Academic literature on the topic 'Microsoft software'

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Journal articles on the topic "Microsoft software"

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Alderman, Lee. "Software: Microsoft word." Performance + Instruction 27, no. 6 (1988): 45–46. http://dx.doi.org/10.1002/pfi.4170270612.

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Cusumano, Michael A., and Richard W. Selby. "How Microsoft builds software." Communications of the ACM 40, no. 6 (1997): 53–61. http://dx.doi.org/10.1145/255656.255698.

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Miller, Dick. "Software Review: Microsoft powerpoint." Performance + Instruction 27, no. 7 (1988): 34–35. http://dx.doi.org/10.1002/pfi.4170270712.

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Sulianta, Feri. "Basis Data Semu Menggunakan Lembar Kerja Elektronik pada Sistem Otomatisasi Perkantoran." Journal of Secretary and Business Administration 1, no. 1 (2017): 34. http://dx.doi.org/10.31104/jsab.v1i1.9.

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 The development of information technology nowadays encourages users to use the software appropriately so that commercial software can be maximally empowered that contribute to the efficiency and effectiveness of the job. To support its work, users use Microsoft's Microsof Excel Office Automation System worksheet commonly used by end users for clerical, repetitive and independent work.
 Microsoft Excel applications are generally used for office worker, clerical computation and users generally use only a portion of the features of some features owned by the application. In this case, the user can maximize the ability of Excel by creating an interactive pseudo database using only Microsoft Excel, so users can organize data with automated database schema. It is intended for time efficiency and also improves the data security factor of human error in handling data.
 
 
 
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Carlisle, Stephanie. "Software: Tableau and Microsoft Power BI." Technology|Architecture + Design 2, no. 2 (2018): 256–59. http://dx.doi.org/10.1080/24751448.2018.1497381.

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Small, Gary. "Computer Software Review. Microsoft, Version 4.0." Journal of Chemical Information and Modeling 28, no. 4 (1988): 234–35. http://dx.doi.org/10.1021/ci00060a600.

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Zecevic, Aleksandra. "Microsoft-ova kampanja legalizacije software-a." Ekonomski anali 43, no. 155 (2002): 157–62. http://dx.doi.org/10.2298/eka0205157z.

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All software producers give license for their products. Last July the most famous software producer - Microsoft -launched a serious and systematic licensing campaign for using their products in the territory of Yugoslavia. The paper gives a review of software licensing procedures as well as possibilities for being allowed certain discounts by Microsoft. .
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Kusuda, Yoshihiro. "Tmsuk/Microsoft collaboration on robotic software." Industrial Robot: An International Journal 35, no. 3 (2008): 202–5. http://dx.doi.org/10.1108/01439910810868507.

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Mandel, Robert. "Software Reviews : Microsoft Encarta 97 Deluxe." Social Science Computer Review 15, no. 3 (1997): 304–5. http://dx.doi.org/10.1177/089443939701500311.

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Pane, Ivransa Zuhdi. "Pemanfaatan Microsoft Excel Sebagai Perangkat Pengembangan Prototipe Piranti Lunak Visual." Jurnal ULTIMA InfoSys 6, no. 1 (2015): 20–26. http://dx.doi.org/10.31937/si.v6i1.275.

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Software prototype is a simplified form of the real software which is developed to assist the upstream engineering activities. Developing the prototype is especially of importance in gathering the requirement and modeling the main functionalities of the software. Among tools available to prototype the software, Microsoft Excel, with its advantageous spreadsheet features and considerable popularity, is worthy to be considered as an alternative candidate. Several case studies are explored to show the usefulness of Microsoft Excel as a prospective tool in prototyping the visual softwares.
 Index Terms - prototype, software engineering, visual software.
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Dissertations / Theses on the topic "Microsoft software"

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Alves, Ricardo Samuel Abecassis Empis da Cruz. "Microsoft: local software economy." Master's thesis, NSBE - UNL, 2010. http://hdl.handle.net/10362/9909.

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Padevět, Daniel. "Podpora testování v Microsoft Visual Studio." Master's thesis, Vysoká škola ekonomická v Praze, 2007. http://www.nusl.cz/ntk/nusl-12414.

