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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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Lahane, Rohan D.; Bhatt, Harsh R.; Paranjpye, Arvind – Physics Education, 2022
Students are introduced to the term wavelength in optics at school level. In this paper, we present an inexpensive and simple method to measure the wavelength of the light of a light emitting diode using a light depending resistor. This experimental set-up is developed at Science Laboratory, Nehru Planetarium (Mumbai), India. It is useful as an…
Descriptors: Science Instruction, Physics, Light, Optics
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Bandyopadhyay, Subhajit; Roy, Saswata – Journal of Chemical Education, 2014
This paper describes an inexpensive experiment to determine the carbonyl stretching frequency of an organic keto compound in its ground state and first electronic excited state. The experiment is simple to execute, clarifies some of the fundamental concepts of spectroscopy, and is appropriate for a basic spectroscopy laboratory course. The…
Descriptors: Science Experiments, Spectroscopy, Science Instruction, College Science
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Madhuri, G. V.; Kantamreddi, V. S. S. N; Prakash Goteti, L. N. S. – European Journal of Engineering Education, 2012
Active learning pedagogies play an important role in enhancing higher order cognitive skills among the student community. In this work, a laboratory course for first year engineering chemistry is designed and executed using an inquiry-based learning pedagogical approach. The goal of this module is to promote higher order thinking skills in…
Descriptors: World Problems, Inquiry, Chemistry, Active Learning
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Kumar, B. P. Ajith; Satyanarayana, V. V. V.; Singh, Kundan; Singh, Parmanand – Physics Education, 2009
A simple, flexible and very low cost hardware plus software framework for developing computer-interfaced science experiments is presented. It can be used for developing computer-interfaced science experiments without getting into the details of electronics or computer programming. For developing experiments this is a middle path between…
Descriptors: Computer Software, Computer Uses in Education, Science Instruction, Teaching Methods