An Assessment Instrument of Technological Literacies in Makerspaces and FabLabs
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Bandura, 2006, Self-efficacy beliefs of adolescents, 307
Barron, 2006, Interest and self-sustained learning as catalysts of development: A learning ecology perspective, Human Development, 49, 193, 10.1159/000094368
Blikstein, 2013, FabLabs: Of machines, makers and inventors, 203, 10.14361/transcript.9783839423820.203
Borsboom, 2004, The concept of validity, Psychological Review, 111, 1061, 10.1037/0033-295X.111.4.1061
Chu, 2011, Using collaborative teaching and inquiry project-based learning to help primary school students develop information literacy and information skills, Library & Information Science Research, 33, 132, 10.1016/j.lisr.2010.07.017
Collins, 1991, Cognitive apprenticeship: Making thinking visible, American Educator, 15, 6
Conde, 2011, Informational literacy and information and communication technologies use by secondary education students in Spain: A descriptive study, Contemporary Issues in Education Research (CIER), 4, 1, 10.19030/cier.v4i4.4162
Crooks, 1996, Threats to the valid use of assessment, Assessment in Education, 3, 265, 10.1080/0969594960030302
Denner, 2011, Measuring computational thinking in middle school using game programming
Denner, 2012, Computer games created by middle school girls: Can they be used to measure understanding of computer science concepts?, Computers and Education, 58, 240, 10.1016/j.compedu.2011.08.006
DeVellis, 2016, Scale development: Theory and applications, 4
Dewey, 1916, Democracy and education
Fields, 2009, What do students gain from a week at science camp? Youth perceptions and the design of an immersive research-orieted astronomy camp, International Journal of Science Education, 31, 151, 10.1080/09500690701648291
Gee, 2004, Situated language and learning: A critique of traditional schooling
Gençtürk, 2010, Reliability and validity study of the technology proficiency self-assessment scale, Procedia - Social and Behavioral Sciences, 2, 2863, 10.1016/j.sbspro.2010.03.429
Gershenfeld, 2008, Fab: The coming revolution on your desktop - From personal computers to personal fabrication
Green, 2014, Measuring critical components of digital literacy and their relationships with learning, Computers and Education, 76, 55, 10.1016/j.compedu.2014.03.008
Griffin, 1992, The weighing of evidence and the determinants of confidence, Cognitive Psychology, 24, 411, 10.1016/0010-0285(92)90013-R
Hargittai, 2005, Survey measures of web-oriented digital literacy, Social Science Computer Review, 23, 371, 10.1177/0894439305275911
Huggins, 2014, Measuring information and communication technology literacy using a performance assessment: Validation of the student tool for technology literacy (ST2L), Computers and Education, 77, 1, 10.1016/j.compedu.2014.04.005
International Society for Technology in Education 2007 National Education Technology Standards for Students www.iste.org/Content/NavigationMenu/NETS/ForStudents/NETS_for_Students.htm
International Technology Education Association. 1996 Technology for all Americans: A rationale and structure for the study of technology http://www.iteawww.org
Kafai, 2006, The Cambridge handbook of the learning sciences, 35
Kafai, 2011, Youth, technology, and DIY developing participatory competencies in creative media production, Review of Research in Education, 35, 89, 10.3102/0091732X10383211
Koller, 2011, Sharpening Wald-type inference in robust regression for small samples, Computational Statistics and Data Analysis, 55, 2504, 10.1016/j.csda.2011.02.014
Koriat, 1980, Reasons for confidence, Journal of Experimental Psychology: Human Learning and Memory, 6, 107
Lebeaume , J. Perez , W. G. 2012 How do the interactive white board and the radio frequency identification and tracking system work? Exploration of pupils' spontaneous knowledge and didactical proposals for technology education PATT 26 Conference; Technology Education in the 21st Century, 293 300
Lei, 2014, Digital technologies and assessment in the twenty-first-century schooling, Contemporary Trends and Issues in Science Education, 41, 185, 10.1007/978-94-007-2748-9_13
Lewis, 1998, Problem posing - Adding a creative increment to technological problem solving, Journal of Industrial Teacher Education, 36, 5
Lichtenstein, 1977, Do those who know more also know more about how much they know? The calibration of probability judgments, Organizational Behavior and Human Performance, 20, 159, 10.1016/0030-5073(77)90001-0
Litt, 2013, Measuring users' internet skills: A review of past assessments and a look toward the future, New Media & Society, 15, 612, 10.1177/1461444813475424
Livingstone, 2008, Handbook of research on new literacies, 103
Martinez, 2013, Invent to learn: Making, tinkering and engineering in the classroom
Mikhak , B. Leon , C. Gonton , T. Gershenfeld , N. McEnnis , C. Taylor , J. 2002 Fab Lab: An alternative model of ICT for development ThinkCycle: Development by design (dyd02)
National Academy of Engineering and National Research Council, 2006, Tech Tally: Approaches to assessing technological literacy
National Assessment of Educational Progress 2014 Technology and engineering literacy framework for the 2014 National Assessment of Educational Progress https://www.nagb.org/publications/frameworks/technology/2014-technology-framework.html
Next Generation Science Standards Lead States 2013 Next Generation Science Standards: For States, By States http://www.nextgenscience.org/
Papert, 1980, Mindstorms: Children, computers, and powerful ideas
Papert, 1991, Constructionism, 1
Pearson, 2007, Assessment of technological literacy in the United States, Design and Technology: An International Journal, 12, 87
Peppler, 2013, Stitching circuits: Learning about circuitry through e-textile materials, Journal of Science Education and Technology, 22, 751, 10.1007/s10956-012-9428-2
Petrich, 2013, Design, make, play: Growing the next generation of STEM innovators, 50
Piaget, 1929, The child's conception of the world
Piaget, 1974, To understand is to invent
Remold , J. Verdugo , R. Michalchik , V. 2013 California tinkering afterschool network: Pilot year evaluation report http://www.sri.com/sites/default/files/publications/ca-tinkering-afterschool-network-evaluation-report-final_web_1.pdf
Ro, 2015, Validity of the contextual competence scale for engineering students, Journal of Engineering Education, 104, 35, 10.1002/jee.20062
Smith, 2013, Assessment of student learning associated with tree thinking in an undergraduate introductory organismal biology course, CBE Life Sciences Education, 12, 542, 10.1187/cbe.11-08-0066
Velayutham, 2011, Development and validation of an instrument to measure students' motivation and self-regulation in science learning, International Journal of Science Education, 33, 2159, 10.1080/09500693.2010.541529
Vygotsky, 1978, Mind in society
Werner, 2006, IT fluency from a project-based program for middle school students, Journal of Computer Science Education Online, 2, 205
Worsley, 2014, Analyzing engineering design through the lens of learning analytics, Journal of Learning Analytics, 1, 151, 10.18608/jla.2014.12.8
Yoon Yoon, 2014, Validation of the Teaching Engineering Self-Efficacy Scale for K-12 teachers: A structural equation modeling approach, Journal of Engineering Education, 103, 463, 10.1002/jee.20049
Zimmerman, 1998, Academic studying and the development of personal skill: A self-regulatory perspective, Educational Psychologist, 33, 73, 10.1080/00461520.1998.9653292