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Task 1: Proceedings of the 14 th International Conference on Nuclear Engineering ICONE14 July 17-20, 2006, Miami, Florida, USA Put paper number here PUT PAPER TITLE HERE Author Name Affiliation City, State, Country Author Name Affiliation City, State, Country Author Name Affiliation City, State, Country Author Name Affiliation City, State, Country Author name Affiliation City, State, Country

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Task 1:Proceedings of the 14th International Conference on Nuclear EngineeringICONE14July 17-20, 2006, Miami, Florida, USAPut paper number here

Put paper title here

Author NameAffiliationCity, State, CountryAuthor NameAffiliationCity, State, Country

Author NameAffiliationCity, State, CountryAuthor NameAffiliationCity, State, CountryAuthor nameAffiliationCity, State, Country

AbstractPut abstract text here.

INTRODUCTIONEarly prior research demonstrated the superiority of ceramics for bearings (1, 2) and the existence of elasto- hydrodynamic (ehd) lubricant films at ball and roller contacts (3), the calculation of which is now an accepted part of bearing engineering. These new concepts are now used in the design of lubrication systems with solid lubricants that operate in much more severe environments than oils and greases (4, 5). Proprietary computer codes and unique patented bearing configurations for optimizing the performance of bearing/solid-lubricant systems have been developed (6, 7 and 8). In this way, patented self-contained solid-lubricated all-steel and hybrid-ceramic ball and roller bearings are now available for environments that do not contribute to their lubrication, such as in air or vacuum.NomenclaturePut nomenclature here.Put body of the paper here. Put body of the paper here. Put body of the paper here. Put body of the paper here. Put body of the paper here. Put body of the paper here. Put body of the paper here. Put body of the paper here. Put body of the paper here. Put body of the paper here. Put body of the paper here. Put body of the paper here.AcknowledgmentsPut acknowledgments here.

Task 2: Template is a tool for ensuring that all the documents and publications have standard layout. Templates can be used to define the formatting to be used in documents and slides, as an example they can control font style, font size and colour. They can also control page formatting such as margin size and can ensure that standard text such as page number, date/ time, author, file, name and location appears on every page, usually within the header or footer.The advantage of using templates is that they ensure that all documentation is consistent, they save huge amount of time. They help inexperienced staff produce professional looking documents easily which follow company house style. They are read only, which means that they cant be altered by mistake. There are some problems with these templates that we need to consider. The first one is that because templates are read only, if an error found, only person with correct authority can alter the template. The second one is that if spelling mistakes or errors appears on the template, those mistakes will appear in every document created from that template. The third one is that the template might not be appropriate for a specific task, but user can not alter it.Task 3:

Improved Thermal Efficiency of Coal-Fired Power Station3

AbstractThe CO2emissions from coal-fired power stations can be reduced through two strategic approaches; one is to improve the thermal efficiency of power stations and the other is to capture CO2from the waste gases, which would otherwise be released to the atmosphere. This study focuses on the former approach with the aim of investigating how the design and operating parameters of power stations have an impact on the efficiency of power production and CO2emission. The study was carried out numerically by simulating a combined combustion/steam-cycle model developed at the University of Regina. The model was based on the knowledge of coal combustion, heat transfer and thermodynamics of steam-power-cycle. Simulation of the model provided essential information related to power generation, including steam-cycle thermal efficiency, net power efficiency, coal consumption, CO2 emission, temperature of combustion zone and released flue gas. By conducting the sensitivity analysis using Monte Carlo simulation technique for a 400 MWe coal-fired power station, the magnitude of impact that operating parameter has on the plant efficiency and CO2emission was realized. The outcome from the sensitivity analysis allowed us to establish operational strategies for coal-fired power station to achieve the maximum efficiency with minimum CO2emission.Keywords: CO2 emission, Power stations, Monte Carlo simulation

Task 4:

Proceedings of the 2014SHANAHAN Conference on Mechanical EngineeringICONE14March 10-13, 2014, Witbank, South Africa1

2014 SHANAHAN MECHANICAL Engineering ISSUES

Rezvan GharehbaghiCEO SHANAHAN eng.Gauteng, Johannesburg, South AfricaDr David GriffithSHANAHAN Corporation FounderDublin, Prescott, Ireland

AbstractIn this article we are trying to find new ways of producing much more electricity than we producing currently. By means of investigating how operating parameters and the design of power stations have a impact on CO2 emissions and the efficiency of power production.

INTRODUCTIONThe new ways of doing this is to install more power stations and boilers around the country so we can get more power.NomenclatureThis study focuses on reducing co2 emissions and increasing efficiency in power stations by improving thermal efficiency of power stations by capturing CO2 from the waste gases.AcknowledgmentsWe give great thanks to Dr. David Griffith (the company founder) that helped us complete this work. References http://ieeexplore.ieee.org/xpl/login.jsp?tp=&arnumber=4498117&url=http%3A%2F%2Fieeexplore.ieee.org%2Fxpls%2Fabs_all.jsp%3Farnumber%3D4498117 (accessed 27 March 2014)http://www.streetdirectory.com/travel_guide/6705/online_business/document_templates.html(accessed 27 March 2014)