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Devetak, Iztok; Vogrinc, Janez; Glazar, Sasa Aleksij – Research in Science Education, 2009
Submicrorepresentations (SMR) could be an important element, not only for explaining the experimental observations to students, but also in the process of evaluating students' knowledge and identifying their chemical misconceptions. This study investigated the level of students' understanding of the solution concentration and the process of…
Descriptors: Science Achievement, Chemistry, Misconceptions, Secondary School Students
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Badcock, Paul B. T.; Pattison, Philippa E.; Harris, Kerri-Lee – Higher Education: The International Journal of Higher Education and Educational Planning, 2010
This study examined relationships between important aspects of a university education and the assessment and development of generic skills. A sample of 323 students enrolled in single or double arts, engineering and/or science degrees from a research-intensive university in Australia were administered the Graduate Skills Assessment to measure four…
Descriptors: Grade Point Average, Problem Solving, Engineering Education, Science Education
Herzog, Kelly J. – Techniques: Connecting Education and Careers (J1), 2010
Research reflects that graduates are leaving high school deficient in math, science and problem solving skills necessary for the demands of the workforce. In order to maintain a competitive position in high tech industries and attract new business, it is important to have a system where all students develop a confidence in learning math, science…
Descriptors: High Schools, Problem Solving, Teaching Methods, Science Education
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Carrier, Sarah J.; Thomas, Annie – Science and Children, 2010
"Watch out, the stove will burn you," "Ooh, ice cream headache!" Students construct their conceptions about heat and temperature through their own intuitions about daily life experiences. As a result, misconceptions can be born from these constructed concepts. The activity described here addresses student misconceptions about thermal insulation…
Descriptors: Structural Elements (Construction), Misconceptions, Scientific Concepts, Problem Solving
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Li, Qing – Educational Research, 2010
Background: The emergence of a participatory culture, brought about mainly by the use of Web2.0 technology, is challenging us to reconsider aspects of teaching and learning. Adapting the learning-as-digital-game-building approach, this paper explores how new educational practices can help students build skills for the 21st century. Purpose: This…
Descriptors: Instructional Design, Student Attitudes, Educational Practices, Motion
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Can, Bilge Taskin; Gunhan, Berna Canturk; Erdal, Sevinc Ongel – EURASIA Journal of Mathematics, Science & Technology Education, 2012
In this study, an instrument, Using Mathematics in Science Self-efficacy Scale (UMSSS), was developed in order to determine preservice science teachers' self-efficacy toward the use of mathematics in their lessons. Data gathered from 250 preservice science teachers were used for Exploratory Factor Analysis (EFA) and Confirmatory Factor Analysis…
Descriptors: Factor Analysis, Self Efficacy, Science Teachers, Measurement
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Larose, Simon; Cyrenne, Diane; Garceau, Odette; Brodeur, Pascale; Tarabulsy, George M. – New Directions for Youth Development, 2010
This chapter reports findings from the evaluation of an academic mentoring program for late adolescents that highlight the role of exposition to structured activities and mentors' use of some behavioral strategies. Specifically, different types of interactions in mentoring (such as discussing personal projects, resolving academic problems, and…
Descriptors: Mentors, Late Adolescents, Learning Activities, Interpersonal Relationship
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Moyer, Richard; Everett, Susan – Science Scope, 2009
Meat thermometers can be awkward to use in terms of placement and avoidance of bones. Because of these problems, each year 30 million Thanksgiving turkeys have a built-in thermometer that pops up when the turkey is properly cooked. Turkey timers are an example of how engineering solved a common, everyday problem. The following 5E learning cycle…
Descriptors: Science Education, Learning Processes, Engineering, Foreign Countries
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Barak, Moshe; Zadok, Yair – International Journal of Technology and Design Education, 2009
This paper presents a study about learning and the problem solving process identified among junior high school pupils participating in robotics projects in the Lego Mindstorm environment. The research was guided by the following questions: (1) How do pupils come up with inventive solutions to problems in the context of robotics activities? (2)…
Descriptors: Problem Solving, Robotics, Teaching Methods, Technology Education
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Cooper, Melanie M.; Sandi-Urena, Santiago – Journal of Chemical Education, 2009
The influence of metacognition on learning and problem solving has been demonstrated, and it is becoming increasingly clear that promoting metacognitive activity can produce substantial improvements in problem solving and learning in chemistry. This article reports the development and validation of an instrument designed to evaluate students'…
Descriptors: Chemistry, Problem Solving, Metacognition, Measures (Individuals)
Ochsner, Karl – ProQuest LLC, 2010
Students are moving away from content consumption to content production. Short movies are uploaded onto video social networking sites and shared around the world. Unfortunately they usually contain little to no educational value, lack a narrative and are rarely created in the science classroom. According to new Arizona Technology standards and…
Descriptors: Scripts, Photography, Action Research, State Standards
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Oviatt, Sharon L.; Cohen, Adrienne O. – Journal of Science Education and Technology, 2010
From a theoretical viewpoint, educational interfaces that facilitate communicative actions involving representations central to a domain can maximize students' effort associated with constructing new schemas. In addition, interfaces that minimize working memory demands due to the interface per se, for example by mimicking existing non-digital work…
Descriptors: Problem Solving, Short Term Memory, Science Education, Computer Interfaces
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Pazos, Pilar; Micari, Marina; Light, Gregory – Assessment & Evaluation in Higher Education, 2010
Collaborative learning is being used extensively by educators at all levels. Peer-led team learning in a version of collaborative learning that has shown consistent success in science, technology, engineering and mathematics disciplines. Using a multi-phase research study we describe the development of an observation instrument that can be used to…
Descriptors: Cooperative Learning, Peer Teaching, Classification, Group Dynamics
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Mjelde, James W.; Litzenberg, Kerry K.; Lindner, James R. – Journal of Natural Resources and Life Sciences Education, 2011
This study investigated the comprehension and effectiveness of teaching formal, probabilistic decision-making skills to middle school students. Two specific objectives were to determine (1) if middle school students can comprehend a probabilistic decision-making approach, and (2) if exposure to the modeling approaches improves middle school…
Descriptors: Middle School Students, Scores, Decision Making, Cognitive Development
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Dejonckheere, Peter J. N.; Van De Keere, Kristof; Mestdagh, Nele – Journal of Educational Research, 2009
Using two experiments, the authors examined the extent to which the scientific thinking circle can be used as heuristics to support scientific thinking in a classroom of children between the ages of 3 and 9 years old. To do this, the authors asked the children to build a bridge, raft, or electrical circuit using the material available to them.…
Descriptors: Cognitive Development, Thinking Skills, Preschool Children, Primary Education
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