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Uddin, Md Jama; Panda, Bhujendra Nath; Agarwal, Prakash Chandra – Physics Education, 2023
Enhancing the problem-solving skills of learners belonging to socio-economically disadvantaged groups is a great concern in general and particularly in the Indian context. Problem-solving skills are the most important skills of the 21st century for all learners to acquire necessary competencies. The main purpose of this work is to investigate the…
Descriptors: Identification, Error Correction, Grade 9, High School Students
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Narayanan, Soumya; Sarin, Pradeep; Pawar, Nitin; Murthy, Sahana – Physical Review Physics Education Research, 2023
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] We present the pedagogical design and implementation of "ESSENCe": Experimental problem solving using Staging, Scaffolding, Embedded information sources, iNstruments, and Collaboration. Research in experimental physics requires…
Descriptors: Research Skills, Skill Development, Physics, Science Experiments
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Nandhakumar, R.; Govindarajan, K. – Turkish Online Journal of Educational Technology - TOJET, 2020
Education for sustainable development is an emerging concept that encompasses a new vision in physics education that empowers the learner to assume responsibility for creating a sustainable future. Physics education is still struggling to adapt to the personalized approach in learning. Personalized learning thrives in this technology-rich…
Descriptors: Instructional Effectiveness, Science Instruction, Physics, Computer Assisted Instruction
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Raghavan, Neeraja – Teaching Science, 2017
Flotation is usually taught in Indian schools after students have been introduced to the concepts of mass, density, pressure, volume and buoyancy. This paper describes an attempt to teach the principle of flotation to a class of sixth graders--who had not yet been taught these concepts--so they could understand (and perhaps, arrive at) Archimedes'…
Descriptors: Science Instruction, Grade 6, Scientific Concepts, Teaching Methods
Mumthas, N. S.; Abdulla, Shyma Usman – Online Submission, 2019
Physics and Mathematics are two deeply interlinked domains of Science. Mathematics is considered as the language in which the Physics theories are built by employing mathematical symbols and operations to make equations and representations in the world of Physics completely meaningful. In spite of being the backbone of Physics, the use of…
Descriptors: Physics, Science Instruction, Science Teachers, High School Students
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Reddy, M. Vijaya Bhaskara; Panacharoensawad, Buncha – Journal of Education and Practice, 2017
In twenty first century, abundant innovative tools have been identified by the researchers to evaluate the conceptual understandings, problem solving, beliefs and attitudes about physics. Nevertheless, lacking of wide variety of evaluation instruments with respect to problem solving in physics. It indicates that the complexity of the domain fields…
Descriptors: Physics, Problem Solving, Performance Factors, Skill Analysis
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Mashood, K. K.; Singh, Vijay A. – Physics Education, 2013
Research suggests that problem-solving skills are transferable across domains. This claim, however, needs further empirical substantiation. We suggest correlation studies as a methodology for making preliminary inferences about transfer. The correlation of the physics performance of students with their performance in chemistry and mathematics in…
Descriptors: Physics, Problem Solving, Science Process Skills, Correlation
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Singh, Shilpi; Pathak, Praveen; Singh, Vijay A. – European Journal of Physics, 2011
The one-dimensional finite well is a textbook problem. We propose approximate approaches to obtain the energy levels of the well. The finite well is also encountered in semiconductor heterostructures where the carrier mass inside the well (m[subscript i]) is taken to be distinct from mass outside (m[subscript o]). A relevant parameter is the mass…
Descriptors: Quantum Mechanics, Evaluation, Physics, Comparative Analysis
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Johnson, N. – Acta Didactica Napocensia, 2012
Self-regulation is the controlling of a process or activity by the students who are involved in Problem solving in Physics rather than by an external agency (Johnson, 2011). Selfregulated learning consists of three main components: cognition, metacognition, and motivation. Cognition includes skills necessary to encode, memorise, and recall…
Descriptors: Metacognition, Secondary School Students, Learning Strategies, Physics
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Kapur, Manu – Cognition and Instruction, 2008
This study demonstrates an existence proof for "productive failure": engaging students in solving complex, ill-structured problems without the provision of support structures can be a productive exercise in failure. In a computer-supported collaborative learning setting, eleventh-grade science students were randomly assigned to one of…
Descriptors: Problem Solving, Grade 11, Science Education, Computer Uses in Education