Auswahl der wissenschaftlichen Literatur zum Thema „University investments South Australia“

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Zeitschriftenartikel zum Thema "University investments South Australia":

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Cox, James W., Michele Akeroyd und Danielle P. Oliver. „Integrated water resource assessment for the Adelaide region, South Australia“. Proceedings of the International Association of Hydrological Sciences 374 (17.10.2016): 69–73. http://dx.doi.org/10.5194/piahs-374-69-2016.

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Abstract. South Australia is the driest state in the driest inhabited country in the world, Australia. Consequently, water is one of South Australia's highest priorities. Focus on water research and sources of water in the state became more critical during the Millenium drought that occurred between 1997 and 2011. In response to increased concern about water sources the South Australian government established The Goyder Institute for Water Research – a partnership between the South Australian State Government, the Commonwealth Scientific and Industrial Research Organisation (CSIRO), Flinders University, University of Adelaide and University of South Australia. The Goyder Institute undertakes cutting-edge science to inform the development of innovative integrated water management strategies to ensure South Australia's ongoing water security and enhance the South Australian Government's capacity to develop and deliver science-based policy solutions in water management. This paper focuses on the integrated water resource assessment of the northern Adelaide region, including the key research investments in water and climate, and how this information is being utilised by decision makers in the region.
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Ward, Tim M., David C. Smith, Rod Lukatelich, Rob Lewis, Gavin A. Begg und Rochelle Smith. „INTEGRATED APPROACH TO ECOLOGICAL AND SOCIO-ECONOMIC RESEARCH TO SUPPORT THE OIL AND GAS INDUSTRY: THE GREAT AUSTRALIAN BIGHT COLLABORATIVE RESEARCH SCIENCE PROGRAM“. International Oil Spill Conference Proceedings 2014, Nr. 1 (01.05.2014): 2193–205. http://dx.doi.org/10.7901/2169-3358-2014.1.2193.

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ABSTRACT BP is investing $A1.43B and drilling four exploratory wells in the hope of discovering a new deep-water oil and gas province in the Great Australia Bight (GAB). The GAB is one of Australia's most valuable marine ecosystems. It supports globally significant populations of seabirds and marine mammals, diverse and endemic benthic assemblages and important fishing, aquaculture and ecotourism industries. Two research agencies (CSIRO, South Australian Research and Development Institute) and two universities (University of Adelaide, Flinders University of South Australia) recently entered into a collaborative research partnership with BP Australia to undertake an integrated study of the ecological processes and socio-economic importance of the GAB. Uniquely, this four year $20M research program is being undertaken during the exploration phase and conducted as a single integrated program. The Research Program is comprised of seven themes: physical oceanography; pelagic ecosystem and environmental drivers; benthic biodiversity; ecology of iconic and apex predators; petroleum geology and geochemistry; socio-economic values; and data integration and ecosystem modelling. Sixteen inter-related projects are being undertaken by some of Australia's leading marine scientists and will involve at least seven post-graduate Ph.D. students. Scientific quality assurance is provided by a review process that involves an Independent Science Panel and BP's international Subject Matter Experts. Ecological data collected during the study will be publically available. Findings will be presented to stakeholders and regulators and published in technical reports and scientific papers throughout the course of the program. The program is one of the few whole of system studies ever undertaken in Australia and is the first large-scale, integrated study of the ecosystems, resources and socio-economic values of the GAB. The approach has several advantages over undertaking discrete projects on key issues near the start of the production phase.1)BP Australia's financial contribution has leveraged significant investment from the other partners.2)Establishing baseline environmental conditions during the exploration phase provides the opportunity to conduct temporally replicated analyses of the ecosystem prior to commencement of production, should it occur.3)Engaging with the local scientific community builds on the existing knowledge base and working relationships with stakeholders and will assist the development of relevant local scientific capability.4)An integrated program provides for efficient development and validation of whole of system (i.e. ecological and socio-economic) models that elucidate interconnections among components of the system and can inform decisions regarding future development and predict, monitor and assess potential future impacts.
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Lamb, D. W. „The use of qualitative airborne multispectral imaging for managing agricultural crops - a case study in south-eastern Australia“. Australian Journal of Experimental Agriculture 40, Nr. 5 (2000): 725. http://dx.doi.org/10.1071/ea99086.

