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Sole, Marla – Journal of Mathematics Education at Teachers College, 2013
With the implementation of the National Council of Teachers of Mathematics recommendations and the adoption of the Common Core State Standards for Mathematics, modeling has moved to the forefront of K-12 education. Modeling activities not only reinforce purposeful problem-solving skills, they also connect the mathematics students learn in school…
Descriptors: Mathematical Models, Common Core State Standards, Mathematics Activities, Problem Solving
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Sadler-Smith, Eugene – Creativity Research Journal, 2015
Based on a detailed reading of Graham Wallas' "Art of Thought" (1926) it is argued that his four-stage model of the creative process (Preparation, Incubation, Illumination, Verification), in spite of holding sway as a conceptual anchor for many creativity researchers, does not reflect accurately Wallas' full account of the creative…
Descriptors: Creativity, Models, Scientific Principles, Discovery Processes
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Dalla Vecchia, Rodrigo – Themes in Science and Technology Education, 2015
This study discusses aspects of the association between Mathematical Modeling (MM) and Big Data in the scope of mathematical education. We present an example of an activity to discuss two ontological factors that involve MM. The first is linked to the modeling stages. The second involves the idea of pedagogical objectives. The main findings…
Descriptors: Mathematics Education, Mathematical Models, Data Analysis, Mathematics Activities
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Tsai, Kuan Chen – in education, 2015
The purpose of this article is to propose a theoretical framework for creative education, which consists of three dimensions: initiation, operation, and content. I will first review the creativity literature in education, and then go on to demarcate three levels with several components that are necessary to a pedagogical practice for creative…
Descriptors: Creativity, Creative Development, Psychology, Models
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Fonger, Nicole L.; Tran, Dung; Elliott, Natasha – Grantee Submission, 2015
This research targets children's informal strategies and knowledge of fractions by examining their ability to create, interpret, and connect representations in doing and communicating mathematics when solving fractions tasks. Our research group followed a constant comparative method to analyze clinical interviews of children in grades 2-6 solving…
Descriptors: Fractions, Elementary School Students, Interviews, Problem Solving
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Wu, Yun-Wu; Liao, Shin; Wen, Ming-Hui; Weng, Kuo-Hua – EURASIA Journal of Mathematics, Science & Technology Education, 2017
The education of architectural design requires balanced curricular arrangements of respectively theoretical knowledge and practical skills to really help students build their knowledge structures, particularly helping them in solving the problems of cognitive load. The purpose of this study is to establish an architectural design knowledge…
Descriptors: Cognitive Ability, Architectural Education, Models, Design
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Leak, Anne E.; Rothwell, Susan L.; Olivera, Javier; Zwickl, Benjamin; Vosburg, Jarrett; Martin, Kelly Norris – Physical Review Physics Education Research, 2017
Problem-solving strategies learned by physics undergraduates should prepare them for real-world contexts as they transition from students to professionals. Yet, graduate students in physics-intensive research face problems that go beyond problem sets they experienced as undergraduates and are solved by different strategies than are typically…
Descriptors: Problem Solving, Physics, Doctoral Programs, Graduate Students
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Schech, Susanne; Kelton, Maryanne; Carati, Colin; Kingsmill, Verity – Higher Education Research and Development, 2017
Higher education institutions increasingly recognise the need to develop both disciplinary knowledge and soft skills to foster the employability of their graduates. For students in International Studies programmes, the workplace opportunities to develop soft skills relevant to their intended professions are scarce, costly and unavailable to many.…
Descriptors: Global Approach, Global Education, Simulation, Basic Skills
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Barth, Katie; Bahr, Damon; Shumway, Steven – Science and Children, 2017
Across the United States, political leaders, educators, and business persons are issuing an urgent call for reform in STEM education (NGSS Lead States 2013). One important response to this call is Integrated STEM, which the National Governor's Association (2007, p. 7) says involves, "... an emphasis on design and problem solving in…
Descriptors: STEM Education, Science Instruction, Water, Interdisciplinary Approach
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Kress, Nancy Emerson – Mathematics Teacher, 2017
One of the primary expectations that the author has for her students is for them to develop greater independence when solving complex and unique mathematical problems. The story of how the author supports her students as they gain confidence and independence with complex and unique problem-solving tasks, while honoring their expectations with…
Descriptors: Mathematics Instruction, Problem Solving, Models, Teacher Student Relationship
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Igoe, D. P.; Parisi, A. V.; Wagner, S. – International Journal of Mathematical Education in Science and Technology, 2017
Smartphones used as tools provide opportunities for the teaching of the concepts of accuracy and precision and the mathematical concept of arctan. The accuracy and precision of a trigonometric experiment using entirely mechanical tools is compared to one using electronic tools, such as a smartphone clinometer application and a laser pointer. This…
Descriptors: Drafting, Accuracy, Mathematics Instruction, Teaching Methods
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Hwang, Gwo-Jen; Lai, Chiu-Lin; Liang, Jyh-Chong; Chu, Hui-Chun; Tsai, Chin-Chung – Educational Technology Research and Development, 2018
In this study, a one-year program was conducted to investigate the relationships between students' perceptions of mobile learning and their tendencies of peer interaction and higher-order thinking in issue-based mobile learning activities. To achieve the research objective, a survey consisting of eight scales, namely, usability, continuity,…
Descriptors: High School Students, Electronic Learning, Student Attitudes, Peer Relationship
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Longmore, Anne-Liisa; Grant, Ginger; Golnaraghi, Golnaz – Journal of Transformative Education, 2018
The 21st century is seeing dramatic shifts in the business environment. In order for organizations to adapt to these shifts, they must be more flexible and learning oriented. To thrive in this environment, organizational leaders must facilitate and build the capacity for learning throughout the organization. Organizational leadership is looking…
Descriptors: Capacity Building, Critical Thinking, Problem Solving, Criticism
Tait, Aaron; Faulkner, Dave – ASCD, 2018
The world needs great individual educational changemakers capable of identifying problems and creating bold, scalable solutions. But the world also needs Dream Teams--groups of talented administrators, teachers, staff, students, and community members who are passionate about making things better for kids, believe that school-based change is the…
Descriptors: Educational Change, Educational Innovation, Change Agents, Educational Improvement
Sharma, Anu – ProQuest LLC, 2013
Mathematics education currently emphasizes engaging students in mathematical modeling to understand problems of everyday life and society (Council of Chief State School Officers (CCSSO), 2010; English & Sriraman, 2010; Lesh & Zawojewski, 2007). The Common Core State Standards for mathematics also stress that high school students should…
Descriptors: Mathematics Education, Mathematical Models, Self Efficacy, Learning Strategies
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