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In software development process, there can be misunderstandings, communication problems between individual members of the development team and mistakes when writing code or designing applications. These problems need to be resolved before the application is released into the production environment. To discover these errors it is necessary to properly test the software product. All these activities are engaged in discipline called Software Quality Assurance (SQA), which is an integral part of the software development process. The thesis discusses this discipline and procedures for software testing using the Microsoft Visual Studio 2008. The main objective of this work is to create comprehensive methodology for automated testing of web and Windows applications in Microsoft Visual Studio and to verify that procedures in practice. The reader will learn the theoretical basis of software testing at the beginning of the thesis. In next chapter, there are described various features that Microsoft Visual Studio 2008 offers for software testing. Following chapter describes the applications testing in IBM Rational Functional Tester, which is suitable for Windows applications testing (Microsoft Visual Studio 2008 does not support this kind of tests). In other part of the work -- Case Study -- the reader will learn web and Windows applications testing. Case study can serve as a basis for further methodological manual for teams engaged in software testing. The usage of instruments for testing is explained in real examples. At the end of the work there are set out recommendations for the team collaboration using Microsoft Team Foundation Server, and there are also compared the testing instruments and reviewed functions that will come up with Microsoft Visual Studio 2010.
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Nesterov, D. A. "History of Microsoft." Thesis, Sumy State University, 2015. http://essuir.sumdu.edu.ua/handle/123456789/40492.

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In 1972 Bill Gates and Paul Allen established their first company, Traf-O-Data, which sold a rudimentary computer that recorded and analyzed traffic data. Inspired in 1975 by an issue of Popular Electronics that showed the new Altair microcomputer kit just released by MITS Computer, Gates and Allen wrote a version of BASIC for the machine. Later that year Gates left college to work full time developing programming languages for the Altair, and he and Allen relocated to Albuquerque, New Mexico, to be near MITS Computer, where Allen took a position as director of software development. Gates and Allen named their partnership Micro-soft. Their revenues for 1975 totaled $16,000.
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Jeníček, Michal. "Licence firmy Microsoft ve firemním segmentu." Master's thesis, Vysoká škola ekonomická v Praze, 2009. http://www.nusl.cz/ntk/nusl-72741.

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Correct and financially optimal covering of licensed software is one of the aims of all companies. Microsoft Corporation offers a wide range of software products and also various types of license financing that significantly affect their financing. License models stating the correct rules of using the licenses for software groups are also very specific and require a thorough understanding of its principles. These two areas include a range of partial aspects that are to be considered from the point of view of company benefit. However, a complex view combining license programs and license models is equally important. Hence the issue of license management is problematic not only for the management of the company, but also for the IT specialists. This thesis embeds the issue of licensing into the frame of strategic IT planning and by means of annotated principles, descriptions of everyday situations and accentuating details significantly affecting licensing provides a perspective of the issue that has not been dealt with in such an elaborate way so far. The aim of this thesis is to provide a complex analysis of license programs and models, their principles and possibilities. In many companies, a detailed knowledge and understanding of the issue of Microsoft licensing is very important. Therefore, this thesis provides some specific output instances in the form of both financial and functional comparison of individual licensing programs. The crucial services of license programs and characteristics of license models are investigated in detail and subject to critical evaluation for purposes of utilization in companies of various sizes and types.
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Matias, Matthew John. "Program Verification of FreeRTOS using Microsoft Dafny." Cleveland State University / OhioLINK, 2014. http://rave.ohiolink.edu/etdc/view?acc_num=csu1400085349.

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Procopio, Michael J. "YCab.NET decentralized collaboration groupware for mobile devices using the Microsoft .NET Framework /." [Gainesville, Fla.] : University of Florida, 2002. http://purl.fcla.edu/fcla/etd/UFE1000155.

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Thesis (M.S.)--University of Florida, 2002.<br>Title from title page of source document. Document formatted into pages; contains 112 p.; also contains graphics. Includes vita. Includes bibliographical references.
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Cederbom, Martin. "Improving software configuration management across multiple Microsoft Dynamics AX 2009 applications." Thesis, Linköpings universitet, Institutionen för datavetenskap, 2015. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-119323.