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Charles Sturt University has operated an airborne multispectral imaging system as a research support and management tool over south-eastern Australian crops since 1994. Our experiences have demonstrated the utility, timeliness and cost-effectiveness of qualitative multispectral imagery for monitoring and managing spatial variability in a range of agricultural crops, yet to date the technology remains underutilised in Australia. Images showing variations in the texture of soils in paddocks are a useful indicator of the location of different soil zones for soil sampling, and can assist in siting of treatment plots within paddocks. Multispectral imagery can be used for a synoptic assessment of early weed pressure in fallow paddocks or seedling crops. Locating variability in crop emergence and, later, canopy vigour and biomass, are all potentially means of undertaking precision farming without the capital investment associated with yield mapping. However, like any remote monitoring tool, follow-up ground-truthing must always be used to establish or confirm the causes of observed variability. The use of the technology as part of a greater data acquisition strategy is recommended.
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Carpenter, Chris. „Natural Gas Has Role in Decarbonizing the Australian Electricity Supply“. Journal of Petroleum Technology 73, Nr. 07 (01.07.2021): 69–70. http://dx.doi.org/10.2118/0721-0069-jpt.

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This article, written by JPT Technology Editor Chris Carpenter, contains highlights of paper SPE 202210, “Future Roles for Natural Gas in Decarbonizing the Australian Electricity Supply Within the NEM: Total System Costs Are Key,” by Stephanie Byrom, University of Queensland; Geoffrey Bongers, Gamma Energy Technology; and Andy Boston, Red Vector, et al., prepared for the 2020 SPE Asia Pacific Oil and Gas Conference and Exhibition, originally scheduled to be held in Perth, Australia, 20–22 October. The paper has not been peer reviewed. Electricity systems around the world are changing, with the Paris Agreement of 2015 a catalyst for much current change. The Australian government ratified the agreement by committing to 26–28% emissions reductions below 2005 levels by 2030. Reduction in emissions from electricity generation has become the focus of these targets. To decarbonize the grid to meet targets while building firm, dispatchable generation capacity to support the system, a new metric is required to measure success. The complete paper explores the outputs of the model of energy and grid services (MEGS), illustrating outcomes if a single technology group is favored. Introduction The majority of electricity in the Australian National Energy Market (NEM) is provided by synchronous thermal power generation, which also has delivered services required for grid stability such as inertia and frequency control. The NEM commenced operation in December 1998 and includes five regional market jurisdictions: Queensland, New South Wales (including the Australian Capital Territory), Victoria, South Australia, and Tasmania. In 2020, the NEM incorporated approximately 40,000 km of transmission lines and cables, connecting approximately 57 GW of generation capacity to consumers. This thermal generation mostly has consisted of coal- and gas-based technologies. Electricity grids are also changing from largely centralized electricity generation systems to more decentralized ones and from unidirectional electricity flows to bidirectional flows as part of the effort to reduce emissions. However, with increasing penetration of variable renewable energy (VRE) generation, it is important to plan for and manage generation-asset investment to track the lowest possible total system cost and highest reliability path to a low-emissions future. A Competent, Diverse Grid A competent electricity grid is one that can keep the lights on, so to speak, within the legislated tolerance for outages and performance. A competent grid is adequate, reliable, secure, operable, and robust against externally driven disruptions. In practice, the reliability of the electricity grid often seems to be taken for granted; however, it is an essential element of the modern economy, and, with a changing grid, reliability is increasingly important. When a decision must be made to build or replace an individual power plant, stakeholders (individual investors) have traditionally considered the levelized cost of energy (LCOE) of the alternative generation options, which di-vides the total cost of an installation or plant by the kilowatt-hours it produces over its lifetime. However, metrics such as LCOE, based on grid-independent formulae to help power plant investors to maximize returns, are inappropriate for comparing technologies that deliver and demand a complex menu of services specific to the grid. A different metric is required to evaluate each technology’s contribution to the grid.
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Fforde, Cressida. „From edinburgh university to the ngarrindjeri nation, south australia“. Museum International 61, Nr. 1-2 (Mai 2009): 41–47. http://dx.doi.org/10.1111/j.1468-0033.2009.01673.x.

