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Partanen, Lauri – Chemistry Education Research and Practice, 2020
This paper represents the second contribution from an action research study on a bachelor-level quantum chemistry and spectroscopy course. In the proposed instructional model, active learning principles are extended outside lectures to form a student-centred course structure. The new model resulted in superior learning outcomes compared to a class…
Descriptors: Science Instruction, Teaching Methods, Student Centered Learning, Student Motivation
Lewis, Scott E. – Chemistry Education Research and Practice, 2018
The Achievement Goal Framework describes students' goal orientations as: task-based, focusing on the successful completion of the task; self-based, evaluating performance relative to one's own past performance; or other-based, evaluating performance relative to the performance of others. Goal orientations have been used to explain student success…
Descriptors: Goal Orientation, Chemistry, Models, Academic Achievement
Daubenfeld, Thorsten; Zenker, Dietmar – Journal of Chemical Education, 2015
We designed, implemented, and evaluated a game-based learning approach to increase student motivation and achievement for an undergraduate physical chemistry course. By focusing only on the most important game aspects, the implementation was realized with a production ratio of 1:8 (study load in hours divided by production effort in hours).…
Descriptors: Educational Games, Teaching Methods, Science Instruction, Chemistry
Bergey, Bradley W. – ProQuest LLC, 2014
Self-generated questions are a central mechanism for learning, yet students' questions are often infrequent during classroom instruction. As a result, little is known about the nature of student questioning during typical instructional contexts such as listening to a lecture, including the extent and nature of student-generated questions, how…
Descriptors: Undergraduate Students, Chemistry, College Science, Lecture Method
Pakhira, Deblina – ProQuest LLC, 2012
Exposure to organic chemistry concepts in the laboratory can positively affect student performance, learning new chemistry concepts and building motivation towards learning chemistry in the lecture. In this study, quantitative methods were employed to assess differences in student performance, learning, and motivation in an organic chemistry…
Descriptors: Organic Chemistry, College Science, Science Instruction, Lecture Method
Guemez, J.; Fiolhais, C.; Fiolhais, M. – Physics Education, 2009
The use of toys in physics teaching is common. This brief review of the physics of toys intends to show that they are not only very useful in lectures and demonstrations in order to motivate students but also very interesting from a scientific point of view. However, since their physics is sometimes too cumbersome, the effect can be the opposite.…
Descriptors: Physics, Toys, Lecture Method, Science Instruction
Moore, Randy – Journal of College Science Teaching, 2008
In this study, the author examined how attendance in the lab is associated with students' lab grades and overall course grades in an introductory biology course. Results from this study indicate that academic motivation, as expressed by high rates of class attendance, is critical to students' success in introductory science courses. The highest…
Descriptors: Grades (Scholastic), Academic Achievement, Attendance, Biology
Burrowes, Patricia; Nazario, Gladys – Journal of College Science Teaching, 2008
The authors engaged in an education experiment to determine if the integration of lab and lecture activities in zoology and botany proved beneficial to student learning and motivation toward biology. Their results revealed that this strategy positively influenced students' academic achievement, conceptual understanding, and ability to apply…
Descriptors: Botany, Biology, Science Process Skills, Lecture Method
Ablin, Henry L.; Flammer, Gordon h. – Engineering Education, 1974
Considers ways in which teachers can increase student motivation when using the lecture method of instruction. Outlines some of the more serious demotivators associated with this instructional method, and discusses how principles of industrial psychology can be used to increase student motivation and achievement. (JR)
Descriptors: College Science, Instruction, Learning Motivation, Lecture Method