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Sengul, Ozden – Journal of College Science Teaching, 2020
This paper describes an alternative approach to teaching and learning practices in an undergraduate physics laboratory. The instructor plans and implements the 5E instructional model into the laboratory instruction. The article includes an example of the 5E lesson for the laboratory component of a physics course, which has separate lecture and…
Descriptors: Science Instruction, College Science, Physics, Science Laboratories
Calalb, Mihail – Athens Journal of Education, 2023
A detailed characteristic of teaching and learning approaches used within the new concept of Learning by Being (LBB) is given. The evolution of educational paradigms from Learning by Doing (LBD) and Learning by Understanding (LBU) toward LBB is analyzed. The basic idea of LBB is students' ownership on cognitive goals, or the assumption of learning…
Descriptors: Constructivism (Learning), Physics, Science Instruction, Student Participation
McCrady, Nate; Rice, Emily – Astronomy Education Review, 2008
The typical "Astro 101" lecture-based course is passive, and adding well-designed learner-centered labs allows students to experience science as a pattern of thought. In this article, we present an approach to developing an introductory lab course. Identification of goals and student outcomes, particularly skills, and process and attitudinal…
Descriptors: Constructivism (Learning), Teaching Assistants, Astronomy, Introductory Courses
Palmer, Bill – Online Submission, 1993
A discrepant event is a happening contrary to our current beliefs. Discrepant events are said to be useful in clarifying concepts. This is one of the interesting features of current theories of constructivism. The story of Mpemba's ice cream is quite well known, but it is the educational aspects of the experiment that are of interest in this…
Descriptors: Constructivism (Learning), Water, Science Teachers, Science Instruction
Boyce, Mary C.; Singh, Kuki – Journal of Chemical Education, 2008
This paper describes a student-focused activity that promotes effective learning in analytical chemistry. Providing an environment where students were responsible for their own learning allowed them to participate at all levels from designing the problem to be addressed, planning the laboratory work to support their learning, to providing evidence…
Descriptors: College Science, Portfolio Assessment, Chemistry, Problem Solving
Peer reviewedNakhleh, Mary B. – Journal of Chemical Education, 1994
Discusses appropriate methodologies for investigating how learning occurs in the laboratory. Presents two techniques, concept mapping and V-diagramming, which can be effective research tools in probing students' understanding of chemical principles. These techniques can also be effective instructional tools that help students integrate lecture…
Descriptors: Chemistry, Classroom Environment, Concept Mapping, Constructivism (Learning)
Peer reviewedWoolnough, Jim – Research in Science Education, 2000
Describes a laboratory-based program in physics designed to help students build effective links between the mathematical equations used to solve problems in mechanics and the real world of moving objects. Conducts the study among senior college students and points out the value of laboratory work in science education for development of thinking…
Descriptors: Constructivism (Learning), Foreign Countries, Higher Education, Interdisciplinary Approach
Peer reviewedMillar, Mark – Science Teacher, 2005
Many varieties of data acquisition systems are now available for science classrooms. Most systems consist of a range of sensors--typically called probeware--connected to an interface unit usually described as a datalogger due to its capacity to record data from these sensors. Although some systems operate independently, most units connect to a…
Descriptors: Science Laboratories, Science Instruction, Teaching Methods, Science Teachers
Peer reviewedWillis, Cylette R.; Harcombe, Elnora S. – Educational Forum, 1998
A university-school model science lab helps middle school teachers learn to use constructivism in the classroom by supporting their own knowledge construction. Elements of the educational environment are motive, time, reflection, community, and practice. Effective components for knowledge construction include authentic need, mistakes, cooperation,…
Descriptors: College School Cooperation, Constructivism (Learning), Educational Environment, Faculty Development
Narum, Jeanne L., Ed. – 1991
In an era when the U.S. educational enterprise, particularly in mathematics, physical sciences, and engineering, has been found to be seriously flawed and has come under criticism from many different sectors, it is essential for science and mathematics educators from the nation's predominantly undergraduate institutions to take the lead in…
Descriptors: Concept Teaching, Constructivism (Learning), Educational Change, Females
Narum, Jeanne L., Ed. – 1992
The purpose of Project Kaleidoscope is to be a catalyst for action to encourage a national environment for reform in undergraduate education in science and mathematics in the United States. This report, the second of two volumes, presents ideas from Project Kaleidoscope that involve changing undergraduate science and mathematics education through…
Descriptors: Concept Teaching, Constructivism (Learning), Educational Change, Educational Research
Solomon, Pearl G.; And Others – 1994
The Marie Curie Mathematics and Science Center at St. Thomas Aquinas College (New York), in a comprehensive effort to improve mathematics and science education, offers the Saturday Morning Search for Solutions enrichment program for area students in grades 7-12. The program is interdisciplinary, connecting technology and the study of societal…
Descriptors: College Faculty, College School Cooperation, Constructivism (Learning), Enrichment Activities

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