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When working with software development in Microsoft Dynamics AX 2009 applications as an independent solution vendor (ISV) with more than a few products in the portfolio, the number of applications/installations to support the processes tends to be vast. Annata and To-Increase are both ISVs and face this situation; To-Increase for example has about 50 environments for one single version of Dynamics AX. Change is inevitable in the software industry, regardless if the need originates from new features, bug fixes or change requests from customers; it requires modifications to existing products. Uncontrolled changes to the products must be avoided and any modifications should be introduced without affecting existing functionality. This thesis investigates how two ISVs work with Dynamics AX and the existing tool Development Center and suggests improvements to the Software Configuration Management. The most beneficial change suggested is to create a single repository within the existing tool across the applications.
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Shaffer, Ryan M. (Ryan Matthew). "Why software firms build hardware, and what Microsoft is doing about it." Thesis, Massachusetts Institute of Technology, 2015. http://hdl.handle.net/1721.1/100312.

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Thesis: S.M. in Engineering and Management, Massachusetts Institute of Technology, Engineering Systems Division, System Design and Management Program, 2015.<br>This electronic version was submitted by the student author. The certified thesis is available in the Institute Archives and Special Collections.<br>"February 2015." Cataloged from student-submitted PDF version of thesis.<br>Includes bibliographical references (pages 63-66).<br>Many software companies build first-party hardware products due to the trend toward smaller, more highly-integrated devices, along with the fast pace of innovation in the technology industry. Building hardware products does not always lead to success and actually creates a financial risk for the company by significantly reducing profit margins as compared to the traditional profit margins to which large software companies are accustomed. Three specific strategies are observed which firms have used successfully in this area. First, the "Hardware First" strategy is described, wherein a company builds devices with the primary goal of selling those devices bundled with the company's software. Second, the "Proprietary Devices" strategy is presented, in which a company builds a device that is targeted at a particular market or function and locks in the customer to the firm's ecosystem. This strategy has been observed to succeed in markets where the technology is not yet mature, as well as in cases where the device has a particular purpose that cannot be achieved as effectively with a general-purpose device. Third, the "Service Funnels" strategy is considered, wherein a firm builds hardware devices whose primary intent is to drive usage and revenue of its core software and services products. Microsoft and its various hardware strategies over the years are especially considered, including products such as Xbox, Zune, Kin, and Surface, as well as its acquisition of Nokia's devices business. Each of the three observed strategies has been used by Microsoft at various times, and analysis of these strategies is used to help explain why some products have succeeded while others have failed dramatically in the marketplace. Microsoft's core capability is undoubtedly in software, and developing a mutually-beneficial relationship between its hardware and software products will be key to the long-term success of Microsoft in today's technology landscape.<br>by Ryan M. Shaffer.<br>S.M. in Engineering and Management
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Svata, Bohuslav. "Analýza využití aplikačního software v maloobchodě v prostředí Microsoft Dynamics AX 2009." Master's thesis, Vysoká škola ekonomická v Praze, 2010. http://www.nusl.cz/ntk/nusl-114050.

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Theme of this thesis is utilization of ERP system MS Dynamics AX 2009 in retail environment. Its main goal is to create analysis that will evaluate suitability of MS Dynamics AX implementation in retail business. This goal is realized by achieving three steps. First step is introduction and analysis of retail business processes. This includes introduction of general process in theory followed by description of typical needs and requirements of retail enterprise. Second step is analysis of functionality offered by MS Dynamics AX and identification of its deficiencies in terms of usability in retail. Third step is creation of solution proposal for requirements that are not covered by MS Dynamics AX functionality. Contribution of this thesis is introduction of common needs and requirements of retail enterprise in chosen business segment. Also practical demonstration of how are key business processes supported by MS Dynamics AX. At last added value is also in creating a solution proposal, which will solve identified deficiencies by means of program customization. Structure of thesis is based on key business processes of retail and it's divided to theoretical and practical part. Chapters of each part are sorted into order of product life cycle, which is purchase, logistics and sales. Practical part also deals with product management.
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Lávička, Jan. "Poskytování aplikací Microsoft Office formou terminálových služeb na." Master's thesis, Vysoká škola ekonomická v Praze, 2007. http://www.nusl.cz/ntk/nusl-2830.

