Auswahl der wissenschaftlichen Literatur zum Thema „Design base“

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Zeitschriftenartikel zum Thema "Design base"

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Cui, Xin. „Structure design of knowledge base of software enterprise based on project development“. Functional materials 24, Nr. 2 (22.06.2017): 005–284. http://dx.doi.org/10.15407/fm24.02.278.

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Prajapati, Chandrakant D., Sanjay B. Patel und Kinjal M. Patel. „Web-Base Design Differentiate HTML &HTML5“. International Journal of Scientific Research 2, Nr. 3 (01.06.2012): 83–85. http://dx.doi.org/10.15373/22778179/mar2013/28.

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Tapado, Belen M. „Catanduanes Abaca Fiber Production Information Base Design: A Groundwork for GIS-Based Application“. Journal of Advanced Research in Dynamical and Control Systems 12, Nr. 01-Special Issue (13.02.2020): 260–67. http://dx.doi.org/10.5373/jardcs/v12sp1/20201071.

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Mishra, Nitish Kumar, und Prof Vaibhav Bankar. „Design and Analysis of Ceiling Cable Holder Base“. International Journal of Trend in Scientific Research and Development Volume-3, Issue-4 (30.06.2019): 564–67. http://dx.doi.org/10.31142/ijtsrd23840.

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Yinhua, Hai. „A Framework Design of Mongolian Idioms Knowledge Base“. International Journal of Machine Learning and Computing 4, Nr. 5 (2014): 428–32. http://dx.doi.org/10.7763/ijmlc.2014.v4.449.

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Songr, Ju-Han, Min-Hyuk Pack, Han-Bin Kang, In-Seok Pack, Dong-Wook Lee, Gye-Gwang Lee und Seok-Soon Lee. „Lightweight design for windlass base frame using optimal design technique“. Journal of the Korean Society of Marine Engineering 37, Nr. 5 (31.07.2013): 477–83. http://dx.doi.org/10.5916/jkosme.2013.37.5.477.

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Talbot, James P. „Base-isolated buildings: towards performance-based design“. Proceedings of the Institution of Civil Engineers - Structures and Buildings 169, Nr. 8 (August 2016): 574–82. http://dx.doi.org/10.1680/jstbu.15.00057.

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Kaewkiriya, T., N. Utakrit und M. Tiantong. „The Design of a Rule Base for an e-Learning Recommendation System Base on Multiple Intelligences“. International Journal of Information and Education Technology 6, Nr. 3 (2016): 206–10. http://dx.doi.org/10.7763/ijiet.2016.v6.685.

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Laznicka, Peter. „Design of an international data base of giant metal accumulations“. Global Tectonics and Metallogeny 6, Nr. 3-4 (01.01.1998): 215–24. http://dx.doi.org/10.1127/gtm/6/1998/215.

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Pietra, Dario, Stefano Pampanin, Ron L. Mayes, Nicholas G. Wetzel und Demin Feng. „Design of base-isolated buildings“. Bulletin of the New Zealand Society for Earthquake Engineering 48, Nr. 2 (30.06.2015): 118–35. http://dx.doi.org/10.5459/bnzsee.48.2.118-135.

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Base isolation is arguably the most reliable method for providing enhanced protection of buildings against earthquake-induced actions, by virtue of a physical separation between the structure and the ground through elements/devices with controlled force capacity, significant lateral deformation capacity and (often) enhanced energy dissipation. Such a design solution has shown its effectiveness in protecting both structural and non-structural components, hence preserving their functionality even in the aftermath of a major seismic event. Despite lead rubber bearings being invented in New Zealand almost forty years ago, the Christchurch Women’s hospital was the only isolated building in Christchurch when the Canterbury earthquake sequence struck in 2010/11. Furthermore, a reference code for designing base-isolated buildings in New Zealand is still missing. The absence of a design standard or at least of a consensus on design guidelines is a potential source for a lack of uniformity in terms of performance criteria and compliance design approaches. It may also limit more widespread use of the technology in New Zealand. The present paper provides an overview of the major international codes (American, Japanese and European) for the design of base-isolated buildings. The design performance requirements, the analysis procedures, the design review process and approval/quality control of devices outlined in each code are discussed and their respective pros and cons are compared through a design application on a benchmark building in New Zealand. The results gathered from this comparison are intended to set the basis for the development of guidelines specific for the New Zealand environment.
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Dissertationen zum Thema "Design base"

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Rosengren, Hellman Jonas. „Modular Battery Base Unit : A Method-Based Design Approach“. Thesis, KTH, Maskinkonstruktion (Inst.), 2013. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-183421.