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Tan, C. K. F., und D. R. Larden. „Undergraduate surveying courses at the University of South Australia“. Australian Surveyor 40, sup1 (Juni 1995): 19–23. http://dx.doi.org/10.1080/00050326.1995.10441703.

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Tan, C. K. F., und D. R. Larden. „Underducated Surveying Courses at the University of South Australia“. Australian Surveyor 40, sup1 (Juni 1995): 19–23. http://dx.doi.org/10.1080/00050335.1995.10558577.

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Stokes, Jennifer. „Student Perspectives on Transitioning to University in South Australia“. International Journal of Learning in Higher Education 20, Nr. 4 (2014): 1–8. http://dx.doi.org/10.18848/1447-9494/cgp/v20i04/48704.

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Tranter, Deborah, und Robert Sumner. „Planning for equity at the university of South Australia“. Tertiary Education and Management 8, Nr. 1 (Januar 2002): 81–94. http://dx.doi.org/10.1080/13583883.2002.9967070.

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Dharmawan, H. A., und A. M. Ali. „Development of switchable transformer research at University of South Australia“. Renewable Energy and Power Quality Journal 1, Nr. 07 (April 2009): 698–703. http://dx.doi.org/10.24084/repqj07.477.

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Dissertationen zum Thema "University investments South Australia":

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Shen, Jian-Wei. „Effects of differing tectono-stratigraphic settings on late Devonian and early carboniferous reefs, Western Australia, Eastern Australia, South China, and Japan /“. St. Lucia, Qld, 2002. http://www.library.uq.edu.au/pdfserve.php?image=thesisabs/absthe17417.pdf.

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Jayawickrema, Jacintha. „A reconstruction of the ecological history of Longneck Lagoon New South Wales, Australia /“. View thesis, 2000. http://library.uws.edu.au/adt-NUWS/public/adt-NUWS20050720.135957/index.html.

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Wormington, Kevin Ray. „The habitat requirements of arboreal marsupials in dry sclerophyll forests of south-east Queensland, Australia /“. St. Lucia, Qld, 2003. http://www.library.uq.edu.au/pdfserve.php?image=thesisabs/absthe17558.pdf.

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Findlay, Narelle Megan. „The private demand for higher education : a case study of the University of Adelaide and the Flinders University of South Australia /“. Title page, table of contents and abstract only, 1993. http://web4.library.adelaide.edu.au/theses/09EC/09ecf4945.pdf.

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Swarts, Derek Juan. „Soil community structure and litter decomposition under irrigated Eucalyptus Globulus in South Western Australia“. Connect to thesis, 2006. http://portal.ecu.edu.au/adt-public/adt-ECU2006.0051.html.

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Hopper, Derek J. „Crustal evolution of paleo- to mesoproterozoic rocks in the Peake and Denison Ranges, South Australia /“. [St. Lucia, Qld.], 2001. http://www.library.uq.edu.au/pdfserve.php?image=thesisabs/absthe18288.pdf.

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Mlauzi, Dumisani G. „Solutions to investor-state dispute settlement : Republic of South Africa vis-à-vis Australia“. Thesis, University of the Western Cape, 2016. http://hdl.handle.net/11394/5520.

