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Erschienen in: Journal of Science Education and Technology 4/2013

01.08.2013

Technology Use in Science Instruction (TUSI): Aligning the Integration of Technology in Science Instruction in Ways Supportive of Science Education Reform

verfasst von: Todd Campbell, Nor Hashidah Abd-Hamid

Erschienen in: Journal of Science Education and Technology | Ausgabe 4/2013

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Abstract

This study describes the development of an instrument to investigate the extent to which technology is integrated in science instruction in ways aligned to science reform outlined in standards documents. The instrument was developed by: (a) creating items consistent with the five dimensions identified in science education literature, (b) establishing content validity with both national and international content experts, (c) refining the item pool based on content expert feedback, (d) piloting testing of the instrument, (e) checking statistical reliability and item analysis, and (f) subsequently refining and finalization of the instrument. The TUSI was administered in a field test across eleven classrooms by three observers, with a total of 33 TUSI ratings completed. The finalized instrument was found to have acceptable inter-rater intraclass correlation reliability estimates. After the final stage of development, the TUSI instrument consisted of 26-items separated into the original five categories, which aligned with the exploratory factor analysis clustering of the items. Additionally, concurrent validity of the TUSI was established with the Reformed Teaching Observation Protocol. Finally, a subsequent set of 17 different classrooms were observed during the spring of 2011, and for the 9 classrooms where technology integration was observed, an overall Cronbach alpha reliability coefficient of 0.913 was found. Based on the analyses completed, the TUSI appears to be a useful instrument for measuring how technology is integrated into science classrooms and is seen as one mechanism for measuring the intersection of technological, pedagogical, and content knowledge in science classrooms.

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Literatur
Zurück zum Zitat Abd-El-Khalick F, Bell R, Lederman N (1998) The nature of science and instructional practice: making the unnatural natural. Sci Educ 82(4):417–436CrossRef Abd-El-Khalick F, Bell R, Lederman N (1998) The nature of science and instructional practice: making the unnatural natural. Sci Educ 82(4):417–436CrossRef
Zurück zum Zitat Adamson AE, Banks D, Burtch M, Cox F III, Judson E, Turley JB, Benford R, Lawson AE (2003) Reformed undergraduate instruction and its subsequent impact on secondary school teaching practice and student achievement. J Res Sci Teach 40(10):939–958CrossRef Adamson AE, Banks D, Burtch M, Cox F III, Judson E, Turley JB, Benford R, Lawson AE (2003) Reformed undergraduate instruction and its subsequent impact on secondary school teaching practice and student achievement. J Res Sci Teach 40(10):939–958CrossRef
Zurück zum Zitat American Association for the Advancement of Science (1993) Benchmarks for science literacy. Author, Washington, DC American Association for the Advancement of Science (1993) Benchmarks for science literacy. Author, Washington, DC
Zurück zum Zitat American Association for the Advancement of Science (2001) Atlas for scientific literacy. AAAS, Washington, DC American Association for the Advancement of Science (2001) Atlas for scientific literacy. AAAS, Washington, DC
Zurück zum Zitat American Association for the Advancement of Science (2007) Atlas for scientific literacy, vol 2. AAAS, Washington, DC American Association for the Advancement of Science (2007) Atlas for scientific literacy, vol 2. AAAS, Washington, DC
Zurück zum Zitat American Association for the Advancement of Science (AAAS) (1989) Science for all Americans. Oxford University Press, New York American Association for the Advancement of Science (AAAS) (1989) Science for all Americans. Oxford University Press, New York
Zurück zum Zitat Anastopoulou S, Sharples M, Ainsworth S, Crook C, O’Malley C, Wright M (2012) Creating personal meaning through technology-supported science inquiry learning across formal and informal settings. Int J Sci Educ 34(2):251–273CrossRef Anastopoulou S, Sharples M, Ainsworth S, Crook C, O’Malley C, Wright M (2012) Creating personal meaning through technology-supported science inquiry learning across formal and informal settings. Int J Sci Educ 34(2):251–273CrossRef
