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Aldridge, Jill M.; Rijken, Paul E.; Fraser, Barry J. – Learning Environments Research, 2021
The focus of professional learning on activities has changed to internal growth or change among teachers. Our 3-year whole-school collaborative action research was based on student feedback from a learning environment survey at a secondary school. Quantitative data were obtained by administering a survey in 2012, 2013 and 2014 to 2673 students in…
Descriptors: Educational Environment, Action Research, Participatory Research, Educational Improvement
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Khine, Myint Swe; Fraser, Barry J.; Afari, Ernest; Liu, Yang – Learning Environments Research, 2023
In this study, we examined relationships between learning environment characteristics (disciplinary climate, teacher support, and teacher feedback) and student outcomes (enjoyment of reading, and reading achievement) among 12,058 students from China who took part in the 2018 Programme for International Student Assessment. The results of structural…
Descriptors: Educational Environment, Discipline, Teacher Student Relationship, Feedback (Response)
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Long, Christopher S.; Sinclair, Becky Barton; Fraser, Barry J.; Larson, Tiffany R.; Harrell, Pamela E. – Learning Environments Research, 2022
When the 2020 semester began in the USA in January, it was unimaginable that the near-total closure of educational system across the globe would become the new normal. To mitigate the spread of the COVID-19 virus, teaching faculty hastily converted to an online learning environment in order for instruction to continue. This mixed-methods study…
Descriptors: Preservice Teachers, Student Attitudes, COVID-19, Pandemics
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Nguyen-Newby, Thuyuyen H.; Fraser, Barry J. – Learning Environments Research, 2021
Research on learning environments at the higher-education level has been quite sparse compared with studies at other educational levels. Because statistics is perceived as a difficult subject across disciplines, it suffers from low passing rates in many universities. This study involved validating questionnaires for assessing the psychosocial…
Descriptors: Computer Centers, Business Administration Education, Statistics Education, Educational Environment
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Aluri, Venkata L. N.; Fraser, Barry J. – Learning Environments Research, 2019
In this study, we measured students' perceptions of mathematics classroom learning environment and investigated their associations with students' achievement. The Mathematics-Related Constructivist-Oriented Classroom Learning Environment Survey (MCOLES) was developed with seven dimensions and 56 items, using theories surrounding classroom learning…
Descriptors: Student Attitudes, Mathematics Instruction, Educational Environment, Correlation
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Khine, Myint Swe; Fraser, Barry J.; Afari, Ernest – Learning Environments Research, 2020
Relationships between students' perceptions and their non-cognitive outcomes (epistemological beliefs, self-efficacy and attitudes to science) were investigated through secondary analysis of data from 14,167 United Arab Emirates students who participated in the Programme for International Student Assessment (PISA). Structural equation modeling…
Descriptors: Educational Environment, Achievement Tests, International Assessment, Foreign Countries
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Khine, Myint Swe; Fraser, Barry J.; Afari, Ernest; Oo, Zeya; Kyaw, Thein Thein – Learning Environments Research, 2018
We investigated students' perceptions of their science classroom environments with the use of the What Is Happening In this Class? (WIHIC) questionnaire at the university level in Myanmar. The translated questionnaire was administered to 251 students in first-year science classes at a university. Both exploratory factor analysis and confirmatory…
Descriptors: Student Attitudes, Educational Environment, Science Curriculum, Science Instruction
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Earle, James E.; Fraser, Barry J. – Learning Environments Research, 2017
The main objective of this research was to use learning environment and attitude scales in evaluating online resource materials for supporting a traditional mathematics curriculum. The sample consisted of 914 middle-school students in 49 classes. A second research focus was the validation of the chosen learning environment questionnaire, the…
Descriptors: Educational Environment, Student Attitudes, Middle School Students, Mathematics Instruction
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Distin, Kimberly; Fraser, Barry J. – AERA Online Paper Repository, 2017
The UTeach teacher development program prepares secondary science and mathematics teachers from recruited STEM majors in their field in numerous universities across the United States. A newly modified version of the Constructivist Learning Environment Survey (CLES) was used to evaluate differences among the preservice teachers' perceptions of the…
Descriptors: Preservice Teachers, Preservice Teacher Education, Secondary School Teachers, Student Attitudes
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Zaragoza, Julien M.; Fraser, Barry J. – Learning Environments Research, 2017
We investigated differences between field-study classrooms and traditional science classrooms in terms of the learning environment and students' attitudes to science, as well as the differential effectiveness of field-study classrooms for students differing in sex and English proficiency. A modified version of selected scales from the What Is…
Descriptors: Educational Environment, Student Attitudes, Scientific Attitudes, Field Studies
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Pramathevan, G. Sundari; Fraser, Barry J. – Learning Environments Research, 2020
Because there has been very little past research into gifted students' science learning environments, especially in Singapore, we selected from four established questionnaires six learning environment scales that are consistent with Van Tassel-Baska and Stambaugh's guidelines for gifted education. These scales were modified slightly to enhance…
Descriptors: Foreign Countries, Academically Gifted, Educational Environment, Science Instruction
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Aldridge, Jill M.; Fraser, Barry J. – Learning Environments Research, 2016
The purpose of this study, in part, was to confirm the factor structure of the School-Level Environment Questionnaire, which assesses six school climate factors that can be considered important for improving schools. The study also tested a research model of the relationships between the school climate, teachers' self-efficacy and job…
Descriptors: Teacher Attitudes, Educational Environment, Job Satisfaction, Self Efficacy
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Cohn, Stephen T.; Fraser, Barry J. – Learning Environments Research, 2016
In order to investigate the effectiveness of using Student Response Systems (SRS) among grade 7 and 8 science students in New York, the How Do You Feel About This Class? (HDYFATC) questionnaire was administered to 1097 students (532 students did use SRS and 565 students who did not use SRS). Data analyses attested to the sound factorial validity…
Descriptors: Audience Response Systems, Educational Environment, Attitudes, Achievement
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Aldridge, Jill M.; Ala'i, Kate G.; Fraser, Barry J. – Learning Environments Research, 2016
This article reports research into associations between students' perceptions of the school climate and self-reports of ethnic and moral identity in high schools in Western Australia. An instrument was developed to assess students' perceptions of their school climate (as a means of monitoring and guiding schools as they are challenged to become…
Descriptors: Foreign Countries, High School Students, Student Attitudes, Adolescent Attitudes
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McDaniel, Donna Christine; Fraser, Barry J. – AERA Online Paper Repository, 2016
In "The No Significant Differences Phenomenon," Russell (1999) discusses a thought-provoking pattern of research findings regarding integrating educational technology into classroom instruction that started in 1928 and continues today. Finding few studies that resulted in measurable positive effects, Russell concluded that using…
Descriptors: Educational Technology, Technology Uses in Education, Technology Integration, Program Effectiveness
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