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Digital Promise, 2021
The Powerful Learning with Computational Thinking report explains how the Digital Promise team works with districts, schools, and teachers to make computational thinking ideas more concrete to practitioners for teaching, design, and assessment. We describe three powerful ways of using computers that integrate well with academic subject matter and…
Descriptors: Computation, Thinking Skills, Computer Uses in Education, Data Collection
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Kim, Sungki; Choi, Hee; Paik, Seoung-Hey – Journal of Chemical Education, 2019
Numerous previous studies have reported the difficulties associated with learning the Brønsted-Lowry acid-base model. The Brønsted-Lowry acid-base model requires complex systems thinking because it considers random interactions between reactant and product particles and effective particle collisions in forward and reverse reactions. The system…
Descriptors: Systems Approach, Computer Uses in Education, Chemistry, Science Instruction
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Samon, Sigal; Levy, Sharona T. – Science & Education, 2021
How do different components of a learning environment contribute to learning in science? The study examines the contribution of laboratory experiments and computer model explorations to the learning of chemistry through a complex-systems approach. Specifically, junior high-school students' learning of chemistry via four different methods were…
Descriptors: Systems Approach, Laboratory Experiments, Computer Uses in Education, Chemistry
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Hall, Tony – Digital Education and Learning, 2018
This book examines and illustrates the potential of narrative technology, the integration and synthesis of storytelling and digital media in education. Storytelling is a foundational and powerful process in all learning and teaching, and technology is becoming ever more ubiquitous and sophisticated, particularly in its capabilities to mediate and…
Descriptors: Story Telling, Computer Uses in Education, Technology Integration, Educational Practices
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Zhang, Yin; Chu, Samuel K. W. – International Review of Research in Open and Distributed Learning, 2016
In recent years, a number of models concerning problem solving systems have been put forward. However, many of them stress on technology and neglect the research of problem solving itself, especially the learning mechanism related to problem solving. In this paper, we analyze the learning mechanism of problem solving, and propose that when…
Descriptors: Web Based Instruction, Problem Solving, Foreign Countries, Information Processing
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Samon, Sigal; Levy, Sharona T. – Science Education, 2017
The study explores how a complexity approach empowers science learning. A complexity approach represents systems as many interacting entities. The construct of micro-macro compatibility is introduced, the degree of similarity between behaviors at the micro- and macro-levels of the system. Seventh-grade students' learning about gases was studied…
Descriptors: Difficulty Level, Systems Approach, Science Education, Secondary School Students