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Showing 1 to 15 of 22 results Save | Export
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Elaine Kit Ling Yeung; Miao Zhong; Jing Huang; Man Ho Chan; Carrey Tik Sze Siu; Him Cheung – Asia-Pacific Education Researcher, 2025
This study compares direct instruction to two constructivist approaches, namely experimentation and problem-based learning, in fifth-grade science learning in Hong Kong. Constructivist instructional approaches, contrary to direct instruction, stress on students' active role in constructing knowledge in learning. Experimentation and problem-based…
Descriptors: Constructivism (Learning), Science Instruction, Outcomes of Education, Problem Based Learning
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Nagihan Tanik Önal; Nezih Önal – Education and Information Technologies, 2021
The purpose of the current study was to determine the effect of teaching astronomy through augmented reality (AR) on the achievement and interest level of gifted students and their opinions about AR applications. The current study was conducted in line with the explanatory sequential mixed-methods design. The study group of the current research…
Descriptors: Simulated Environment, Astronomy, Science Achievement, Science Interests
Hayes, Meredith L.; Smith, P. Sean; Midden, W. Robert – Horizon Research, Inc., 2020
Science instruction reform efforts call for increased opportunities for students to engage with science content and practices. School-based citizen science (CS), when implemented well, addresses this call and provides a meaningful context for student learning. Despite CS projects' increasing role in formal science instruction, research on the…
Descriptors: Science Instruction, Science Teachers, Teaching Methods, Student Participation
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Ediger, Marlow – Education, 2017
Care must be given to align curricular goal and instructional methods, materials, and assessments. Student effort, student interest in science and pupil perseverance are key factors that impact the learning process. Educators must be aware of the interactions among these critical concepts to assist students in attaining desired outcomes.
Descriptors: Science Curriculum, Science Process Skills, Skill Development, Alignment (Education)
Rebecca Danielle Connelly – ProQuest LLC, 2018
Students majoring in science, technology, engineering, and mathematics (STEM) are in high demand. Over 1 million STEM graduates will be needed by 2022 to meet the projected workforce needs (The Progress Report on Coordinating Federal Science, Technology, Engineering, and Mathematics Education, 2016). If students are needed to fulfill jobs in areas…
Descriptors: Scientific Attitudes, Student Attitudes, Science Instruction, Student Motivation
Ghadiri, Maryam Ghadiri – ProQuest LLC, 2018
Recent educational studies have shown increasing lack of interest and participation of youth (ages 10-14 years old) in various STEM (Science, Technology, Engineering and Mathematics) fields in the U.S. The decline in the number of youth choosing to study STEM fields in higher education and the resulting lack of STEM professionals in the society…
Descriptors: Ecology, Conservation (Environment), Biology, Environmental Education
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Hagay, Galit; Baram-Tsabari, Ayelet – Journal of Research in Science Teaching, 2015
Many students feel the curriculum is detached from their lives and interests. Indeed, about half the questions asked by high school biology students are not addressed by the curriculum. This study presents a strategy to incorporate students' curiosity questions into the curriculum as a way to reduce the disparity between students' interests and…
Descriptors: Secondary School Science, High School Students, Science Interests, Science Curriculum
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Shamuganathana, Sheila; Karpudewan, Mageswary – Chemistry Education Research and Practice, 2017
Existing studies report on the importance of instilling environmental literacy among students from an early stage of schooling to enable them to adopt more pro-environmental behaviors in the near future. This quasi-experimental study was designed to compare the level of environmental literacy among two groups of students: the experimental group (N…
Descriptors: Secondary School Students, Secondary School Science, Environmental Education, Scientific Literacy
Camfield, Eileen Kogl; McFall, Eileen Eckert; Land, Kirkwood M. – Liberal Education, 2016
Introductory biology courses are supposed to serve as gateways for many majors, but too often they serve instead as gatekeepers. Reliance on lectures, large classes, and multiple-choice tests results in high drop and failure rates. Critiques of undergraduate science education are clear about the problems with conventional introductory science…
Descriptors: Science Education, Educational Innovation, Class Size, Introductory Courses
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Carlone, Heidi; Smithenry, Dennis – Science and Children, 2014
Imagine two fourth-grade classes. Both contain students of comparable demographics and highly respected teachers each with four to five years of experience. Both classes engage in science curricula that emphasize science and engineering practices as outlined in the "Next Generation Science Standards" (NGSS Lead States 2013). Both classes…
Descriptors: Elementary School Students, Elementary School Teachers, Science Curriculum, Elementary School Curriculum
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Cakmakci, Gultekin; Sevindik, Hatice; Pektas, Meryem; Uysal, Asli; Kole, Fatma; Kavak, Gamze – Research in Science Education, 2012
This paper reports on an attempt to investigate Turkish primary school students' interest in science by using their self-generated questions. We investigated students' interest in science by analyzing 1704 self-generated science-related questions. Among them, 826 questions were submitted to a popular science magazine called Science and Children.…
Descriptors: Informal Education, Science Interests, Foreign Countries, Internet
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McConney, Andrew; Oliver, Mary; Woods-McConney, Amanda; Schibeci, Renato – International Journal of Science Education, 2011
Previous research has shown that indigenous students in Australia do not enjoy equal educational outcomes with other Australians. This secondary analysis of PISA 2006 confirmed that this continues to be the case in science literacy for secondary students. However, the analysis also revealed that indigenous Australian students held interest in…
Descriptors: Indigenous Populations, Educational Objectives, Outcomes of Education, Science Interests
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Breslow, Lori – Change: The Magazine of Higher Learning, 2010
In the late 1990s, the physics department at the Massachusetts Institute of Technology (MIT) had a problem. The department was responsible for teaching the two required physics courses that are part of the General Institute Requirements (GIRs), MIT's core curriculum--Physics I (mechanics, or in MIT parlance, 8.01) and Physics II (electricity and…
Descriptors: Curriculum Development, Core Curriculum, Science Interests, Mechanics (Physics)
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Lavonen, Jari; Laaksonen, Seppo – Journal of Research in Science Teaching, 2009
Finnish students' opinions about the frequency of learning activities and communication in the Finnish science classroom, their interest in science and science studies and careers, their sense of self-efficacy, and their beliefs about their own competence as well as their performance in science are analyzed based on PISA 2006 Scientific Literacy…
Descriptors: Equal Education, Self Efficacy, Science Interests, Program Effectiveness
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Anderson, Ronald D. – NASSP Bulletin, 1983
After citing literature contending that science education is exclusive, academic, and devoid of inquiry orientation, this article gives principals suggestions for improving science education and making it available to all students. (MJL)
Descriptors: Educational Trends, Inquiry, Science Curriculum, Science Education
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