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Rubel, Laurie H.; Nicol, Cynthia – Mathematical Thinking and Learning: An International Journal, 2020
Place-based education has traditionally had a limited focus on mathematics, and critical mathematics education often lacks explicit attention to place and space. We explore integrating theories of place, spatial justice, and critical mathematics education. To begin, we consider various frameworks of place--including Indigenous, urban, and critical…
Descriptors: Mathematics Education, Teaching Methods, Social Justice, Power Structure
Stockall, Nancy; Dennis, Lindsay R. – Education and Treatment of Children, 2015
This article presents a seven-step framework for decision making to solve ethical issues in special education. The authors developed the framework from the existing literature and theoretical frameworks of justice, critique, care, and professionalism. The authors briefly discuss each theoretical framework and then describe the decision-making…
Descriptors: Special Education, Ethics, Decision Making, Problem Solving
Adam, Raoul – Journal of Learning Design, 2015
This paper introduces and illustrates Bi-relational Design (BD) as a general approach to (re)solving wicked problems. BD theorises oppositional, equipositional and para-positional approaches to problem-specific dyads (e.g., subjective/objective) based on a general consensus of research on epistemological development. These epistemic positions are…
Descriptors: Problem Solving, Epistemology, Design, Preservice Teachers
Webb, Mary; Gibson, David – Education and Information Technologies, 2015
Building upon discussions by the Assessment Working Group at EDUsummIT 2013, this article reviews recent developments in technology enabled assessments of collaborative problem solving in order to point out where computerised assessments are particularly useful (and where non-computerised assessments need to be retained or developed) while…
Descriptors: Affordances, Critical Thinking, Problem Solving, Cooperation
Krajcik, Joe – Science Teacher, 2015
Project-based science is an exciting way to teach science that aligns with the "Next Generation Science Standards" ("NGSS"). By focusing on core ideas along with practices and crosscutting concepts, classrooms become learning environments where teachers and students engage in science by designing and carrying out…
Descriptors: Student Projects, Science Instruction, Problem Solving, Technology Uses in Education
Levine, Alison J. Murray – New Directions for Teaching and Learning, 2015
This chapter describes a pedagogical approach that blends theory and practice in upper-level French film classes, but the objectives, design, and assignments are applicable to many contexts in which instructors might want to engage with visual material. Reading, viewing, writing, lecture, and discussion combine with practical filmmaking workshops…
Descriptors: Film Production, Foreign Language Films, French, Workshops
Symons, Duncan; Pierce, Robyn – Australian Primary Mathematics Classroom, 2019
In this follow-up article, the authors explain that when technology is integrated in an equitable manner and with due regard for professional learning, the affordances of Web 2.0 technology and interactive devices allow teachers to not only promote procedural fluency but also to develop students' conceptual understanding, reasoning and…
Descriptors: Mathematics Instruction, Problem Solving, Educational Technology, Technology Uses in Education
Mendez, James; Baird, Kate; Patino, Greicy – Science and Children, 2019
Picture this: a PhD chemist, PhD science educator, and a preservice Latina elementary educator walk into an aftercare program for primary and intermediate students from a rural school. These students are identified as low income and at risk and therefore eligible to participate in this school-provided aftercare. While across the state, these same…
Descriptors: Science Instruction, After School Programs, Low Income Students, At Risk Students
Rosa, Milton; Orey, Daniel Clark – For the Learning of Mathematics, 2019
The application of ethnomathematics and mathematical modelling allow us to see a different reality and give us insight into mathematics accomplished holistically. In this context, a pedagogical action that connects ethnomathematics and the cultural aspects of mathematical modelling with its academic features is referred to as ethnomodelling. This…
Descriptors: Mathematics Instruction, Teaching Methods, Mathematical Models, Cultural Pluralism
Larripa, Kamila; Mazzag, Borbala – PRIMUS, 2019
This article proposes that in addition to training teams of students to succeed in the Mathematical Contest in Modeling, the contest and the preparation for competition can be successfully used as a framework to teach an auxiliary skill set to undergraduate STEM majors through workshop-style modules. The skills emphasized are collaboration across…
Descriptors: Mathematical Models, Competition, STEM Education, Undergraduate Students
McKinney, Jason S. – Journal of Teaching in Social Work, 2019
The movement towards competency-based education in social work has required a shift in delivery to more experiential learning opportunities for students. Looking forward, the Council on Social Work Education [CSWE] has instituted a Futures Task Force, exploring roles social workers may play in the future, with particular attention to the evolution…
Descriptors: Teaching Methods, Social Work, Simulated Environment, Blended Learning
Edelen, Daniel; Bush, Sarah B.; Nickels, Megan – Science and Children, 2019
Because students have often been conditioned as passive learners and receivers of knowledge, it can be difficult for them to persevere in solving authentic problems. Nevertheless, teachers must persist in preparing students as problem solvers and critical thinkers. In an urban inner-city neighborhood school in the southeast, students embarked on a…
Descriptors: Elementary School Students, Elementary School Science, Grade 3, Grade 4
Thomas, Debra Kelly; Milenkovic, Lisa; Marousky, Annamargareth – Science and Children, 2019
Computer science (CS) and computational thinking (a problem-solving process used by computer scientists) teach students design, logical reasoning, and problem solving--skills that are valuable in life and in any career. Computational thinking (CT) concepts such as decomposition teach students how to break down and tackle a large complex problem.…
Descriptors: Computation, Thinking Skills, Computer Simulation, Computer Science Education
Kearney, Randi; Patterson, Katelyn; Wyner, Tressa – Childhood Education, 2019
Some of the most effective innovations in education have allowed fundamental changes to how individual students are being taught and assessed. Personalized learning models tailor learning to individual needs, accommodating students with diverse learning styles.
Descriptors: Self Efficacy, Educational Innovation, Emotional Development, Social Development
Aravind, Vasudeva Rao; McConnell, Marcella Kay – World Journal on Educational Technology: Current Issues, 2018
Educating our future citizens in science and engineering is vitally important to ensure future advancement. Presently, in the light of environmental sustainability, it is critical that students learn concepts relating to energy, its consumption and future demands. In this article, we harness the state of the educational technology, namely…
Descriptors: Intelligent Tutoring Systems, Science Instruction, Energy, Instructional Design

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