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V současném ekonomickém prostředí je velmi silný tlak na inovace jednotlivých softwarových výrobců, poskytovatelů služeb v oblasti IT či systémových integrátorů. Předmětem konkurenčního boje se nestává produkt nebo služba jako taková, ale i forma jejího zajištění a obchodní model, který definuje kvalitu a cenu pro zákazníka. V posledních letech zaznamenáváme vzestupnou tendenci výrobců / dodavatelů softwaru nabídnout dodávku software přímo formou služby tzv. Software as a Service neboli on-demand. Primárním cílem této diplomové práce je přispět k rozvoji teoretické základny modelů Software as s Service s hlavním zaměřením na oblast kancelářských aplikací pro segment malých a středně velkých firem.
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Books on the topic "Microsoft software"

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Microsoft Corporation. Microsoft Works. 9th ed. Microsoft Corp., 2009.

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Microsoft Official Academic Course (Program). Microsoft Office 2010 with Microsoft Office 2010 evaluation software. Wiley, 2012.

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J, Young Michael, ed. Microsoft Office XP. Microsoft Press, 2001.

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(Firm), WetFeet com, ed. Microsoft. 2nd ed. WetFeet.com, 1999.

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(Firm), CompuMaster. ADVANCED MICROSOFT EXCEL TECHNIQUES. CompuMaster, 2009.

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Brewer, Donald R. Microsoft active platform sourcebook. Wiley, 1997.

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Ruby, Ralph. Microsoft works applications. Paradigm, 1991.

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Richardson, Ronny. Microsoft office essentials. Manning, 1996.

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Page, Alan. How we test software at Microsoft. Microsoft, 2009.

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Costa, Stefano. Antitrust e software: Il caso Microsoft. Carocci, 2004.

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Book chapters on the topic "Microsoft software"

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Spolsky, Joel. "Microsoft Goes Bonkers." In Joel on Software. Apress, 2004. http://dx.doi.org/10.1007/978-1-4302-0753-5_43.

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Baumeister, Regina B., Rolf B. Baumeister, and Achim Kolacki. "Installation von Microsoft Windows." In Windows Software Training. Vieweg+Teubner Verlag, 1987. http://dx.doi.org/10.1007/978-3-322-84126-1_2.

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Schwessinger, Michael, Thomas Schürmann, and Karin Süßer. "Microsoft Draw." In Vieweg Software-Trainer Word für Windows 2.0. Vieweg+Teubner Verlag, 1992. http://dx.doi.org/10.1007/978-3-322-96369-7_47.

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Schwessinger, Michael, Thomas Schürmann, and Karin Süßer. "Microsoft Graph." In Vieweg Software-Trainer Word für Windows 2.0. Vieweg+Teubner Verlag, 1992. http://dx.doi.org/10.1007/978-3-322-96369-7_48.

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Schwessinger, Michael, Thomas Schürmann, and Karin Süßer. "Microsoft WordArt." In Vieweg Software-Trainer Word für Windows 2.0. Vieweg+Teubner Verlag, 1992. http://dx.doi.org/10.1007/978-3-322-96369-7_50.

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Schwessinger, Michael, Thomas Schürmann, and Karin Süßer. "Microsoft Formel-Editor." In Vieweg Software-Trainer Word für Windows 2.0. Vieweg+Teubner Verlag, 1992. http://dx.doi.org/10.1007/978-3-322-96369-7_49.

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Spolsky, Joel. "How Microsoft Lost the API War." In Joel on Software. Apress, 2004. http://dx.doi.org/10.1007/978-1-4302-0753-5_42.

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Berg, Achim. "Auf Wolke 7 – Microsoft Windows Azure." In Software-as-a-Service. Gabler, 2010. http://dx.doi.org/10.1007/978-3-8349-8731-0_9.

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Hart-Davis, Guy. "Head in the Cloud: Experiencing Software as a Service." In Beginning Microsoft Office 2010. Apress, 2010. http://dx.doi.org/10.1007/978-1-4302-2950-6_2.

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Syrewicze, Andy, and Richard Siddaway. "Utilizing Hyper-V Checkpoints for Software Upgrades." In Pro Microsoft Hyper-V 2019. Apress, 2018. http://dx.doi.org/10.1007/978-1-4842-4116-5_7.