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This thesis covers a product development process carried out in collaboration with Ericsson –Enclosure & Power and their development of Radio Base Stations (RBS). As Ericsson expands into new markets, the different customer demands on their support systems increases in number and variation. In order to improve their business structure and still provide a wide array of product solutions, they are currently developing a new modular product family. Today numerous methods for product modularization exist, but there is a lack of experience of using such methods at Ericsson – Enclosure & Power. This thesis is an exploration of what methods could be suitable to use in this context, and how to implement them in a beneficial way. The object of study is the Battery Base Unit (BBU), a mounting base for RBS cabinets that contains a compartment for backup batteries. A methodology is suggested for developing this product in a way that secures a proper modular structure. Part of the methodology consists of standard product development methods such as Quality Function Deployment (QFD), concept selection and prototyping. The other part consist of the modularization methods Function Structure Heuristics and Design Structure Matrix (DSM), that are employed first on functional level before developing concepts and secondly on component-based level while detailing the final concept. The thesis describes how these implementations have been made, how the product have been developed from idea to prototype and the resulting product modularity. The final design is evaluated against the product specification and the benefits and drawbacks of using a formalized modularization process for product development at Ericsson – Enclosure & Power are discussed.
Detta arbete handlar om den produktutveckling som utförts i samarbete med Ericsson –Enclosure & Power och deras utveckling av kabinett för radiobasstationer (RBS). Ericssons expansion på nya marknader ökar mängden krav på deras olika supportsystem. För att kunna vidareutveckla sin verksamhet och samtidigt erbjuda ett stort antal produktlösningar utvecklar de för närvarande en ny modulbaserad produktfamilj. Idag finns ett flertal metoder för produktmodularisering men man saknar erfarenhet av att arbeta med sådana metoder på Ericsson– Enclosure & Power. Detta arbete undersöker vilka metoder som är lämpliga att använda i detta sammanhang, och hur man på bästa sätt ska implementera dem. Objektet för denna studie är Batteribasenheten (BBUn) som är ett fundament för montering av RBS kabinettet med ett utrymme för reservbatterier. Ett övergripande tillvägagångssätt föreslås för att säkerställa att utvecklingen av denna produkt inkluderar en bra modulär uppbyggnad. Delvis består tillvägagångssättet av vanliga produktutvecklingsmetoder såsom Quality Function Deployment (QFD), koncepturval och prototyper. I övrigt består det i modulariseringsmetoderna Function Structure Heuristics och Design Structure Matrix (DSM) som används först på funktionsnivå innan konceptgenereringsfasen och därefter på komponentnivå under detaljutvecklingen av det slutliga konceptet. Detta arbete beskriver hur dessa metoder har implementerats, hur produktenhar utvecklats från idé till prototyp samt den resulterande produktmodulariteten. Den slutliga utformningen utvärderas mot den angivna kravspecificeringen och fördelarna och nackdelarna med att använda en formaliserad metod för produktutveckling på Ericsson – Enclosure & Power diskuteras.
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Ben, Hafaiedh Imane. „Systèmes à base de composants : du design à l'implémentation“. Phd thesis, Université de Grenoble, 2011. http://tel.archives-ouvertes.fr/tel-00573291.

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Dans cette thèse, nous nous sommes intéressés aux design, vérification et implémentation des systèmes à base de composants. Nous proposons d'abord une méthodologie de design et de vérification compositionelle et incrémentale à base de contrats pour les systèmes de composants. Nous proposons ensuite une implémentation distribuée qui permet de préserver certaines properiétés globales de ces systèmes. La méthodologie de design proposée utilise les contrats comme un moyen de contraindre, raffiner et d'implémenter les systèmes. Elle est basée sur un formalisme de contracts générique, que nous instancions pour un formalisme de composants permettant la description des propriétés de progrés. Nous étendons cette méthodologie pour raisonner sur des systèmes de taille arbitraire et nous prouvons son utilité pour vérifier des propriétés de sûreté et de progrés d'un réseau de noeuds distribués. Dans le contexte des systèmes distribués, les systèmes doivent être implémenter de manière distribuée. Nous proposons dans cette thèse un protocole qui permet l'exécution distribuée des systèmes tout en préservant certaines propriétés globales à savoir des synchronisations et des priorités et où les composants interagissent par échange de messages. Nous proposons également une implémentation du protocole pour une plateforme particulière.
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Hartland, A. J. „Dispersed base combat aircraft“. Thesis, Cranfield University, 1989. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.237543.

