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Harman, Gonca; Yenikalayci, Nisa – Journal of Educational Research and Practice, 2022
In this research, we examined the effect of the prediction-observation-explanation (POE) method on learning of image formation by a plane mirror and pre-service teachers' opinions. Twenty pre-service science teachers studying at first grade in the Department of Science Education in Turkey participated in the research. We used a one group…
Descriptors: Teaching Methods, Prediction, Observation, Science Instruction
Özdemir, Erdogan; Coramik, Mustafa – Physics Education, 2022
It is often necessary to enrich the teaching environment in order for students to learn optics in depth and to interpret the real optical situations with the information they have learned. In this study, a virtual teaching environment was developed using by Algodoo, a 2D simulation software. An eye model was created in order to explain the…
Descriptors: Light, Physics, Teaching Methods, Models
Hanif, Sofi; Wijaya, Agus Fany Chandra; Winarno, Nanang – Journal of Science Learning, 2019
In some school, teacher-centered is commonly found in the learning process. The learning process itself is still in the form of direct transfer of knowledge from teacher to students. Actually, students will learn better if they are engaged in a meaningful learning activity. STEM project-based learning is one of the alternative teaching strategies…
Descriptors: Creativity, STEM Education, Active Learning, Student Projects
Ceuppens, S.; Deprez, J.; Dehaene, W.; De Cock, M. – Physics Education, 2018
To improve the teaching and learning materials for a curriculum it is important to incorporate the findings from educational research. In light of this, we present creative exercises and experiments to elicit, confront and resolve misconceptions in geometrical optics. Since ray diagrams can be both the cause and the solution for many…
Descriptors: Misconceptions, Optics, Creative Activities, Science Experiments
Memis, Esra Kabatas – International Journal of Progressive Education, 2016
The aim of this study was to investigate the effect of the university-level application of an Argument-Based Inquiry Approach, as compared to the traditional laboratory teaching method, on the ability of students to learn about optics and to demonstrate critical thinking. In this quasi-experimental study, pretest-posttest scores and CCDTI were…
Descriptors: Persuasive Discourse, Critical Thinking, Thinking Skills, Optics
Rodríguez, Y.; Santana, A.; Mendoza, L. M. – Physics Education, 2013
Recently, with the development of more powerful and accurate computational tools, the inclusion of new didactic materials in the classroom is known to have increased. However, the form in which these materials can be used to enhance the learning process is still under debate. Many different methodologies have been suggested for constructing new…
Descriptors: Physics, Optics, Computation, Technology Uses in Education
Blattner, Margaret; Hug, Barbara; Ogrodnik, Jon; Korol, Donna – Science Teacher, 2013
Generating, collecting, and analyzing data is an essential practice in the science classroom (NRC 2012). Taking this data and using it to craft an explanation that demonstrates understanding of content is another essential practice. But both practices can be challenging, and students often require teacher support to succeed. Accordingly, the…
Descriptors: Science Instruction, Teaching Methods, Secondary School Science, High Schools
Farkas, N.; Henriksen, P. N.; Ramsier, R. D. – Physics Education, 2006
This article presents several activities that permit students to determine the index of refraction of transparent solids and liquids using simple equipment without the need for geometrical relationships, special lighting or optical instruments. Graphical analysis of the measured data is shown to be a useful method for determining the index of…
Descriptors: Lighting, Optics, Physics, Teaching Methods
Mader, Jan; Winn, Mary – AAPT Press (BK), 2008
This book is designed to be a quick and easy resource for anyone teaching physics for the first time. Written after extensive research, this book is filled with reliable labs, demos and activities that work well in the classroom. Also included are lesson plans, diagrams, and teacher notes for every activity. The book is not the end--it is just a…
Descriptors: Optics, Motion, Physics, Science Instruction
Peer reviewedHoots, Rita A. – Science Teacher, 1993
Presents and explains motion illusions that show how the eye and mind can fool the viewer into seeing or interpreting information that is different from the actual images presented. (PR)
Descriptors: Biology, High Schools, Learning Activities, Optics
Peer reviewedOlson, Dale W. – Physics Teacher, 1992
Describes the design and fabrication of a classroom hologram and activities utilizing the hologram to teach the concepts of real and virtual images to high school and introductory college students. Contrasts this method with three other approaches to teach about images. (MDH)
Descriptors: High Schools, Higher Education, Holography, Lasers
Eickhoff, Luvern R. – 1985
This instructional manual contains 20 learning activity packets for use in a workshop on lasers and fiber optics. The lessons cover the following topics: what a laser; coherent light; setting up the laser; characteristics of the laser beam; scattering of light; laser beam divergence, intensity, color, ophthalmology, and reflections; directivity of…
Descriptors: Competency Based Education, Course Content, Equipment, Industrial Arts
Patrick, Dale R. – 1988
This curriculum for a 1-semester or 1-year course in electronics is designed to take students from basic through advanced electronic systems. It covers several electronic areas, such as digital electronics, communication electronics, industrial process control, instrumentation, programmable controllers, and robotics. The guide contains…
Descriptors: Competence, Competency Based Education, Course Content, Electrical Systems
Texas State Technical Coll. System, Waco. – 1998
This package consists of course syllabi, an instructor's handbook, and a student laboratory manual for a 1-year vocational training program to prepare students for entry-level employment as laser machining technicians. The program was developed through a modification of the DACUM (Developing a Curriculum) technique. The course syllabi volume…
Descriptors: Behavioral Objectives, Competency Based Education, Computer Assisted Design, Computer Assisted Manufacturing

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