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Soederberg Miller, Lisa M.; Gagne, Danielle D. – International Journal of Behavioral Development, 2008
We investigated age differences in reading and rereading processes associated with problem solving and explored the extent to which prior information affects rereading processes. Participants' reading times were recorded as they read short mysteries, twice, at their own pace on a computer, with the goal of providing the solution to the mystery. We…
Descriptors: Problem Solving, Age Differences, Reading Processes, Adults
Wimmers, Paul F.; Splinter, Ted A. W.; Hancock, Gregory R.; Schmidt, Henk G. – Advances in Health Sciences Education, 2007
Background: Before the 1970s, research into the development of clinical competence was mainly focused on general problem-solving abilities. The scope of research changed when Elstein and colleagues discovered that individual ability to solve clinical problems varies considerably across cases. It was concluded that problem solving abilities are…
Descriptors: Problem Solving, Prior Learning, Medical Students, Clinical Experience
Kapur, Manu; Kinzer, Charles K. – International Journal of Computer-Supported Collaborative Learning, 2009
This study was designed as a confirmatory study of work on "productive failure" (Kapur, "Cognition and Instruction," 26(3), 379-424, 2008). N = 177, 11th-grade science students were randomly assigned to solve either well- or ill-structured problems in a computer-supported collaborative learning (CSCL) environment without the provision of any…
Descriptors: Prior Learning, Problem Solving, Grade 11, Hypothesis Testing
Rittle-Johnson, Bethany; Kmicikewycz, Alexander Oleksij – Journal of Experimental Child Psychology, 2008
People remember information better if they generate the information while studying rather than read the information. However, prior research has not investigated whether this generation effect extends to related but unstudied items and has not been conducted in classroom settings. We compared third graders' success on studied and unstudied…
Descriptors: Prior Learning, Grade 3, Multiplication, Arithmetic
Nielsen, Wendy S.; Nashon, Samson; Anderson, David – Journal of Research in Science Teaching, 2009
This article reports on a study that investigated students' metacognitive engagement in both out-of-school and classroom settings, as they participated in an amusement park physics program. Students from two schools that participated in the program worked in groups to collectively solve novel physics problems that engaged their individual…
Descriptors: Prior Learning, Physics, Problem Solving, Metacognition
Miller, Penelope – Current Issues in Middle Level Education, 2011
Today with teacher cutbacks looming, and more integration units, general teachers might be required to teach the visual arts. Therefore, teachers need a clear definition of the discipline of art and personal exposure to aesthetic experiences. Many references are made to classic art education research. When lesson plan formats are generic it…
Descriptors: Middle School Students, Lesson Plans, Art Education, Visual Arts
McNeil, Nicole M. – Child Development, 2008
Do typical arithmetic problems hinder learning of mathematical equivalence? Second and third graders (7-9 years old; N= 80) received lessons on mathematical equivalence either with or without typical arithmetic problems (e.g., 15 + 13 = 28 vs. 28 = 28, respectively). Children then solved math equivalence problems (e.g., 3 + 9 + 5 = 6 + __),…
Descriptors: Children, Grade 2, Grade 3, Grade 5
Ponce, Gregorio A. – Mathematics Teaching in the Middle School, 2008
Using sticky notes and number lines, a hands-on activity is shared that anchors initial student thinking about absolute value. The initial point of reference should help students successfully evaluate numeric problems involving absolute value. They should also be able to solve absolute value equations and inequalities that are typically found in…
Descriptors: Mathematics Instruction, Prior Learning, Secondary School Mathematics, Teaching Methods
Grobe, Cornelia S.; Renkl, Alexander – Learning and Instruction, 2007
Learning from worked examples is an effective learning method in well-structured domains. Can its effectiveness be further enhanced when errors are included? This was tested by determining whether a combination of correct and incorrect solutions in worked examples enhances learning outcomes in comparison to correct solutions only, and whether a…
Descriptors: Prior Learning, Problem Solving, Interaction, Probability
Chinnappan, Mohan; Pandian, Ambigapathy – Educational Research for Policy and Practice, 2009
Two developments have contributed to the convergence of views about the benefits of real-life and inquiry-based pedagogies in mathematics learning. First, the mathematics teaching community is increasingly focused on the learning of mathematics that involves the transfer of prior knowledge to novel problem-solving situations, a key element in…
Descriptors: Research Needs, Mathematics Education, Numeracy, Problem Based Learning
Kershaw, Trina C.; Ohlsson, Stellan – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2004
Theories of insight problems are often tested by formulating hypotheses about the particular difficulties of individual insight problems. Such evaluations often implicitly assume that there is a single difficulty. We argue that the quantitatively small effects of many studies arise because the difficulty of many insight problems is determined by…
Descriptors: Prior Learning, Problem Solving, Undergraduate Students
Tunteler, Erika; Resing, Wilma C. M. – British Journal of Educational Psychology, 2007
Background: Various studies on analogical problem solving have shown that children can be taught to use analogies within a single session, but it is not known whether they can be taught a strategy for using analogical problem solving that persists over a period of time. Aim: Our study focused on the effects of prior assistance in analogy use on…
Descriptors: Comparative Analysis, Grade 1, Teaching Methods, Educational Environment
Holden, Becky – Teaching Children Mathematics, 2007
Seeking more effective mathematics instruction, this author decided to incorporate Cognitively Guided Instruction (CGI) into first-grade classroom lessons. Students in CGI mathematics classrooms are prompted to use their prior knowledge to solve new problems, establish cognitive structures to which new learning can be connected, and be driven by…
Descriptors: Mathematics Instruction, Thinking Skills, Problem Solving, Teaching Methods
Nashon, Samson Madera; Anderson, David; Nielsen, Wendy S. – Asia-Pacific Forum on Science Learning and Teaching, 2009
The teaching of science, especially at pre-college and teacher education levels has undergone tremendous transformation over the years: from teacher-centred transmission to student-centred approaches rooted in constructivism. Whereas constructivism has been charged with all manner of shortfalls, it still can be of benefit to the way physics…
Descriptors: Preservice Teacher Education, Constructivism (Learning), Mathematics Education, Prior Learning
Elstein, Arthur S. – Advances in Health Sciences Education, 2009
This paper has five objectives: (a) to review the scientific background of, and major findings reported in, Medical Problem Solving, now widely recognized as a classic in the field; (b) to compare these results with some of the findings in a recent best-selling collection of case studies; (c) to summarize criticisms of the hypothesis-testing model…
Descriptors: Prior Learning, Decision Support Systems, Clinical Experience, Problem Solving

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