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Widajat, Djoko. „Predicting the performance of basaltic aggregate for use in unbound road base and sub base layers“. Thesis, University of Ulster, 2001. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.365923.

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Wu, Tai-Chieh 1976. „Design of base isolation system for buildings“. Thesis, Massachusetts Institute of Technology, 2001. http://hdl.handle.net/1721.1/84293.

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Bayar, Gokhan. „Configurable Robot Base Design For Mixed Terrain Applications“. Master's thesis, METU, 2005. http://etd.lib.metu.edu.tr/upload/2/12606530/index.pdf.

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Mobile robotics has become a rapidly developing field of interdisciplinary research within robotics. This promising field has attracted the attention of academicy, industry, several government agencies. Currently from security to personal service mobile robots are being used in a variety of tasks. The use of such robots is expected to only increase in the near future. In this study, it is aimed to design and manufacture a versatile robot base. This base is aimed to be the main driving unit for various applications performed both indoors and outdoors ranging from personal service and assistance to military applications. The study does not attempt to individually address any specific application, indeed it is aimed to shape up a robotic module that can be used in a wide range of application on different terrain with proper modification. The robot base is specifically designed for mixed terrain applications, yet this study attempts to provide some guidelines to help robot designers. The manufactured robot base is tested with tracks, wheels, and with both tracks and wheels, results are provided as guidelines to robot designers. Last but no the least, this study aims to obtain the know-how of building functional and flexible robots in Turkey by facilitating local resources as much as possible.
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Hatchell, Brian. „Data base design for integrated computer-aided engineering“. Thesis, Georgia Institute of Technology, 1987. http://hdl.handle.net/1853/16744.

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Bjorkner, Erik, Jerry Brennan, Robert Brooks, Lance Flitter, Eric Igama, Mike Martini, Paul Rakow et al. „Advanced Sea Base Enabler (ASE) Capstone Design Project“. Thesis, Monterey, California. Naval Postgraduate School, 2009. http://hdl.handle.net/10945/6943.

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As part of a Naval Postgraduate School's capstone project in Systems Engineering, a project team from cohort 311-081 performed a Systems Engineering analysis of an Advanced Sea Base Enabler (ASE). For a sea base to be truly beneficial a capability must exist that supports efficiently transporting needed materiel from the sea base to the desired debarkation point. The capability must support peace-time, non-combat operations' and war-time, combat operations' logistics and support needs. The solution must be cost effective and capable of operating under all environmental conditions, including sea states, under which necessary military operations are expected to take place and must support a transport rate sufficient to ensure materiel is delivered within operational time requirements. The proposed ASE is intended to fully enable the potential of the sea base. The bulk of effort by the team was on collection, analysis and validation of operational requirements, functional analysis based on the operational requirements, consideration of possible alternatives compared to the collected requirements, prioritizing the alternatives based on stakeholder priorities and selection and documentation of a preferred alternative. Addtionally, the team conducted cost analysis and risk analysis, as well as a limited simulation study.
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Wang, Andrew Yu 1976. „Base station design for a wireless microsensor system“. Thesis, Massachusetts Institute of Technology, 2000. http://hdl.handle.net/1721.1/86627.

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Campbell, Ira lee. „Sustainable energy in military base design & layout“. Thesis, Georgia Institute of Technology, 2016. http://hdl.handle.net/1853/55072.

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The purpose of this study is to exlpore the possibilities of power generation using human and mechanical means. This paper will introduce alternative means, methods, and procedures for the implementation of cutting edge technologies to address the energy needs for today and the future. Further, this project will serve as an aid in the development of a base camp facility layout optimization system by understanding the proximity relationships between base camp components, developing a facility layout domain, and comparing generated layouts to existing models and camps.
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Bücher zum Thema "Design base"

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E, Jones Paul, Hrsg. Logical data base design. 2. Aufl. Wellesley, Mass: QED Information Sciences, 1988.

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Hawryszkiewycz, I. T. Database analysis and design. 2. Aufl. New York: Macmillan Pub. Co., 1991.

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Salzberg, Betty Joan. Introduction to data base design. London: Academic Press, 1986.

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Koelle, H. H. Conceptual design of a lunar base. Aachen: Shaker Verlag, 2004.

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Howe, D. R. Data analysis for data base design. 2. Aufl. London: Edward Arnold, 1989.

