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The following paper draws upon a formerly published paper of mine (Krátky, 2021) where text perception was analysed from the perspective of the recipient. As its logical continuation and completion, this paper deals with the author’s viewpoint in the process. Various related aspects are identified, observed and studied, such as the ‘author’s strategy’, the evaluation of the recipient, the intended...
The following paper is based on a broad understanding of communication (or the author-text-recipient relation) that considers as text basically anything that has been created within the framework of a cultural interaction by an author and that is perceived by a recipient. The first part of the paper introduces, explains and follows mostly cases in which the author’s violations of the recipient’s expectations...
Recipients always perceive texts in a successive and linear way. Often, the recipient’s perception of the text only lasts until the text has fulfilled the expectations the recipient has of it. Being well aware of this, the authors build texts based on their goals, aims, or preferences that either meaningfully fulfil the expectations of the recipient - according to the authors’ own knowledge, estimation,...
A freely available code, whose sole user input is the triangular mesh covering the surface of the body under consideration and which provides full-wave extraction of polarizability tensors, is presented. The code accepts highly conductive bodies of arbitrary shape and is verified on canonical bodies with known polarizability tensors.
Two Neoproterozoic carbonatite suites of spatially related carbonatites and associated silicate alkaline rocks from Sevattur and Samalpatti, south India, have been investigated in terms of petrography, chemistry and radiogenic–stable isotopic compositions in order to provide further constraints on their genesis. The cumulative evidence indicates that the Sevattur suite is derived from an enriched...
A full-wave numerical scheme of polarisability (polarisability) tensors evaluation is presented. The method accepts highly conducting bodies of arbitrary shape and explicitly accounts for the radiation as well as ohmic losses. The method is verified on canonical bodies with known polarisability tensors, such as a sphere and a cube, as well as on realistic scatterers. The theoretical developments are...
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