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Magister Legum - LLM
The main objective of this paper is to critically analyse the solutions that countries are currently implementing in response to the much-debated issue that the conventional investor-state dispute settlement (ISDS) regime limits a host-state's space to make regulations under public policy. Consequently, the paper makes recommendations on viable solutions that countries can implement as solutions to the ISDS problems. In order to conduct the study, this paper uses the solutions to ISDS problems that have been implemented by the Republic of South Africa (RSA) and Australia respectively. The paper also compares the solutions implemented by RSA and Australia with some internationally recognised solutions. Chapters two and three of the paper discuss the backgrounds and also analyse the solutions to ISDS that have been implemented by RSA and Australia respectively. Chapter four contains the main findings and arguments of the paper. It analyses the strengths and weaknesses of the ISDS solutions that have been implemented by RSA and Australia respectively. One of the main findings of the paper is that retaining the conventional ISDS regime is less beneficial to developing and least developed countries and more beneficial to developed countries, largely due to the differing levels of outward investments that are present in these categories of countries. The paper recommends, inter alia, that, unlike developed countries, developing countries and least-developed countries should abrogate the conventional ISDS regime and only retain it in particular circumstances as explained in chapter five. The paper recommends that ISDS should only be utilised where state-state arbitration would unnecessarily politicise an investment dispute. The paper also finds the use of domestic court as undesirable to investment disputes. The paper recommends mediation as a more balanced avenue for resolving investment disputes.
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Barnes, Geoffrey R. „A motivational model of enrolment intentions in senior secondary science courses in New South Wales (Australia) schools /“. Milperra, N.S.W. : [University of Western Sydney, Macarthur, Faculty of Education and Languages], 1999. http://library.uws.edu.au/adt-NUWS/public/adt-NUWS20030711.145044/index.html.

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Herath, Nirmitha. „Molecular genetics of hepatocellular carcinoma : the role of chromosomal instability and DNA methylation in hepatocellular carcinomas from Australia and South Africa /“. [St. Lucia, Qld.], 2002. http://www.library.uq.edu.au/pdfserve.php?image=thesisabs/absthe17055.pdf.

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Harrison, Sofie Alice. „The influence of seabird-derived nutrients on island ecosystems in the oligotrophic marine waters of south-western Australia“. Connect to thesis, 2006. http://portal.ecu.edu.au/adt-public/adt-ECU2007.0010.html.

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Bücher zum Thema "University investments South Australia":

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Australia. Dept. of the Parliamentary Library. Legislative Research Service. The FLinders University of South Australia. [Canberra]: Dept. of the Parliamentary Library, 1987.

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University of South Australia. Library. Collection development plan of the University of South Australia Library. [Underdale, S. Aust.]: The Library, 1995.

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Richards, Ronald. A guide to sources for the history of South Western Australia. Nedlands, W.A: University of Western Australia Press for the Charles and Joy Staples South West Region Publications Fund, 1993.

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International Economics Seminar (1986 Shaw University). International initiatives: Blueprint for change in South Africa : International Economics Seminar, Shaw University, Raleigh, North Carolina. New York, N.Y: Council on Religion and International Affairs, 1986.

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Parker, Derek. Governor Macquarie: His life, times, and revolutionary vision for Australia. Warriewood, N.S.W: Woodslane Press, 2010.

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Cooper, Alison. International investment in South Africa: Australia, Belgium, Denmark, Federal Republic of Germany, France, Italy, the Netherlands, Norway, Sweden, Switzerland, United Kingdom : with special sections on international sanctions and employment codes, and Japanese business links to South Africa. Washington, DC: Investor Responsibility Research Center, 1987.

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University of South Australia. Centre for Children's Literature. Conference. Landscape and identity: Perspectives from Australia : proceedings of the 1994 Conference of the Centre for Children's Literature, University of South Australia. Adelaide: Auslib Press, 1994.

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Edney, A. T. B. Dog behaviour and veterinary practice: 27 and 28 August 1994, Murdoch University, Western Australia, and 3 and 4 September 1994, Waite Campus, South Australia. [Murdoch, W.A.]: Murdoch University, Foundation for Continuing Veterinary Education, 1994.