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Effective design of CODASYL data base. New York: Macmillan, 1985.

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Salzberg, Betty Joan. An introduction to data base design. London: Academic Press, 1986.

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Furtado, Antonio L., und Erich J. Neuhold. Formal Techniques for Data Base Design. Berlin, Heidelberg: Springer Berlin Heidelberg, 1986. http://dx.doi.org/10.1007/978-3-642-70592-2.

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J, Neuhold Erich, Hrsg. Formal techniques for data base design. Berlin: Springer-Verlag, 1986.

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Howe, D. R. Data analysis for data base design. 2. Aufl. London: E. Arnold, 1989.

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Buchteile zum Thema "Design base"

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Manohar, Sharad, und Suhasini Madhekar. „Base Isolation“. In Seismic Design of RC Buildings, 387–416. New Delhi: Springer India, 2015. http://dx.doi.org/10.1007/978-81-322-2319-1_10.

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Lovell, Nicholas. „The Base Layer“. In The Pyramid of Game Design, 19–30. Boca Raton: Taylor & Francis, CRC Press, [2018]: A K Peters/CRC Press, 2018. http://dx.doi.org/10.1201/9780429444630-2.

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Harada, Hiroshi, und Hideyuki Murakami. „Design of Ni-Base Superalloys“. In Computational Materials Design, 39–70. Berlin, Heidelberg: Springer Berlin Heidelberg, 1999. http://dx.doi.org/10.1007/978-3-662-03923-6_2.

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Reddy, G. R., T. Nagender und P. N. Dubey. „Seismic Base Isolation of Structures“. In Textbook of Seismic Design, 521–48. Singapore: Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-13-3176-3_14.

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Das, Mukti L., und Sitaram V. Josyula. „Knowledge Base for Structural Design“. In Applications of Artificial Intelligence in Engineering Problems, 33–44. Berlin, Heidelberg: Springer Berlin Heidelberg, 1986. http://dx.doi.org/10.1007/978-3-662-21626-2_3.

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Bok, Kiso, Sehyun Myung und Soon-Hung Han. „Lens Barrel Design Based On Distributed Knowledge-Base“. In Knowledge Intensive Computer Aided Design, 255–71. Boston, MA: Springer US, 2000. http://dx.doi.org/10.1007/978-0-387-35582-5_12.

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Zhan, Zhijuan, Qing Zhou, Bingfei Li und Bing Xue. „Design Method of Aviation Architecture Based on Model Base“. In Complex Systems Design & Management, 475. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-73539-5_41.

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Cardone, Donatello, Amedeo Flora, Giuseppe Perrone und Luciano R. S. Viggiani. „Risk-Target-Based Design of Base-Isolated Buildings“. In Reliability-Based Analysis and Design of Structures and Infrastructure, 175–88. Boca Raton: CRC Press, 2021. http://dx.doi.org/10.1201/9781003194613-13.

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Ishida, Kiyohito. „Phase Equilibria and Microstructural Control in Iron-base Alloys“. In Computational Materials Design, 135–61. Berlin, Heidelberg: Springer Berlin Heidelberg, 1999. http://dx.doi.org/10.1007/978-3-662-03923-6_5.

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Tepfers, C. A. C., und C. Davidsen. „BASE — Fundamentals of Web System Design“. In Information Systems in the WWW Environment, 23–46. New York, NY: Springer US, 1998. http://dx.doi.org/10.1007/978-0-387-35347-0_2.

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Konferenzberichte zum Thema "Design base"

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NOWAK, PAUL, WILLY SADEH und JEFFREY JANAKUS. „Inflatable structures for a lunar base habitat“. In Aerospace Design Conference. Reston, Virigina: American Institute of Aeronautics and Astronautics, 1992. http://dx.doi.org/10.2514/6.1992-1031.

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CONNOLLY, JOHN. „Design of a minimum level lunar base infrastructure“. In Aerospace Design Conference. Reston, Virigina: American Institute of Aeronautics and Astronautics, 1992. http://dx.doi.org/10.2514/6.1992-1034.

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Koprda, Stefan, Zoltan Balogh, Milan Turcani und Milan Turčáni. „Fuzzy control rules base design“. In 2011 5th International Conference on Application of Information and Communication Technologies (AICT). IEEE, 2011. http://dx.doi.org/10.1109/icaict.2011.6110962.

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WIDDER, PATRICIA, und JOHN RICHARD. „CIG data base design issues“. In Flight Simulation Technologies Conference and Exhibit. Reston, Virigina: American Institute of Aeronautics and Astronautics, 1989. http://dx.doi.org/10.2514/6.1989-3285.