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Conference papers on the topic "Microsoft software"

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Herzig, Kim, Luke Ghostling, Maximilian Grothusmann, et al. "Microsoft CloudMine." In MSR '22: 19th International Conference on Mining Software Repositories. ACM, 2022. http://dx.doi.org/10.1145/3524842.3528514.

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Orsted, Martin. "Software development engineer in Microsoft." In the 22nd international conference. ACM Press, 2000. http://dx.doi.org/10.1145/337180.337445.

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Bird, Christian, Brendan Murphy, Nachiappan Nagappan, and Thomas Zimmermann. "Empirical software engineering at Microsoft Research." In the ACM 2011 conference. ACM Press, 2011. http://dx.doi.org/10.1145/1958824.1958846.

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Skaletsky, Alex, Tevi Devor, Nadav Chachmon, et al. "Dynamic program analysis of Microsoft Windows applications." In amp; Software (ISPASS 2010). IEEE, 2010. http://dx.doi.org/10.1109/ispass.2010.5452079.

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Bugde, Shilpa, Nachiappan Nagappan, Sriram Rajamani, and G. Ramalingam. "Global Software Servicing: Observational Experiences at Microsoft." In 2008 IEEE International Conference on Global Software Engineering (ICGSE). IEEE, 2008. http://dx.doi.org/10.1109/icgse.2008.18.

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Qiao, Bo, Fangkai Yang, Chuan Luo, et al. "Intelligent container reallocation at Microsoft 365." In ESEC/FSE '21: 29th ACM Joint European Software Engineering Conference and Symposium on the Foundations of Software Engineering. ACM, 2021. http://dx.doi.org/10.1145/3468264.3473936.

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Handsel-Johnson, P. L., and C. Y. Schroeder. "Creating Field Management Information Systems Using Microsoft Software." In Petroleum Computer Conference. Society of Petroleum Engineers, 1995. http://dx.doi.org/10.2118/30190-ms.

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Li, Linlin, and Liangxu Sun. "Online examination system for Microsoft Office software operations." In 2nd International Conference on Computer and Information Applications (ICCIA 2012). Atlantis Press, 2012. http://dx.doi.org/10.2991/iccia.2012.368.

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Schröder, Michael, Katja Kevic, Dan Gopstein, Brendan Murphy, and Jennifer Beckmann. "Discovering feature flag interdependencies in Microsoft office." In ESEC/FSE '22: 30th ACM Joint European Software Engineering Conference and Symposium on the Foundations of Software Engineering. ACM, 2022. http://dx.doi.org/10.1145/3540250.3558942.

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Zhang, Dongmei. "Decoding technology transfer through experiences at microsoft." In ICSE '18: 40th International Conference on Software Engineering. ACM, 2018. http://dx.doi.org/10.1145/3195546.3195553.

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Reports on the topic "Microsoft software"

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Arthur, Mary K. ScreenRecorder: A Utility for Creating Screenshot Video Using Only Original Equipment Manufacturer (OEM) Software on Microsoft Windows Systems. Defense Technical Information Center, 2015. http://dx.doi.org/10.21236/ada612941.

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Dinovitzer, Aaron. PR-214-174517-Z01 Development of Sleeve End Fillet Weld Stress Intensity Factor Calculator. Pipeline Research Council International, Inc. (PRCI), 2019. http://dx.doi.org/10.55274/r0011588.

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The objective of the project documented in the following report was to simplify the use and further demonstrate the application of the complex formulation developed for the stress intensity solutions developed in the previous project. The primary output of the project is a set of software tools (i.e. a Microsoft Excel based tool and a standalone executable software tool) that allows for the rapid calculation of the stress intensity factor solutions along with a set of sample calculations illustrating the use of the software tools. Additionally, a set of sensitivity analyses have been performed that illustrate the effect of various parameters on the SIFs.
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Hassan, Saeed, AbdulKhaliq Alshadid, Ravinder Saini, and Lujain Aldosari. Assessment of Mechanical Properties of Hybrid PVES Elastomeric Material in Comparison to its Parent Materials - A Systemic Review. INPLASY - International Platform of Registered Systematic Review and Meta-analysis Protocols, 2023. http://dx.doi.org/10.37766/inplasy2023.3.0043.