Zurück zum Zitat Ball DL, Cohen DK (1999) Developing practice, developing practitioners: toward a practice-based theory of professional development. In: Darling-Hammond L, Skyes G (eds) Teaching as the learning professional: handbook of policy and practice. Jossey-Bass, San Francisco, pp 3–32 Ball DL, Cohen DK (1999) Developing practice, developing practitioners: toward a practice-based theory of professional development. In: Darling-Hammond L, Skyes G (eds) Teaching as the learning professional: handbook of policy and practice. Jossey-Bass, San Francisco, pp 3–32
Zurück zum Zitat Bell R, Gess-Newsome J, Luft J (2008) Technology in the secondary science classroom. NSTA Press, Arlington, VA Bell R, Gess-Newsome J, Luft J (2008) Technology in the secondary science classroom. NSTA Press, Arlington, VA
Zurück zum Zitat Campbell T, Bohn C (2008) Science laboratory experiences of high school students across one state in the U.S.: descriptive research from the classroom. Sci Educ 17(1):36–48 Campbell T, Bohn C (2008) Science laboratory experiences of high school students across one state in the U.S.: descriptive research from the classroom. Sci Educ 17(1):36–48
Zurück zum Zitat Campbell T, Neilson D (2009) Student ideas and inquiries: investigating friction in the physics classroom. Sci Act 46(1):13–16 Campbell T, Neilson D (2009) Student ideas and inquiries: investigating friction in the physics classroom. Sci Act 46(1):13–16
Zurück zum Zitat Campbell T, Abd-Hamid N, Chapman H (2010) Development of instruments to assess teacher and student perceptions of inquiry experiences in science classrooms. J Sci Teacher Educ 21(1):13–30 Campbell T, Abd-Hamid N, Chapman H (2010) Development of instruments to assess teacher and student perceptions of inquiry experiences in science classrooms. J Sci Teacher Educ 21(1):13–30
Zurück zum Zitat Ebenezer J, Osman NK, Devairakkam L (2011) Engaging students in environmental research projects: perceptions of fluency with innovative technologies and levels of scientific inquiry abilities. J Res Sci Teach 48(1):98–116CrossRef Ebenezer J, Osman NK, Devairakkam L (2011) Engaging students in environmental research projects: perceptions of fluency with innovative technologies and levels of scientific inquiry abilities. J Res Sci Teach 48(1):98–116CrossRef
Zurück zum Zitat Flick LB, Sadri P, Morrell PD, Wainwright C, Schepige A (2009) Analysis of university teaching in science and mathematics undergraduate courses. School Sci Mathem 109(4):197–211CrossRef Flick LB, Sadri P, Morrell PD, Wainwright C, Schepige A (2009) Analysis of university teaching in science and mathematics undergraduate courses. School Sci Mathem 109(4):197–211CrossRef
Zurück zum Zitat Gess-Newsome J, Lederman NG (1995) Biology teachers’ perceptions of subject matter structure and its relationship to classroom practice. J Res Sci Teach 32:301–325CrossRef Gess-Newsome J, Lederman NG (1995) Biology teachers’ perceptions of subject matter structure and its relationship to classroom practice. J Res Sci Teach 32:301–325CrossRef
Zurück zum Zitat Gorsuch RL (1983) Factor analysis, 2nd edn. Erlbaum, Hillsdale, NJ Gorsuch RL (1983) Factor analysis, 2nd edn. Erlbaum, Hillsdale, NJ
Zurück zum Zitat Gorsuch R (2003) Factor analysis. In: Weiner IB, Freedheim DK, Schinka JA (eds) Handbook of psychology. Wiley, Hoboken, NJ, pp 143–164 Gorsuch R (2003) Factor analysis. In: Weiner IB, Freedheim DK, Schinka JA (eds) Handbook of psychology. Wiley, Hoboken, NJ, pp 143–164
Zurück zum Zitat Guzey SS, Roehrig GH (2009) Teaching science with technology: case studies of science teachers’ development of technology, pedagogy, and content knowledge. Contemp Issues Technol Teacher Educ 9(1):25–45 Guzey SS, Roehrig GH (2009) Teaching science with technology: case studies of science teachers’ development of technology, pedagogy, and content knowledge. Contemp Issues Technol Teacher Educ 9(1):25–45
Zurück zum Zitat Johnston A (2008) Demythologizing or Dehumanizing? A response to settlage and the ideals of open inquiry. J Sci Teacher Educ 19:11–13CrossRef Johnston A (2008) Demythologizing or Dehumanizing? A response to settlage and the ideals of open inquiry. J Sci Teacher Educ 19:11–13CrossRef