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„Lunar Base Concept and Design“. In 55th International Astronautical Congress of the International Astronautical Federation, the International Academy of Astronautics, and the International Institute of Space Law. Reston, Virigina: American Institute of Aeronautics and Astronautics, 2004. http://dx.doi.org/10.2514/6.iac-04-iaa.3.8.1.05.

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Lundholm, P. „Design management in base/OPEN“. In SCM: 2nd Intl Workshop on Software Configuration Mgmt. New York, NY, USA: ACM, 1989. http://dx.doi.org/10.1145/72910.73345.

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Jin, Haiming, und Wenli Peng. „Study on Product Design and Development Based on Design Knowledge Base“. In 2009 Second International Symposium on Computational Intelligence and Design. IEEE, 2009. http://dx.doi.org/10.1109/iscid.2009.123.

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Vieira Soares Filha, Anna Maria. „AS EXPERIÊNCIAS CRIATIVAS COMO BASE DO DESIGN CONTEMPORÂNEO“. In AVIA! Semana de Design. Macéio - AL, Brazil: Galoa, 2017. http://dx.doi.org/10.17648/avia-2017-80731.

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Tan, Guoxin, und Zheng Zhong. „Research on reconstructing 3D models based on an ethnic cultural model base“. In 2009 IEEE 10th International Conference on Computer-Aided Industrial Design & Conceptual Design. IEEE, 2009. http://dx.doi.org/10.1109/caidcd.2009.5374972.

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Truong, Huy Q., Hamid Borghei-Razavi, Pinar Celtikci, Emrah Celtikci, David T. Fernandes Cabral, Aldo Eguiluz-Meléndez, Paul A. Gardner und Juan C. Fernandez-Miranda. „Anatomical Analysis and Proposed Design of an Angled Drill for Endoscopic Endonasal Petrosectomy“. In 30th Annual Meeting North American Skull Base Society. Georg Thieme Verlag KG, 2020. http://dx.doi.org/10.1055/s-0040-1702352.

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Berichte der Organisationen zum Thema "Design base"

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Chamberlain, Emma. Defining the tax base: design issues. CAGE, Oktober 2020. http://dx.doi.org/10.47445/108.

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R.J. Garrett. Nuclear Safety Design Base for License Application. Office of Scientific and Technical Information (OSTI), September 2005. http://dx.doi.org/10.2172/895368.

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Johnson, Richard William. L-Base Lathe Lifting Arm (preliminary design). Office of Scientific and Technical Information (OSTI), Mai 2017. http://dx.doi.org/10.2172/1356111.

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EZELL, Barry C., und Mark J. Davis. Base Camp Design: Site Selection and Facility Layout. Fort Belvoir, VA: Defense Technical Information Center, August 2001. http://dx.doi.org/10.21236/ada399762.

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Bjorkner, Erik, Jerry Brennan, Robert Brooks, Lance Flitter, Eric Igama, Mike Martini, Paul Rakow et al. Advanced Sea Base Enabler (ASE) Capstone Design Project. Fort Belvoir, VA: Defense Technical Information Center, September 2009. http://dx.doi.org/10.21236/ada510979.

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DEPARTMENT OF DEFENSE WASHINGTON DC. Military Standard Generic Transformed Data Base Design Standard. Fort Belvoir, VA: Defense Technical Information Center, Dezember 1992. http://dx.doi.org/10.21236/ada280177.

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Leahy, Daniel J. Structure and Machanism-Base Design of ErbB Receptor Inhibitors. Fort Belvoir, VA: Defense Technical Information Center, September 2005. http://dx.doi.org/10.21236/ada443243.

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DEPARTMENT OF DEFENSE WASHINGTON DC. Standard Simulator Data Base (SSDB) Interchange Format (SIF) Design Standard. Fort Belvoir, VA: Defense Technical Information Center, Juni 1993. http://dx.doi.org/10.21236/ada281516.

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Hart, Gary C., und Rami Elhassan. Seismic Design Criteria for Base Isolated U.S. Navy Essential Buildings. Fort Belvoir, VA: Defense Technical Information Center, August 1989. http://dx.doi.org/10.21236/ada213231.

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Ullman, Jeffrey D. Research into the Design and Implementation of Knowledge-Base System. Fort Belvoir, VA: Defense Technical Information Center, Januar 1992. http://dx.doi.org/10.21236/ada247039.

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