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Showing 1 to 15 of 19 results Save | Export
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Bush, Eliot C.; Adolph, Stephen C.; Donaldson-Matasci, Matina C.; Hur, Jae; Schulz, Danae – Journal of College Science Teaching, 2021
This paper describes an introductory biology course for undergraduates that heavily incorporates quantitative problem solving in activities and homework assignments. The course is broken up into a series of units, each organized around a motivating biological question or theme. Homework assignments address the theme or question, and typically…
Descriptors: Biology, Science Instruction, Teaching Methods, Problem Solving
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Allbee, Quinn; Barber, Robert – Biochemistry and Molecular Biology Education, 2021
Biology is a data-driven discipline facilitated greatly by computer programming skills. This article describes an introductory experiential programming activity that can be integrated into distance learning environments. Students are asked to develop their own Python programs to identify the nature of alleles linked to disease. This activity…
Descriptors: Genetics, Science Instruction, Programming Languages, Biology
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Pawlak, Alanna; Irving, Paul W.; Caballero, Marcos D. – Physical Review Physics Education Research, 2020
An increasing number of introductory physics courses are seeking to incorporate "authentic practices," and a large area of focus in this trend is the incorporation of computational problems into the curriculum. These problems offer students an opportunity to engage with the programming practices and numerical problem-solving methods used…
Descriptors: Problem Based Learning, Physics, Science Instruction, Programming
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Flannery, William – Physics Teacher, 2019
This paper describes a high school or introductory university course in scientific programming that introduces the computer revolution into the physics curriculum at the beginning. In the first one-hour lecture, Euler's method is presented and used to compute a solution to the analytically unsolvable two-body problem. In the remainder of the…
Descriptors: Science Instruction, Physics, Secondary School Science, High Schools
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Margulieux, Lauren E.; Catrambone, Richard; Schaeffer, Laura M. – Instructional Science: An International Journal of the Learning Sciences, 2018
Originally intended as a replication study, this study discusses differences in problem solving performance among different domains caused by the same instructional intervention. The learning sciences acknowledges similarities in the learners' cognitive architecture that allow interventions to apply across domains, but it also argues that each…
Descriptors: Problem Solving, Intervention, Instructional Design, Programming
Fancsali, Cheri; Mirakhur, Zitsi; Klevan, Sarah; Rivera-Cash, Edgar – Research Alliance for New York City Schools, 2022
The perspective that computing and computational thinking (CT) are necessary competencies for the 21st century is increasingly pervasive. Computational concepts and methods--problem solving, designing systems, refining the steps in a process, and tinkering toward creative solutions--are relevant in nearly every discipline, profession, and…
Descriptors: Thinking Skills, Problem Solving, Computation, Science Instruction
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Bhuyan, Jay; Wu, Fan; Thomas, Cassandra; Koong, Kai; Hur, Jung Won; Wang, Chih-hsuan – TechTrends: Linking Research and Practice to Improve Learning, 2020
This paper describes the design, implementation, and results of an NSF funded Summer Academy from 2016 to 2018, which engaged, on an annual basis, 30 to 60 rising 10th and 11th grade high school science students in an innovative, technology-enriched Project Based Learning (PBL) environment. This Academy emphasized how tech gadgets work and the…
Descriptors: Teaching Methods, Grade 10, Grade 11, High School Students
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Yadav, Aman; Krist, Christina; Good, Jon; Caeli, Elisa Nadire – Computer Science Education, 2018
A number of efforts have focused on preparing teachers to integrate CT within secondary disciplinary subject areas; however, there is little research on how CT ideas could be embedded within elementary subjects. We designed a professional development activity for elementary teachers to embed CT within science and examined how their understanding…
Descriptors: Computation, Thinking Skills, Elementary School Teachers, Faculty Development
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Sullivan, Florence R. – Educational Technology & Society, 2011
This paper presents the results of a micro-genetic analysis of the development of a creative solution arrived at by students working collaboratively to solve a robotics problem in a sixth grade science classroom. Results indicate that four aspects of the enacted curriculum proved important to developing the creative solution, including the…
Descriptors: Group Dynamics, Inquiry, Grade 6, Creative Thinking
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Sullivan, Florence; Lin, Xiadong – Journal of Interactive Learning Research, 2012
The purpose of this study is to examine the relationship of middle school students' perceptions of the ideal science student to their problem solving activity and conceptual understanding in the applied science area of robotics. Twenty-six 11 and 12 year-olds (22 boys) attending a summer camp for academically advanced students participated in the…
Descriptors: Technology Education, Statistical Analysis, Robotics, Problem Solving
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Kolikant, Y. Ben-David; Mussai, M. – Computer Science Education, 2008
We studied students' conceptions of correctness and their influence on students' correctness-related practices by examining how 159 students had analyzed the correctness of error-free and erroneous algorithms and by interviewing seven students regarding their work. We found that students conceptualized program correctness as the sum of the…
Descriptors: Misconceptions, Computer Science Education, Science Instruction, Programming
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Sampson, Demetrios G., Ed.; Spector, J. Michael, Ed.; Ifenthaler, Dirk, Ed.; Isaías, Pedro, Ed. – International Association for Development of the Information Society, 2017
These proceedings contain the papers of the 14th International Conference on Cognition and Exploratory Learning in the Digital Age (CELDA 2017), 18-20 October 2017, which has been organized by the International Association for Development of the Information Society (IADIS) and endorsed by the Japanese Society for Information and Systems in…
Descriptors: Conference Papers, Student Journals, Diaries, Self Management
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Norton, Stephen J.; McRobbie, Campbell J.; Ginns, Ian S. – Research in Science Education, 2007
Little research has been conducted on how students work when they are required to plan, build and evaluate artefacts in technology rich learning environments such as those supported by tools including flow charts, "Labview" programming and Lego construction. In this study, activity theory was used as an analytic tool to examine the social…
Descriptors: Programming Languages, Flow Charts, Problem Solving, Programming
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Likic, Vladimir A. – Biochemistry and Molecular Biology Education, 2006
This article describes the experience of teaching structural bioinformatics to third year undergraduate students in a subject titled "Biomolecular Structure and Bioinformatics." Students were introduced to computer programming and used this knowledge in a practical application as an alternative to the well established Internet bioinformatics…
Descriptors: Computers, Undergraduate Students, Internet, Programming
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Wagner, Susan Preston – Journal of Computing in Childhood Education, 1998
Examined whether use of robotics had a greater effect on elementary school children's achievement in science concepts and problem-solving abilities than use of battery-powered motorized manipulatives or no manipulatives. Found no significant difference in achievement from use of robotics except in programming language problem solving. Both…
Descriptors: Academic Achievement, Comparative Analysis, Computer Peripherals, Elementary Education
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