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Hirshfield, Laura J.; Koretsky, Milo D. – Journal of Computer Assisted Learning, 2021
In engineering design, engineers must be able to think creatively, effectively toggling between divergent thinking (developing multiple novel ideas) and convergent thinking (pursuing an appropriate idea using engineering analyses). However, creative thinking is not emphasized in many undergraduate engineering programs. In this empirical study, we…
Descriptors: Creative Thinking, Engineering Education, Cooperative Learning, Electronic Learning
Hendra Y. Agustian; Bente Gammelgaard; Muhammad Aswin Rangkuti; Jonas Niemann – Science Education, 2025
Affect and emotions matter to science learning. They also matter because they are integral to science identity formation and sense of belonging. This study aims to foreground the epistemic and affective character of laboratory work in higher science education by conceptualizing it as epistemic practice, in which students activate their body and…
Descriptors: College Students, Chemistry, Science Instruction, Laboratory Experiments
April L. Millet; Emre Dinç; Timothy J. Bralower – Educational Technology Research and Development, 2024
This study aimed to examine the effect of four types of assessment on overall student success in an online college-level climate change course. Quizzes, midterms, lab assignments, and a capstone project as well as knowledge check questions were used to assess different aspects of student learning, consistent with Bloom's taxonomy hierarchy.…
Descriptors: Undergraduate Students, Test Format, Tests, Laboratory Experiments
Kuan-Fu Chen; Gwo-Jen Hwang; Mei-Rong Alice Chen – Educational Technology Research and Development, 2024
Laboratory courses can help students learn in a meaningful way. In the past, students encountered difficulties in chemistry laboratory courses due to limited access to equipment and space for practicing experimental operations. In recent years, virtual laboratories have allowed students to repeatedly practice in order to achieve their experimental…
Descriptors: Concept Mapping, Virtual Classrooms, Laboratories, Student Behavior
Hakki Kadayifci – Journal of Baltic Science Education, 2017
Science lecturers usually do not pay special attention to giving students the chance to evaluate persistent unexpected experimental findings that they cannot explain with their existing theories, propose alternative hypotheses and develop new theories in inquiry tasks at schools, despite the importance of these processes in scientific discoveries.…
Descriptors: College Freshmen, Chemistry, Science Instruction, Student Attitudes
Guo, Jing; McLeod, Poppy Lauretta – Creativity Research Journal, 2014
Drawing upon the Search for Ideas in Associative Memory (SIAM) model as the theoretical framework, the impact of heterogeneity and topic relevance of visual stimuli on ideation performance was examined. Results from a laboratory experiment showed that visual stimuli increased productivity and diversity of idea generation, that relevance to the…
Descriptors: Pictorial Stimuli, Semantics, Visual Stimuli, Models
Yoon, Heojeong; Woo, Ae Ja; Treagust, David; Chandrasegaran, A. L. – International Journal of Science Education, 2014
The efficacy of problem-based learning (PBL) in an analytical chemistry laboratory course was studied using a programme that was designed and implemented with 20 students in a treatment group over 10 weeks. Data from 26 students in a traditional analytical chemistry laboratory course were used for comparison. Differences in the creative thinking…
Descriptors: Preservice Teacher Education, Chemistry, Problem Based Learning, Laboratory Experiments
Peer reviewedKeiser, Jeffrey E. – Journal of Chemical Education, 1988
Proposes that the psychological problem of students expecting a particular result in an organic chemistry laboratory and, therefore, working in an unthinking manner be attacked by assigning experiments that give students unexpected results. Gives four examples of such experiments with strategies for teaching them. (CW)
Descriptors: Chemical Reactions, Chemistry, College Science, Creative Thinking
Smith, Kenneth L., Ed. – 1988
The curriculum materials contained in this document were developed through a cooperative effort by educators in the state of Maryland. It was a curriculum project aimed at the meaningful integration of mathematics and science. It is suggested that these materials be used in two significant ways. First, this document can serve as an instructional…
Descriptors: Construction Materials, Creative Thinking, Industrial Arts, Integrated Curriculum
Smith, Kenneth L., Ed. – 1988
The curriculum materials contained in this document were developed through a cooperative effort by educators in the state of Maryland. It was a curriculum project aimed at the meaningful integration of mathematics and science. It is suggested that these materials be used in two significant ways. First, this document can serve as an instructional…
Descriptors: Aerospace Technology, Aviation Technology, Creative Thinking, Industrial Arts
Smith, Kenneth L., Ed. – 1988
The curriculum materials contained in this document were developed through a cooperative effort by educators in the state of Maryland. It was a curriculum project aimed at the meaningful integration of mathematics and science. It is suggested that these materials be used in two significant ways. First, this document can serve as an instructional…
Descriptors: Audio Equipment, Communications, Creative Thinking, Industrial Arts
Maryland State Dept. of Education, Baltimore. Div. of Vocational-Technical Education. – 1988
The curriculum materials contained in this document were developed through a cooperative effort by educators in the state of Maryland. It was a curriculum project aimed at the meaningful integration of mathematics and science. It is suggested that these materials be used in two significant ways. First, this document can serve as an instructional…
Descriptors: Building Trades, Construction Materials, Construction (Process), Creative Thinking
Maryland State Dept. of Education, Baltimore. Div. of Vocational-Technical Education. – 1988
The curriculum materials contained in this document were developed through a cooperative effort by educators in the state of Maryland. It was a curriculum project aimed at the meaningful integration of mathematics and science. It is suggested that these materials be used in two significant ways. First, this document can serve as an instructional…
Descriptors: Auto Mechanics, Aviation Mechanics, Creative Thinking, Electricity

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