Zurück zum Zitat Koehler M, Mishra P (2005) What happens when teachers design educational technology? The development of technological pedagogical content knowledge. J Educ Comput Res 32(2):131–152CrossRef Koehler M, Mishra P (2005) What happens when teachers design educational technology? The development of technological pedagogical content knowledge. J Educ Comput Res 32(2):131–152CrossRef
Zurück zum Zitat Koehler M, Mishra P (2008) Introducing TPCK. In: AACTE Committee on Innovation and Technology (ed) Handbook of technological pedagogical content knowledge (TPCK) for educators. Routledge, New York, pp 3–31 Koehler M, Mishra P (2008) Introducing TPCK. In: AACTE Committee on Innovation and Technology (ed) Handbook of technological pedagogical content knowledge (TPCK) for educators. Routledge, New York, pp 3–31
Zurück zum Zitat Koehler MJ, Mishra P (2009) What is technological pedagogical content knowledge? Contemp Issues Technol Teacher Educ 9(1):60–70 Koehler MJ, Mishra P (2009) What is technological pedagogical content knowledge? Contemp Issues Technol Teacher Educ 9(1):60–70
Zurück zum Zitat Lee VR, Thomas JM (2011) Integrating physical activity data technologies into elementary school classrooms. Educ Tech Res Dev 59(6):865–884CrossRef Lee VR, Thomas JM (2011) Integrating physical activity data technologies into elementary school classrooms. Educ Tech Res Dev 59(6):865–884CrossRef
Zurück zum Zitat Leong F, Austin J (2006) The psychology research handbook: a guide for graduate students and research assistants, 2nd edn. Sage Publications, Thousand Oaks, CA Leong F, Austin J (2006) The psychology research handbook: a guide for graduate students and research assistants, 2nd edn. Sage Publications, Thousand Oaks, CA
Zurück zum Zitat Luppicini R (2005) A systems definition of educational technology in Society. Educ Technol Soc 8(3):103–109 Luppicini R (2005) A systems definition of educational technology in Society. Educ Technol Soc 8(3):103–109
Zurück zum Zitat Marshall JC, Smart J, Horton RM (2010) The design and validation of EQUIP: an instrument to assess inquiry-based instruction. Int J Sci Math Educ 8(2):299–321CrossRef Marshall JC, Smart J, Horton RM (2010) The design and validation of EQUIP: an instrument to assess inquiry-based instruction. Int J Sci Math Educ 8(2):299–321CrossRef
Zurück zum Zitat McComas W (2004) Keys to teaching the nature of science. Sci Teacher 71(9):24–27 McComas W (2004) Keys to teaching the nature of science. Sci Teacher 71(9):24–27
Zurück zum Zitat McCrory R (2008) Science, technology, and teaching: the topic-specific challenges of TPCK in science. In AACTE Committee on Innovation and Technology (ed). Handbook of technological pedagogical content knowledge (TPCK) for educators. Routledge, New York, pp 193–206 McCrory R (2008) Science, technology, and teaching: the topic-specific challenges of TPCK in science. In AACTE Committee on Innovation and Technology (ed). Handbook of technological pedagogical content knowledge (TPCK) for educators. Routledge, New York, pp 193–206
Zurück zum Zitat Mishra P, Koehler MJ (2006) Technological pedagogical content knowledge: a new framework for teacher knowledge. Teachers College Record 108(6):1017–1054CrossRef Mishra P, Koehler MJ (2006) Technological pedagogical content knowledge: a new framework for teacher knowledge. Teachers College Record 108(6):1017–1054CrossRef
Zurück zum Zitat National Council of Teachers of Mathematics (NCTM) (2000) Principles and standards for school mathematics. NCTM, Reston, VA National Council of Teachers of Mathematics (NCTM) (2000) Principles and standards for school mathematics. NCTM, Reston, VA
Zurück zum Zitat National Research Council (2008) Ready, set, science: putting research towork in K-8 science classrooms. National Academy Press, Washington, DC National Research Council (2008) Ready, set, science: putting research towork in K-8 science classrooms. National Academy Press, Washington, DC
Zurück zum Zitat National Research Council (2011) A framework for K-12 science education: practices, crosscutting concepts, and core ideas. Committee on a Conceptual Framework for New K-12 Science Education Standards. Board on Science Education, Division of Behavioral and Social Sciences and Education. The National Academies Press, Washington, DC National Research Council (2011) A framework for K-12 science education: practices, crosscutting concepts, and core ideas. Committee on a Conceptual Framework for New K-12 Science Education Standards. Board on Science Education, Division of Behavioral and Social Sciences and Education. The National Academies Press, Washington, DC
