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Lev, Sara; Clark, Amanda; Starkey, Erin – Eye on Education, 2020
This ground-breaking book proves that Project Based Learning (PBL) does work in early childhood classrooms. Most common understandings of PBL in Pre-K through 2nd grade are rife with assumptions, misconceptions, and perceived barriers that have prevented its widespread implementation. "Implementing Project Based Learning in Early…
Descriptors: Student Projects, Early Childhood Education, Preschool Education, Kindergarten
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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
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Frissell, Virginia – Science and Children, 2010
Introducing a mystery object is an easy strategy to implement and allows teachers to pre-assess students' knowledge about local natural resources. Misconceptions can be noted as teachers record initial inquiries and wonderings on charts. Using the constructivist approach, students can explore and construct their learning as they continue to use…
Descriptors: Constructivism (Learning), Natural Resources, Misconceptions, Teaching Methods
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Turk, Fatma; Calik, Muammer – Asia-Pacific Forum on Science Learning and Teaching, 2008
Since Widodo, Duit and Muller (2002) addressed that there is a gap between teacher's theoretical knowledge and their practical classroom constructivist behavior, we presented a sample teaching activity about Endothermic-Exothermic Reactions for teacher usage. Therein, the aim of this study is to design a 5E model to include students' alternative…
Descriptors: Constructivism (Learning), Misconceptions, Worksheets, Concept Formation
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Williams, Jenni-Lea – Teaching Science, 2009
Educators are increasingly looking to Information and Communications Technology (ICT) as a means of enhancing student learning. The New Life Sciences (NLS) is a domain where complex and often abstract concepts must be communicated from a scientific perspective and understood by the student in terms of their underlying implications. This…
Descriptors: Science Instruction, Teaching Methods, Misconceptions, Evolution
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Wang, Jing-Ru; Lin, Sheau-Wen – International Journal of Science and Mathematics Education, 2008
This study has resulted in an elementary science methods course that facilitates the identification and description of the changes in students' conceptions and understanding of inquiry teaching, and the cultural influences, reflections, and situational factors influencing these changes. Written responses to open-ended questions, reflective…
Descriptors: Constructivism (Learning), Elementary School Science, Methods Courses, Cultural Influences
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Kogut, Leonard S. – Journal of Chemical Education, 1996
Discusses the importance of fostering critical thinking in chemistry. Presents strategies to improve critical thinking that were used in general chemistry for science and engineering majors, a similar course for less-prepared science and engineering majors, and a course for nonscience students. (JRH)
Descriptors: Chemistry, Constructivism (Learning), Critical Thinking, Higher Education
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Renton, Jack; Repine, Tom; Hemler, Deb – Science Teacher, 2003
The authors relate that they have conducted short courses on using constructivist techniques to teach historical geology over the past four years at regional National Science Teachers Association (NSTA) meetings. They realized that although most course participants were familiar with the basic tenets of plate tectonics, the authors were always…
Descriptors: Constructivism (Learning), Plate Tectonics, Geology, Science Teachers
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Emery, Dave – Science Scope, 1996
Describes a lab involving a cloud formation activity that uses the constructivist learning model to get students more involved in creating the lab. Enables students to develop a greater understanding of the concepts involved and more interest in the lab's outcomes. (JRH)
Descriptors: Constructivism (Learning), Earth Science, Hands on Science, Junior High Schools
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Hazel, Elizabeth; Prosser, Michael – American Biology Teacher, 1994
Provides findings of a study designed to explore ways in which changes in students' conceptual knowledge of photosynthesis are related to their study strategies and achievement and to course content. The authors ask teachers to consider these results and implications when facilitating students' learning. (ZWH)
Descriptors: Biology, College Freshmen, Concept Formation, Constructivism (Learning)
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Gang, Su – Physics Teacher, 1995
Describes a teaching experiment that uses the Learning Cycle to achieve the reorientation of physics' students conceptual frameworks away from commonsense perspectives toward scientifically rigorous outlooks. Uses Archimedes' principle as the content topic while using the Learning Cycle to remove students' nonscientific preconceptions. (JRH)
Descriptors: Constructivism (Learning), Elementary Secondary Education, Foreign Countries, Inquiry
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Wentworth, Nancy M.; Monroe, Eula Ewing – Mathematics Teaching in the Middle School, 1995
Discusses ways teachers can encourage students to construct useful meanings for the fractional unit. Provides three examples of representations of common fractions and illustrates misconceptions in fraction problems. Includes a brief summary of constructivist mathematics education and an example in which a teacher misunderstands a fractional unit.…
Descriptors: Arithmetic, Concept Formation, Constructivism (Learning), Fractions
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Amir, Ruth; Tamir, Pinchas – American Biology Teacher, 1994
Describes remedial instruction activities as well as activity developmental strategies that utilize the results obtained from previous research on students' misconceptions related to photosynthesis to enhance 11th- and 12th-grade biology students' understanding of photosynthesis. (ZWH)
Descriptors: Biology, Classroom Research, Constructivism (Learning), Educational Strategies
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Kavanagh, Claudine; Agan, Lori; Sneider, Cary – Astronomy Education Review, 2005
"National Science Education Standards" (1996), published by the National Research Council, recommends that students learn to explain Moon phases and eclipses by the time they graduate from eighth grade. It is clear from the research literature, however, that misconceptions about Moon phases and eclipses are widespread and resistant to change, even…
Descriptors: Constructivism (Learning), Research Needs, Astronomy, Misconceptions
Pearsall, Marcia K., Ed. – 1992
This book is a collection of research papers and respected philosophical statements on how secondary school students learn science best. Taken together, these papers serve as the basis for the Project on Scope, Sequence, and Coordination of Secondary School Science (SS&C). This book explains where the learning ideas of the SS&C Content…
Descriptors: Ability Grouping, Academic Achievement, Classroom Research, Concept Formation