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Adelaide Parklands Symposium (2006 University of South Australia). The Adelaide Parklands Symposium: A balancing act : past, present, future, University of South Australia, Adelaide 10 November 2006. Herausgegeben von Garnaut Christine, Round Kerrie, Bob Hawke Prime Ministerial Centre und Louis Laybourne Smith School of Architecture and Design. Centre for Settlement Studies. Adelaide: Centre for Settlement Studies and the Bob Hawke Prime Ministerial Centre, University of South Australia, 2006.

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Roundtable on Sentencing and Indigenous Peoples (1997 Whyalla Campus, University of South Australia). Proceedings of Roundtable on Sentencing and Indigenous Peoples: Convened by the Australian Institute of Criminology and the University of South Australia, on 31 October 1997, and hosted by the Aboriginal and Islander Study Centre, Whyalla Campus, University of South Australia. Griffith, ACT: Australian Institute of Criminology, 1998.

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Buchteile zum Thema "University investments South Australia":

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„University of South Australia“. In The Grants Register 2020, 1038–40. London: Palgrave Macmillan UK, 2019. http://dx.doi.org/10.1057/978-1-349-95943-3_933.

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„University of South Australia“. In The Grants Register 2019, 905–8. London: Palgrave Macmillan UK, 2018. http://dx.doi.org/10.1007/978-1-349-95810-8_1251.

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„University of South Australia“. In The Grants Register 2019, 908. London: Palgrave Macmillan UK, 2018. http://dx.doi.org/10.1007/978-1-349-95810-8_1252.

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„University of South Australia“. In The Grants Register 2021, 1086–89. London: Palgrave Macmillan UK, 2020. http://dx.doi.org/10.1057/978-1-349-95988-4_963.

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„University of South Australia“. In The Grants Register 2018, 898–900. London: Palgrave Macmillan UK, 2018. http://dx.doi.org/10.1007/978-1-349-94186-5_1207.

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„University of South Australia“. In The Grants Register 2018, 901. London: Palgrave Macmillan UK, 2018. http://dx.doi.org/10.1007/978-1-349-94186-5_1208.

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„University of South Australia“. In The Grants Register 2022, 1173–76. London: Palgrave Macmillan UK, 2021. http://dx.doi.org/10.1057/978-1-349-96042-2_12490.

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Steven Tay, Nguan H., Martin Belusko, Ming Liu und Frank Bruno. „Dynamic Concept at University of South Australia“. In High Temperature Thermal Storage Systems Using Phase Change Materials, 39–92. Elsevier, 2018. http://dx.doi.org/10.1016/b978-0-12-805323-2.00003-5.

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Steven Tay, Nguan H., Martin Belusko, Ming Liu und Frank Bruno. „Static Concept at University of South Australia“. In High Temperature Thermal Storage Systems Using Phase Change Materials, 157–91. Elsevier, 2018. http://dx.doi.org/10.1016/b978-0-12-805323-2.00007-2.

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van der Linde, Kathleen. „South Africa“. In Financing Company Group Restructurings. Oxford University Press, 2015. http://dx.doi.org/10.1093/oso/9780198738466.003.0020.

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The author would like to thank Adam Harris, partner at Bowman Gilfillan, Juanitta Calitz, associate professor at the University of Johannesburg, and Riza Moosa, director at Norton Rose Fulbright South Africa, for valuable feedback on a draft of this chapter. The author also benefitted from discussions with Stephen Gamble, chairman of the Loan Markets Association’s Africa Group, and Alex Otto, head of Structured Products and Principle Investments at Standard Bank Group. The material contained herein is intended as a general guide only and is not intended to be a memorandum of law study, nor to provide legal advice, and should not be treated as a substitute for legal advice concerning particular situations. Legal advice should always be sought before taking any action based on the information provided. The publishers, editors, and author bear no responsibility for any errors or omissions contained therein.

