151 resultados para Martingale representation theorem


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While there has been considerable research on children's understanding of evaporation, the representational issues entailed in this understanding have not been investigated in depth. This study explored students' engagement with evaporation phenomena through various representational modes. Primary school classroom sequences and structured interviews shortly after, and a year later, indicated significant advances in learning flowing from negotiation of meaning around particle representations. A case study of one child's learning is used to demonstrate how a molecular distribution representation can offer the possibility of significant advances in children's thinking about evaporation. The findings suggest that teacher-mediated negotiation of representational issues can support enriched student learning

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This paper presents the concept and a test implementation of a digital representation of the physical world designed to assess comfort quality in
future environments. An integrated set of physical phenomena is modeled three-dimensionally to investigate the dynamic behavior of design objects
holistically.

The formulation supports the integration of computational simulation in the performance-based design process. It employs the principles of
geometrical and physical selfcontainedness to avoid that complex geometrical and physical circumstances have to be specified at design time. The concepts of congeneric cells and congeneric conjunctions are
introduced to simulate various physical phenomena simultaneously with a uniformly structured set of equations.

The concept, the prototype implementation and selected test cases are presented. Although it was not possible to implement all features and model parts completely, the research and the discussion of its achievements make valuable contributions towards more effective integration of computational simulation in the performance-based design process.

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This paper examines the implications for teacher educators of the dominant beliefs currently circulating within diverse Australian high schools about the (lack of) relationship between girls’ interests, girls’ careers, girls’ futures and the broad field of information technology. It identifies students' attitudes towards the content, relevance and general appeal of IT subjects to highlight the challenges for both teachers and teacher educators who may be seeking to address the issues associated with girls’ under representation in IT courses and also contribute to an ongoing project of gender based educational reform. Emphasis throughout the paper is on the persistence of discourses that continue to position girls and IT in opposition to each other and on the challenges of subverting these discourses through the introduction of new figurations (cf Rosi Braidotti, 1994) or transformative understandings of what it now means to be a female student, a female teacher, or a female IT user. The paper concludes by reflecting on the implications of these themes for teachers and teacher educators: particularly those with an on-going commitment to the broad field of educational justice.

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This thesis describes the exploration and the development of computational means to investigate the behaviour of design objects before they are available for investigation in the physical world. The motivation is to inform the design process about the design object's performance in order to achieve better--more performance-oriented--design outcomes in the sense of energy efficiency and comfort performance than can be achieved by conventional design techniques.

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The right to vote permits the voices of the electorate to be heard in democracies. However, voting is often insufficient for minorities to obtain representation by their preferred candidates. For traditional political ‘minorities’ including women, self-representation is essential to political equality and social equity. Despite holding roughly 50% of the electoral vote in Australia for 100 years, women comprise only 22% of the Commonwealth Members and 29% of Senators. This paper proposes a new vote counting system, STV with Borda elimination or STV-B. STV-B retains proportional representation but much greater voter control over selection of candidates. STV-B would provide women with a mechanism that yields proportional representation for women without undermining party representation.

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The principal objective of this paper is to investigate how the arts are represented in the Australian print media. The research is conducted by means of textual analysis focusing on a number of case studies where arts stories appeared in the news pages of an Australian daily broadsheet newspaper. This paper argues that in these case studies the arts are represented in terms of a limited range of rhetorical frameworks. These frameworks help constitute public knowledge about the arts and their marginalised status in Australia. This paper offers a critique of current arts policy which fails to recognise the role of the media in reinforcing the marginalisation of the arts.

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This study draws on recent research on the central role of representation in learning. While there has been considerable research on Children’s understanding of evaporation, the representational issues entailed in this understanding have not been investigated in depth. The study explored students’ engagement with science concepts relating to evaporation through various representational modes such as diagrams, verbal accounts, gestures, and captioned drawings. This engagement entails students a) clarifying their thinking through exploring representational resources, b) developing understanding of what these representations signify and c) learning how to construct and interpret the representational aspects of scientific explanation. The study indicates how a focus on representation can provide fresh insights into the conceptual task involved in learning science. Primary school classroom sequences and structured interviews with 12 children indicated a range of learning potentialities flowing from this focus. The findings suggest that teacher-mediated negotiation of representational issues as students construct different modal accounts can support enriched learning by enabling both a) richer conceptual understanding by students and b) enhanced teacher insights into students’ thinking.

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A multiresolution technique based on multiwavelets scale-space representation for stereo correspondence estimation is presented. The technique uses the well-known coarse-to-fine strategy, involving the calculation of stereo correspondences at the coarsest resolution level with consequent refinement up to the finest level. Vector coefficients of the multiwavelets transform modulus are used as corresponding features, where modulus maxima defines the shift invariant high-level features (multiscale edges) with phase pointing to the normal of the feature surface. The technique addresses the estimation of optimal corresponding points and the corresponding 2D disparity maps. Illuminative variation that can exist between the perspective views of the same scene is controlled using scale normalization at each decomposition level by dividing the details space coefficients with approximation space. The problems of ambiguity, explicitly, and occlusion, implicitly, are addressed by using a geometric topological refinement procedure. Geometric refinement is based on a symbolic tagging procedure introduced to keep only the most consistent matches in consideration. Symbolic tagging is performed based on probability of occurrence and multiple thresholds. The whole procedure is constrained by the uniqueness and continuity of the corresponding stereo features. The comparative performance of the proposed algorithm with eight famous existing algorithms, presented in the literature, is shown to validate the claims of promising performance of the proposed algorithm.

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17 volunteer non-major chemistry students taking an introductory university chemistry course were interviewed about their understanding of a variety of chemical diagrams. All the students' interviewed appreciated that diagrams of laboratory equipment were useful to show how to set up laboratory equipment. However students' ability to explain specific diagrams at either the macroscopic or sub-microscopic level varied greatly. The results highlighted the poor level of understanding that some students had even after completing both exercises and experiments using the diagrams. The connection between the diagrams of the macroscopic level (equipment, chemicals), the sub- microscopic level (molecular) and the symbolic level (equations) was not always considered explicitly by students. The results indicate a need for chemical diagrams to be used carefully and more explicitly to ensure learner understanding. Correspondingly, students need to interpret visual chemical diagrams using meta-visualisation skills linking the various levels of representation, and appreciating the role of the diagrams in explanations need to be developed.