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Karsli Baydere, Fethiye – Chemistry Education Research and Practice, 2021
The main purpose of this study was to investigate the effect of the Context-Based Approach (CBA) enriched by Prediction-Observation-Explanation (POE) on 5th grade students' conceptual understanding of the States of Matter, Heat and Temperature. In this study, quantitative and qualitative data collection methods were employed. The quantitative…
Descriptors: Elementary School Science, Elementary School Students, Grade 5, Chemistry
Taber, Keith S. – Center for Educational Policy Studies Journal, 2021
This article argues that what is most at risk in schooling during a global pandemic, or other similar broad challenges to normal functioning, are those elements that might be considered the less traditional and so the most progressive. After setting out some general background common to the challenge faced by schools and school teachers, this…
Descriptors: Educational Change, COVID-19, Pandemics, Progressive Education
Allen, Melony; Webb, Angela W.; Matthews, Catherine E. – Theory Into Practice, 2016
This article defines the process of adaptive teaching in science, technology, engineering, and math (STEM). We assert that teachers who possess a well-developed STEM pedagogical content knowledge, a constructivist paradigm of teaching and learning, and an ability to draw on a vision while reflecting on and during teaching to help negotiate…
Descriptors: STEM Education, Science Instruction, Pedagogical Content Knowledge, Constructivism (Learning)
DeFina, Anthony V. – Science Teacher, 2017
To promote teaching science through inquiry, the author wanted to use his experience in the Galápagos to design a lesson that allows students to immerse themselves in the essential science and engineering practices identified in the "Next Generation Science Standards," as they ask questions; analyze and interpret data; engage in argument…
Descriptors: Science Education, Science Instruction, Science Process Skills, Evolution
Cakir, Nevin Kozcu – Journal of Education and Training Studies, 2017
Today, with the development of science and technology and its rapid progress, the importance attached to science education has increased. This increase in interest has led to the development of the methods, techniques, and approaches that enable the students to be active, question and construct knowledge. The 5E learning model is one of them, and…
Descriptors: Academic Achievement, Meta Analysis, Science Process Skills, Science Education
Duban, Nil Yildiz – Eurasian Journal of Educational Research, 2013
Problem Statement: The constructivist reorganization of the elementary education programs in Turkey has revealed the importance of training skilled teachers who are familiar with both constructivist theory and the educational programs. In this way, teachers can adapt to their new roles, learn how to guide students, and prepare the best learning…
Descriptors: Science Instruction, Preservice Teachers, Constructivism (Learning), Student Teacher Attitudes
Taber, Keith S. – Journal of Chemical Education, 2010
Constructivism has been widely considered the most influential perspective in science education research for some decades, and has been the basis of widespread pedagogic advice in many educational contexts. Yet it has been claimed in this "Journal" that the philosophical basis of constructivist thought in chemical education is confused, and…
Descriptors: Chemistry, Science Instruction, Science Education, Teaching Methods
Hoskins, Peter – School Science Review, 2013
The Biological Sciences Curriculum Studies (BSCS) 5E Instructional Model (often referred to as the 5Es) consists of five phases. Each phase has a specific function and contributes both to teachers' coherent instruction and to students' formulation of a better understanding of scientific knowledge, attitudes and skills. Evidence indicates that the…
Descriptors: Foreign Countries, Biological Sciences, Secondary School Science, Teaching Models
Franke, Gaitano; Bogner, Franz X. – Journal of Educational Research, 2011
A hands-on instructional approach with medium-achieving 10th-grade students (N = 294) successfully demonstrated the achievement of a conceptual change. Two teaching variations were applied (I-1, I-2), both dealing with a hands-on gene technology lesson in an out-of-school laboratory. I-2 additionally confronted the participants with alternative…
Descriptors: Constructivism (Learning), Teaching Models, Molecular Biology, Concept Formation
Calik, Muammer; Ayas, Alipasa; Coll, Richard K. – Asia-Pacific Forum on Science Learning and Teaching, 2006
In this article we present details of a four-step constructivist-based teaching strategy, which helps students understand the dissolution of a gas in a liquid. The model derived from Ayas (1995) involves elicitation of pre-existing ideas, focusing on the target concept, challenging students' ideas, and applying newly constructed ideas to similar…
Descriptors: Constructivism (Learning), Teaching Models, Science Instruction, Chemistry
Liang, Ling; Schmuckler, Joseph S. – Science Scope, 2004
As both classroom teaching practice and literature show, many students have difficulties learning science concepts such as density. Here are some investigations that identify the relationship between density and floating through experimenting with successive dilution of a liquid, or the systematic change of concentration of a saltwater solution.…
Descriptors: Teaching Methods, Teaching Models, Constructivism (Learning), Science Instruction
Çalik, Muammer; Ayas, Alipasa – Asia-Pacific Forum on Science Learning and Teaching, 2005
There are the only two studies available on the types of solutions--unsaturated, saturated, supersaturated, dilute and concentrate--in the related literature with respect to students' understanding. But, no study focuses on remediation of students' alternative conceptions with regard to the aforementioned concepts, based on the assumption that…
Descriptors: Logical Thinking, Learning Activities, Science Instruction, Chemistry

Yager, Robert E. – Science Teacher, 1991
Provides a brief overview of the constructivist learning model and characterizes the science classroom where the constructivist model can best be used. (ZWH)
Descriptors: Biology, Classroom Techniques, Constructivism (Learning), Elementary Secondary Education
Zohar, Anat – Journal of Science Teacher Education, 2004
This study investigated elements of pedagogical knowledge when students' higher order thinking was an explicit and focused instructional goal. The findings suggest a model that consists of 6 elements. It seems that, for all these elements, the source of differences between teachers' various pedagogies may be tracked to the basic distinction…
Descriptors: Pedagogical Content Knowledge, Conventional Instruction, Teaching Models, Constructivism (Learning)

Appleton, Ken – School Science and Mathematics, 1993
Presents a learning model for science education and describes teacher interventions derived from the model to produce cognitive restructuring. Demonstrates how teacher interventions may be developed through a series of interventions, related activities, and comments. (MDH)
Descriptors: Cognitive Development, Cognitive Restructuring, Constructivism (Learning), Discussion (Teaching Technique)
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