Zurück zum Zitat National Research Council (NRC) (1996) National science education standards. National Academy Press, Washington, DC National Research Council (NRC) (1996) National science education standards. National Academy Press, Washington, DC
Zurück zum Zitat National Research Council (NRC) (2005) America’s lab report: investigations in high school science. National Academy Press, Washington, DC National Research Council (NRC) (2005) America’s lab report: investigations in high school science. National Academy Press, Washington, DC
Zurück zum Zitat National Research Council (NRC) (2007) Taking science to school: learning and teaching science in grades K-8. National Academy Press, Washington, DC National Research Council (NRC) (2007) Taking science to school: learning and teaching science in grades K-8. National Academy Press, Washington, DC
Zurück zum Zitat National Science Teachers Association (NSTA) (1998) NSTA position statement: The National Science Education Standards: a vision for the improvement of science and learning. Sci Scope 65(5):32–34 National Science Teachers Association (NSTA) (1998) NSTA position statement: The National Science Education Standards: a vision for the improvement of science and learning. Sci Scope 65(5):32–34
Zurück zum Zitat Nunnally JC, Bernstein IH (1994) Psychometric theory, 3rd edn. McGraw-Hill, New York Nunnally JC, Bernstein IH (1994) Psychometric theory, 3rd edn. McGraw-Hill, New York
Zurück zum Zitat O’Sullivan CY, Weiss AR (1999) Student work and teacher practices in science. US Department of Education. Office of Educational Research and Improvement. National Center for Education Statistics. NCES 1999–455 O’Sullivan CY, Weiss AR (1999) Student work and teacher practices in science. US Department of Education. Office of Educational Research and Improvement. National Center for Education Statistics. NCES 1999–455
Zurück zum Zitat Park H, Khan S, Petrina S (2009) ICT in science education: a quasi-experimental study of achievement, attitudes toward science, and career aspirations of Korean middle school students. Int J Sci Educ 31(8):993–1012CrossRef Park H, Khan S, Petrina S (2009) ICT in science education: a quasi-experimental study of achievement, attitudes toward science, and career aspirations of Korean middle school students. Int J Sci Educ 31(8):993–1012CrossRef
Zurück zum Zitat Perkins-Gough D (2006/2007) Understanding the scientific enterprise: a conversation with Alan Leshner. Educ Leadersh 64(4):8–15 Perkins-Gough D (2006/2007) Understanding the scientific enterprise: a conversation with Alan Leshner. Educ Leadersh 64(4):8–15
Zurück zum Zitat Piburn M, Sawada D, Turley J, Falconer K, Benford R, Bloom I, Judson E (2000). Reformed teaching observation protocol (RTOP): reference manual (ACEPT technical report no. INOO-3). Arizona Collaborative for Excellence in the Preparation of Teachers, Tempe, AZ (Eric Document Reproduction Service, ED 447 205) Piburn M, Sawada D, Turley J, Falconer K, Benford R, Bloom I, Judson E (2000). Reformed teaching observation protocol (RTOP): reference manual (ACEPT technical report no. INOO-3). Arizona Collaborative for Excellence in the Preparation of Teachers, Tempe, AZ (Eric Document Reproduction Service, ED 447 205)
Zurück zum Zitat Putnam RT, Borko H (2000) What do new views of knowledge and thinking have to say about research on teacher learning? Educ Res 29(1):4–15 Putnam RT, Borko H (2000) What do new views of knowledge and thinking have to say about research on teacher learning? Educ Res 29(1):4–15
Zurück zum Zitat Sawada D, Piburn M, Judson E, Turley J, Falconer K, Benford R, Bloom I (2002) Measuring reform practices in science and mathematics classrooms: the reformed teaching observation protocol. School Sci Math 102(6):245–253CrossRef Sawada D, Piburn M, Judson E, Turley J, Falconer K, Benford R, Bloom I (2002) Measuring reform practices in science and mathematics classrooms: the reformed teaching observation protocol. School Sci Math 102(6):245–253CrossRef
Zurück zum Zitat Schneider RM, Krajick J, Blumenfeld P (2005) Enacting reform-based science materials: the range of teacher enactments in reform classrooms. J Res Sci Teach 42(3):283–312CrossRef Schneider RM, Krajick J, Blumenfeld P (2005) Enacting reform-based science materials: the range of teacher enactments in reform classrooms. J Res Sci Teach 42(3):283–312CrossRef
