral Development, Lecture Method, Scores
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Ziegenfuss, Donna H.; Furse, Cynthia M. – Practical Assessment, Research & Evaluation, 2021
This paper describes the application of formative assessment methods in a flipped freshman engineering circuits course. This student-centered approach provided value for the instructor seeking to improve the learning environment and content in real-time, and for the students who actively participated in the process of course improvement. Three…
Descriptors: Flipped Classroom, Formative Evaluation, Feedback (Response), College Freshmen
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Stolk, Jonathan D.; Gross, Michael D.; Zastavker, Yevgeniya V. – International Journal of STEM Education, 2021
Background: Research illustrates that student motivations influence learning engagement, persistence, and achievement in powerful ways and that positive motivations are linked to deeper learning, critical thinking, pro-social behavior, and better performance. Most studies of learner motivation, however, are conducted outside of STEM and are…
Descriptors: Gender Differences, STEM Education, Intervention, Student Motivation
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Badia, Giovanna – Issues in Science and Technology Librarianship, 2015
How does an instructor capture students' attention in a guest lecture or one-shot class? In this article, the author presents some strategies to attract and maintain students' interest in a 60-90 minute session, which explore methods for understanding students' needs, obtaining buy-in, showing enthusiasm, and incorporating in-class activities. A…
Descriptors: College Students, College Instruction, Student Needs, Class Activities
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Broeckelman-Post, Melissa; Johnson, Alexandra; Schweback, J. Reid – Journal of College Science Teaching, 2016
Engaging students, checking for understanding, and encouraging oral participation are ongoing pedagogical challenges in large lecture courses. In this study, the instructor used notecard-facilitated cold-calling as a means of encouraging attendance and participation in a large-lecture biology class.
Descriptors: Learner Engagement, Anxiety, Lecture Method, Attendance
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Lucke, Terry; Dunn, Peter K.; Christie, Michael – European Journal of Engineering Education, 2017
This case study trialled the introduction of a student-response system (Top Hat) in a third-year engineering Fluid Mechanics course (n = 44) to improve student engagement, motivation and cognition. It was recognised that for the potential benefits of student-response systems (SRSs) to be fully realised, more time must be allocated for student…
Descriptors: Blended Learning, Educational Technology, Homework, Technology Uses in Education
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Webster, Donald R.; Majerich, David M.; Madden, Amanda G. – Advances in Engineering Education, 2016
A flipped classroom approach was implemented in an undergraduate fluid mechanics course. Students watched short, online video lectures before class, participated in active in-class problem solving sessions (in pairs), and completed individualized online quizzes weekly. In-class activities were designed to develop problem-solving skills and teach…
Descriptors: Mechanics (Physics), Undergraduate Students, Electronic Learning, Multimedia Materials
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Auerbach, Arthur H. – PS: Political Science and Politics, 2012
The traditional format for teaching courses to undergraduate students has long been that of lecture when professors speak and students listen. However, as times have evolved so too have the pedagogical methods in the classroom. In teaching a course on diversity and discrimination in the society, this instructor opted to combine several teaching…
Descriptors: Documentaries, Undergraduate Students, Lecture Method, Learner Engagement
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Nayak, Satheesha B.; Kodimajalu, Soumya – Anatomical Sciences Education, 2010
An innovative strategy called "progressive drawing" was used at the beginning (lid-opener) and later (monotony-breaker) during gross anatomy lectures. Diagrams were drawn on the classroom blackboard with anatomic structures added one by one. Students identified and labeled the diagrams and predicted the next structures to be drawn.…
Descriptors: Anatomy, Medical Education, Freehand Drawing, Prior Learning
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Goldberg, Nisse A.; Ingram, Kathleen W. – Journal of the Scholarship of Teaching and Learning, 2011
Active-learning techniques have been advocated as a means to promote student engagement in lower-division biology courses. In this case study, mini-lectures in combination with active-learning activities were evaluated as strategies to promote a culture of learning and participation in a required botany course. These activities were designed to…
Descriptors: Learner Engagement, Feedback (Response), Educational Strategies, Concept Mapping