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Marakovits, Scott – Kappa Delta Pi Record, 2022
Using targeted digital tools to match career ready practices with 21st-century skills, educators can infuse 21st-century skills into lessons and assessments.
Descriptors: 21st Century Skills, Technology Uses in Education, Career Readiness, Electronic Learning
Calalb, Mihail – Athens Journal of Education, 2023
A detailed characteristic of teaching and learning approaches used within the new concept of Learning by Being (LBB) is given. The evolution of educational paradigms from Learning by Doing (LBD) and Learning by Understanding (LBU) toward LBB is analyzed. The basic idea of LBB is students' ownership on cognitive goals, or the assumption of learning…
Descriptors: Constructivism (Learning), Physics, Science Instruction, Student Participation
Barradell, Sarah; Kennedy-Jones, Mary – Innovations in Education and Teaching International, 2015
Threshold concepts, student learning and curriculum are constructs within a learning and teaching discourse foregrounded by Meyer and Land. In this paper, we introduce a conceptual model that integrates these three constructs and identifies desired outcomes at the intersects: namely the processes of (1) ways of thinking and practising, (2)…
Descriptors: Learning Processes, Theory Practice Relationship, Models, Holistic Approach
Bowden, William R. – Journal of Media Literacy Education, 2015
Summer programs that experiment with combining media literacy and social-emotional learning can potentially affect students' academic performance. Based on a six-week program, working with rising eighth grade students in a low-income school district, this program allowed students to work on media projects while trying to develop stronger…
Descriptors: Social Development, Emotional Development, Media Literacy, Metacognition
Chun, Marc – Change: The Magazine of Higher Learning, 2012
If educators want students to practice and prepare for challenges they might eventually face, there are a number of useful strategies to connect academic learning to the "real world." One is to ask students to complete what are variously called "performance tasks," "case studies," "simulations," or "project- or problem-based learning units."…
Descriptors: Theory Practice Relationship, Active Learning, Problem Based Learning, Teaching Methods
Romero, Liz; Orzechowski, Agnes; Rahatka, Ola – Educational Technology, 2014
The availability of technological tools is promoting a shift toward more student-centered online instruction. This article describes the implementation of a Problem-Based Learning (PBL) model and the technological tools used to meet the expectations of the model as well as the needs of the students. The end product is a hybrid course with eight…
Descriptors: Problem Solving, Thinking Skills, Critical Thinking, Skill Development
Jonassen, David – Interdisciplinary Journal of Problem-based Learning, 2011
Although the characteristics of PBL (problem focused, student centered, self-directed, etc.) are well known, the components of a problem-based learning environment (PBLE) and the cognitive scaffolds necessary to support learning to solve different kinds of problems with different learners is less clear. This paper identifies the different…
Descriptors: Problem Solving, Problem Based Learning, Cognitive Processes, Case Studies
Rabikowska, Marta – Pedagogy, Culture and Society, 2009
In this paper an ethical approach to educational methodology is discussed in relation to the philosophies of Emanuel Levinas and Robert Cox. Cox's anti-essentialist understanding of historical materialism and Levinas' metaphysical idealism are applied to an analysis of the (self)-reflective methods required today in Higher Education in the UK,…
Descriptors: Critical Theory, Problem Based Learning, Ethics, Teaching Methods
Mayne, Lynne – Biochemistry and Molecular Biology Education, 2012
To ensure a modern bioscience curriculum that responds to the current needs of stakeholders, there is a need to embed a range of generic capabilities that enables graduates to succeed in and contribute to a rapidly changing world, as well as building strong bioscience skills and knowledge. The curriculum must also prepare students for a rapidly…
Descriptors: Biotechnology, Biochemistry, Teamwork, Metacognition
Tan, Oon-Seng – Educational Research for Policy and Practice, 2007
Education in this 21st century is concerned with developing intelligences. Problem solving in real-world contexts involves multiple ways of knowing and learning. Intelligence in the real world involves not only learning how to do things effectively but also more importantly the ability to deal with novelty and growing our capacity to adapt, select…
Descriptors: World Problems, Multiple Intelligences, Problem Based Learning, Educational Innovation
Carpenter, Thomas P.; And Others – 1994
In this paper four programs are described in which children learn multidigit number concepts and operations with understanding: (1) the Supporting Ten-Structured Thinking projects, (2) the Conceptually Based Instruction project, (3) Cognitively Guided Instruction projects, and (4) the Problem Centered Mathematics Project. The diversity in these…
Descriptors: Arithmetic, Cognitive Development, Demonstration Programs, Mathematics Instruction

Boyce, Linda Neal; VanTassel-Baska, Joyce; Burruss, Jill D.; Sher, Beverly Taylor; Johnson, Dana T. – Journal for the Education of the Gifted, 1997
Analyzes the use of problem-based learning as a catalyst for developing and implementing curriculum for gifted students that is both challenging and constructivist in approach. It relates metacognition to problem-based learning and describes inservice programs developed for teachers and administrators at the College of William and Mary (Virginia).…
Descriptors: Constructivism (Learning), Curriculum Development, Educational Methods, Elementary Secondary Education
Dunlap, Joanna C.; Grabinger, Scott – Performance Improvement Quarterly, 2003
Several instructional features facilitate the development of metacognitive and self-directed learning skills, and disposition to lifelong learning: student autonomy, responsibility, and intentionality; intrinsically motivating activities; enculturation; discourse and collaboration among learners; and reflection. Describes and presents examples of…
Descriptors: Cognitive Processes, Cooperative Learning, Instructional Design, Intentional Learning

van Biljon, Judy A.; Tolmie, C. Janse; du Plessis, Johan P. – Computers & Education, 1999
Discussion of ICAE (Intelligent Computer Aided Education) systems focuses on Magix, a prototype ICAE system for use in problem-based learning in linear mathematics for 10- to 12-year olds. The system integrates the principles of constructivism, user-driven interaction, knowledge-based systems, and metacognition. (Author/LRW)
Descriptors: Constructivism (Learning), Expert Systems, Intelligent Tutoring Systems, Intermediate Grades
Vos, Henk; de Graaff, E. – European Journal of Engineering Education, 2004
The reasons to introduce formats of active learning in engineering (ALE) such as project work, problem-based learning, use of cases, etc. are mostly based on practical experience, and sometimes from applied research on teaching and learning. Such research shows that students learn more and different abilities than in traditional formats of…
Descriptors: Cognitive Objectives, Problem Based Learning, Active Learning, Metacognition
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