Zurück zum Zitat Shrout PE, Fleiss JL (1979) Intraclass correlations: uses in assessing rater reliability. Psychol Bull 86:420–428CrossRef Shrout PE, Fleiss JL (1979) Intraclass correlations: uses in assessing rater reliability. Psychol Bull 86:420–428CrossRef
Zurück zum Zitat Shulman LS (1987) Knowledge and teaching: foundations of the new reform. Harv Educ Rev 57:1–22 Shulman LS (1987) Knowledge and teaching: foundations of the new reform. Harv Educ Rev 57:1–22
Zurück zum Zitat Smith CL, Wiser M, Anderson CW, Krajcik J (2006) FOCUS ARTICLE: implications of research on children’s learning for standards and assessment: a proposed learning progression for matter and the atomic-molecular theory. Measurement 4(1/2):1–98 Smith CL, Wiser M, Anderson CW, Krajcik J (2006) FOCUS ARTICLE: implications of research on children’s learning for standards and assessment: a proposed learning progression for matter and the atomic-molecular theory. Measurement 4(1/2):1–98
Zurück zum Zitat Soong B, Mercer N (2011) Improving students’ revision of physics concepts through ICT-based co-construction and prescriptive tutoring. Int J Sci Educ 33(8):1055–1078CrossRef Soong B, Mercer N (2011) Improving students’ revision of physics concepts through ICT-based co-construction and prescriptive tutoring. Int J Sci Educ 33(8):1055–1078CrossRef
Zurück zum Zitat SPSS (2007) Statistical package for the social sciences for windows, Rel. 16.0.1. 2007. SPSS Inc., Chicago SPSS (2007) Statistical package for the social sciences for windows, Rel. 16.0.1. 2007. SPSS Inc., Chicago
Zurück zum Zitat Tabachnick BG, Fidell LS (2001) Using multivariate statistics. Allyn and Bacon, Boston Tabachnick BG, Fidell LS (2001) Using multivariate statistics. Allyn and Bacon, Boston
Zurück zum Zitat Wainwright C, Flick LB, Morrell P (2003) Development of instruments for assessment of instructional practices in standards-based teaching. J Math Sci Collab Explor 6:21–46 Wainwright C, Flick LB, Morrell P (2003) Development of instruments for assessment of instructional practices in standards-based teaching. J Math Sci Collab Explor 6:21–46
Zurück zum Zitat White BY, Frederiksen JR (1998) Inquiry, modeling, and metacognition: making science accessible to all students. Cogn Instr 16(1):3–118CrossRef White BY, Frederiksen JR (1998) Inquiry, modeling, and metacognition: making science accessible to all students. Cogn Instr 16(1):3–118CrossRef
Zurück zum Zitat Windschitl M (2003) Inquiry projects in science teacher education: what can investigative experiences reveal about teacher thinking and eventual classroom practice? Sci Educ 87(1):112–143CrossRef Windschitl M (2003) Inquiry projects in science teacher education: what can investigative experiences reveal about teacher thinking and eventual classroom practice? Sci Educ 87(1):112–143CrossRef
Zurück zum Zitat Windschitl M, Thompson J, Braaten M (2008) Beyond the scientific method: model-based inquiry as a new paradigm of preference for school science investigations. Sci Educ, Published Online. doi:10.1002/sce.20259 Windschitl M, Thompson J, Braaten M (2008) Beyond the scientific method: model-based inquiry as a new paradigm of preference for school science investigations. Sci Educ, Published Online. doi:10.​1002/​sce.​20259
Zurück zum Zitat Wu H (2010) Modelling a complex system: using novice-expert analysis for developing an effective technology-enhanced learning environment. Int J Sci Educ 32(2):195–219CrossRef Wu H (2010) Modelling a complex system: using novice-expert analysis for developing an effective technology-enhanced learning environment. Int J Sci Educ 32(2):195–219CrossRef
Zurück zum Zitat Zhang D, Campbell T (2011) The psychometric evaluation of a three-dimension elementary science attitude survey. J Sci Teacher Educ Elem Sci Educ 22(7):595–612. doi:10.1007/s10972-010-9202-3 Zhang D, Campbell T (2011) The psychometric evaluation of a three-dimension elementary science attitude survey. J Sci Teacher Educ Elem Sci Educ 22(7):595–612. doi:10.​1007/​s10972-010-9202-3
Metadaten
Titel
Technology Use in Science Instruction (TUSI): Aligning the Integration of Technology in Science Instruction in Ways Supportive of Science Education Reform
verfasst von
Todd Campbell
Nor Hashidah Abd-Hamid
Publikationsdatum
01.08.2013
Verlag
Springer Netherlands
Erschienen in
Journal of Science Education and Technology / Ausgabe 4/2013
Print ISSN: 1059-0145
Elektronische ISSN: 1573-1839
DOI
https://doi.org/10.1007/s10956-012-9415-7

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