122 resultados para International Federation for Heat Treatment


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Purpose The purpose of this paper is to examine how Aristotle’s ethics can be applied to the ethics of professional accountants, in relation to the approach adopted by the International Federation of Accountants (IFAC), and to consider the reasons that justify the Aristotelian approach. Design/methodology/approach The paper outlines IFAC’s approach and identifies several weaknesses. Three themes of Aristotle’s Nicomachean Ethics are applied to the work of professional accountants. Reasons why this perspective is more suitable for professional accountants are then articulated. Findings Several aspects of Aristotle’s ethics can be fruitfully applied to the ethics of professional accountants. These include the relationship between function, goals and the good, an awareness of the human goal to achieve eudaimonia, the development of both excellences of character and of intelligence, and the significance of non-rational aspects of morality, including emotions, will, responsibility and choice. Research limitations/implications This perspective provides an alternative conceptualisation of the ethics of professional accountants. Although it does not provide concrete guidance regarding what the ethical approach to specific situations may be, it presents a useful counterpoint to existing approaches that are largely deontological and utilitarian. Practical implications This paper provides accountants in practice with a more comprehensive and adequate perspective on what it means for a professional accountant to be ethical, and raises several issues related to how ethics is included in the education and training of accountants. Originality/value Investigating the philosophical basis for professional ethics approaches professional codes of ethics in a way that it is not typically considered. The paper also provides a more comprehensive application of Aristotelian ethics than previous work.

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This paper describes the 3D Water Chemistry Atlas - an open source, Web-based system that enables the three-dimensional (3D) sub-surface visualization of ground water monitoring data, overlaid on the local geological model. Following a review of existing technologies, the system adopts Cesium (an open source Web-based 3D mapping and visualization interface) together with a PostGreSQL/PostGIS database, for the technical architecture. In addition a range of the search, filtering, browse and analysis tools were developed that enable users to interactively explore the groundwater monitoring data and interpret it spatially and temporally relative to the local geological formations and aquifers via the Cesium interface. The result is an integrated 3D visualization system that enables environmental managers and regulators to assess groundwater conditions, identify inconsistencies in the data, manage impacts and risks and make more informed decisions about activities such as coal seam gas extraction, waste water extraction and re-use.