Konferenzberichte zum Thema "University investments South Australia":

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Gardeazabal Penuela, Luis Francisco, und Tanya Mackay. „UNIVERSITY OF SOUTH AUSTRALIA STUDENT UNION (USASA) ADVOCACY INTERNSHIP PROGRAM: STUDENT PARTNERSHIP IN ACTION“. In 11th annual International Conference of Education, Research and Innovation. IATED, 2018. http://dx.doi.org/10.21125/iceri.2018.1379.

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Alan Hodgett, R. „A Role for Information Systems Education Programs“. In 2002 Informing Science + IT Education Conference. Informing Science Institute, 2002. http://dx.doi.org/10.28945/2503.

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The international media continually reports a worldwide shortage of skilled information technology literate people. An intermediary role or disciplinary area between business requirements and computer science has been identified in the past. A number of institutions have developed information systems education programs to fill this role. A survey of pasl graduates and employers evaluates the performance of several information systems education programs at the University of South Australia.
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Bray, Don E., und G. S. Gad. „Establishment of an NDE Center at the Papua New Guinea University of Technology: Scope and Objectives“. In ASME 1997 Turbo Asia Conference. American Society of Mechanical Engineers, 1997. http://dx.doi.org/10.1115/97-aa-065.

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Papua New Guinea lies just north of Australia (Fig. 1). It is a developing island nation, with 462,839 km of land area, a population of 3.9 million people, and vast natural resources (Compton’s Interactive Encyclopedia, 1996). It is the largest island in the Oceania region of the world, which also includes Fiji, the Solomon Islands and Vanuatu. Most of these islands share similar resources, and prudent development of the resources requires utilization of nondestructive evaluation (NDE). NDE provides the means for flaw detection and size assessment, as well as evaluation of material degradation such as corrosion and hydrogen attack. These are factors which affect the service life of components and systems. Being aware of the state of degradation of these components and systems will enable cost effective maintenance, and reduce costly and dangerous failures. Recognizing the need for NDE expertise, the Papua New Guinea University of Technology at Lae has initiated a Center for Nondestructive Evaluation. Once operational, the center should serve the entire Oceania region, and provide resources, trained students and expertise that will enable the growth of the NDE industry within that area. It is widely accepted that NDE adds value to a product or process, not just cost. The amount of value is directly related to the engineering education of the personnel making NDE decisions. The growth of the NDE industry in these South Pacific Islands will add to the economy, as well as aid in the further creation of a population of engineers who are well educated in NDE.
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Gayraud, Stéphane, und Riti Singh. „Effective Decision Making in Simple and Combined Cycle Schemes at the Turn of the Millennium“. In ASME 1999 International Gas Turbine and Aeroengine Congress and Exhibition. American Society of Mechanical Engineers, 1999. http://dx.doi.org/10.1115/99-gt-011.

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The electricity supply industry is being restructured all over the world. Privatisation, with the emergence of Independent Power Projects (IPPs), especially in developing countries, and liberalisation of the power generation market are changing decision-making processes in a radical way. New challenges of deregulation and customer demands, and economic instabilities in south-east Asia, oblige electric utilities to face a double jeopardy: least-cost planning and least-risk investments. Consumers are encouraged to save energy and emission reduction policies are implemented to promote utilisation of high efficiency, clean power production technologies. The aim of this paper is to introduce the concept of life cycle risk management and Decision Support System (DSS) for open and combined cycle schemes, highlighting the market potential for Flexible Mid-size Gas Turbines (FMGT) in mid-merit applications. The DSS that has been developed at Cranfield University includes: plant simulation program, providing design and off-design performance, maintenance planning, component degradation, and load-following models. In addition several economic techniques based upon engineering finance and project accounting make power plant economic appraisals possible. The DSS also provides a Monte Carlo risk analysis in order to deal with technical and economic uncertainties in a very effective way. Case studies will stress several parameters that planners have to carefully assess when making decision in the context of the coming millennium, bringing all sorts of new challenges and areas of uncertainty that will be discussed in the paper.

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