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Hits 101 – 120 of 1.431

101
Assessing IBME with Summative and Formative Purpose
In: 13th International Congress on Mathematical Education (2016) (2016)
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102
Identifying Problem Statements in Scientific Text
Heffernan, Kevin; Teufel, Simone. - : University of Potsdam, 2016. : http://www.ling.uni-potsdam.de/comma2016/, 2016. : Workshop on Foundations of the Language of Argumentation (in conjunction with COMMA), 2016
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103
The Teacher’s Role in Problem-solving: A Study of Elementary Mathematics Programs from Teachers’ Perspectives
Yuan, Sophia. - 2016
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104
Goal-based reasoning for argumentation
Walton, Douglas N.. - New York : Cambridge University Press, 2015
BLLDB
UB Frankfurt Linguistik
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105
From formal concepts to analogical complexes
In: The 12th International Conference on Concept Lattices and their Applications ; CLA 2015 ; https://hal.inria.fr/hal-01198943 ; CLA 2015, LIMOS, CNRS et Université Blaise Pascal, Oct 2015, Clermont-Ferrand, France. pp.12 ; http://cla2015.isima.fr/ (2015)
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106
Usage-based Grammar Learning as Insight Problem Solving
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107
Twist your logic with TouIST
In: Proceedings of the 4th International Conference on Tools for Teaching Logic ; 4th International Congress on Tools for Teaching Logic (TTL 2015) ; https://hal.archives-ouvertes.fr/hal-01671317 ; 4th International Congress on Tools for Teaching Logic (TTL 2015), IRISA: Institut de Recherche en Informatique et Systèmes Aléatoires; INRIA, Jun 2015, Rennes, France. pp.1-8 ; http://ttl2015.irisa.fr/ (2015)
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108
Characterizing Behavioral and Brain Changes Associated with Practicing Reasoning Skills.
In: PloS one, vol 10, iss 9 (2015)
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109
Working Memory Components as Predictors of Word Problem Solving: Does Rapid Automatized Naming Speed Mediate the Relationship?
Fung, Wenson Wen-Yuan. - : eScholarship, University of California, 2015
In: Fung, Wenson Wen-Yuan. (2015). Working Memory Components as Predictors of Word Problem Solving: Does Rapid Automatized Naming Speed Mediate the Relationship?. UC Riverside: Education. Retrieved from: http://www.escholarship.org/uc/item/32g2068d (2015)
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110
Conceptual structure and the procedural affordances of rational numbers: relational reasoning with fractions and decimals.
In: Journal of experimental psychology. General, vol 144, iss 1 (2015)
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111
Modeling discrete and continuous entities with fractions and decimals.
In: Journal of experimental psychology. Applied, vol 21, iss 1 (2015)
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112
Multilingual interfaces for parallel coupling in multiphysics and multiscale systems
In: Proceedings of ICCSA 2007 ; http://csdl2.computer.org/persagen/DLAbsToc.jsp?resourcePath=/dl/proceedings/&toc=comp/proceedings/iccsa/2007/2945/00/2945toc.xml (2015)
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113
A multilingual programming model for coupled systems
In: International Journal for Multiscale Computational Engineering (2015)
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114
Extracting significant phrases from text
In: Proceedings of AINAW 07 (2015)
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115
A multilingual programming model for coupled systems
In: International Journal for Multiscale Computational Engineering (2015)
Abstract: Multiphysics and multiscale simulation systems share a common software requirement-infrastructure to implement data exchanges between their constituent parts-often called the coupling problem. On distributed-memory parallel platforms, the coupling problem is complicated by the need to describe, transfer, and transform distributed data, known as the parallel coupling problem. Parallel coupling is emerging as a new grand challenge in computational science as scientists attempt to build multiscale and multiphysics systems on parallel platforms. An additional coupling problem in these systems is language interoperability between their constituent codes. We have created a multilingual parallel coupling programming model based on a successful open-source parallel coupling library, the Model Coupling Toolkit (MCT). This programming model's capabilities reach beyond MCT's native Fortran implementation to include bindings for the C and Python programming languages. We describe the method used to generate the interlanguage bindings. This approach enables an object-based programming model for implementing parallel couplings in non-Fortran coupled systems and in systems with language heterogeneity. We describe the C and Python versions of the MCT programming model and provide short examples. We report preliminary performance results for the MCT interpolation benchmark. We describe a major Python application that uses the MCT Python bindings, a Python implementation of the control and coupling infrastructure for the community climate system model. We conclude with a discussion of the significance of this work to productivity computing in multidisciplinary computational science.
Keyword: Computer software; Coupled systems; Data transfer; Interoperability; Keywords: Computational methods; Multilingual programming model; Multiphysics systems; Natural language processing systems; Problem solving
URL: http://hdl.handle.net/1885/81969
https://doi.org/10.1615/IntJMultCompEng.v6.i1.40
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116
Multilingual interfaces for parallel coupling in multiphysics and multiscale systems
In: Proceedings of ICCSA 2007 ; http://csdl2.computer.org/persagen/DLAbsToc.jsp?resourcePath=/dl/proceedings/&toc=comp/proceedings/iccsa/2007/2945/00/2945toc.xml (2015)
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117
Universal intelligence: A definition of machine intelligence
In: Minds and Machines: journal for artificial intelligence, philosophy and cognitive sciences (2015)
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118
Universal intelligence: A definition of machine intelligence
In: Minds and Machines: journal for artificial intelligence, philosophy and cognitive sciences (2015)
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119
Extracting significant phrases from text
In: Proceedings of AINAW 07 (2015)
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120
The process secondary administrators use to implement twenty‐first century learning skills in secondary schools ...
Pearson, Synee D.. - : University of Southern California Digital Library (USC.DL), 2015
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