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Review question / Objective: Does the hybrid elastomeric impression materials have better elastic memory, tensile strength, hydrophilicity, and dimensional stability as compared to polyether and poly vinyl siloxane. Condition being studied: Dimensional Stability, Tear Strength, yield strength, wettability and other properties of impression materials. Information sources: Original studies from corresponding databases were exported using Harzing’s Publish or Perish (Tamra Software Research Ltd) Widows GUI v8.8 edition with MeSH keywords. Data was exported to MS Excel 2021 edition (Microsoft Corporation, Washington USA).
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Idárraga-Ortiz, Sergio Alejandro, Martha Cervantes Díaz, and Viviana Marcela Vargas Leal. Informe métrico USTA Bucaramanga 2021-2022. Universidad Santo Tomás, 2022. http://dx.doi.org/10.15332/li.ivt.2022.000221.

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Con el apoyo del Centro de Recursos para el Aprendizaje y la Investigación CRAI-USTA y la Dirección de Investigación e Innovación, se realizó un ejercicio de vigilancia tecnológica, de acuerdo con la metodología propuesta por la norma AENOR UNE 166066:2018, con el fin de establecer la producción científica de la Universidad Santo Tomás, seccional Bucaramanga. Los factores críticos de vigilancia definidos para este ejercicio fueron las publicaciones científicas desarrolladas por los investigadores con afiliación con la “Universidad Santo Tomás, Bucaramanga”. El periodo de observación se estableció entre 2021 – 2022. Para su desarrollo se emplearon las siguientes herramientas de consulta: • Bases de datos bibliográficas de Scopus(Elsevier, B.V., 2022) y de la Core Collection de la plataforma Web of Science (Clarivate, 2022). • Google Scholar a través del programa Publish or Perish (Versión 8, Tarma Software y Anne-Wil Harzing). • Repositorio institucional de la Universidad Santo Tomás para la consulta relacionada con la formación profesional medida a través de los trabajos de grado registrados. Los datos obtenidos fueron procesados mediante • Hoja de cálculo Microsoft Excel (Microsoft Office 365, 2022). • Programa especializado de minería de textos VantagePoint (Licencia Académica 15.0, Search Technology). • Programa de visualización de información VOSviewer versión 1.6.18 (Van Eck y Waltman, 2022).
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Fu, Gongkang, and Gabriel Bryk. BrM Quantity-Based Bridge Element Deterioration/Improvement Modeling and Software Tools. Illinois Center for Transportation, 2024. http://dx.doi.org/10.36501/0197-9191/24-005.

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This study reviewed the state of the art and practice in bridge element deterioration / improvement modeling. It also developed a new and practical method for such modeling using element quantities in BrM inspection records along with bridge age. For reliable forecasting, this method uses these quantities directly to determine transition probability matrices (TPMs). The example TPMs were found age-dependent for the do-nothing case. Results show that this approach is effective in forecasting the bridge element life. Condition improvement TPMs were also similarly derived from the quantity evolution for consistency. Examples of renewal construction work are deck overlay of micro-silica concrete, steel beam repainting, bridge cleaning, etc. Two computer software programs in Microsoft Excel were developed to obtain TPMs for do-nothing deterioration and condition improvement. Bridge owners may use the tools to generate TPMs for any element whose inspection records are provided. As a result, TPMs can be continuously updated whenever more inspections are performed and their records are included as input to the software programs. In addition, the software tools are transparent for the user to perform expert elicitation, especially when the inspection records are questionable or unavailable. Such activity can be informatively guided by the results from the software, as illustrated by two application examples in the delivered programs. This new concept and associated tools may be applied by other bridge owners using the BrM system. Two application examples for elements 12 and 107 in the programs can be readily transplanted to other states as a starting point for application of the research products herein. They show that the age-dependent TPM is able to realistically replicate deterioration for the do-nothing case, particularly the behavior of faster deterioration while aging. They also demonstrate that TPMs for different renewal construction work are able to contrast their effectiveness, such as micro-silica overlays vs. sealing for a concrete deck.
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Correa-Gómez, Ismael Eduardo. Cálculo de las medidas de tendencia central. Ediciones Universidad Cooperativa de Colombia, 2023. http://dx.doi.org/10.16925/gcgp.117.

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La presente guía práctica sobre medidas de tendencia central (media, moda y mediana), perteneciente a la rama de la estadística descriptiva, pretende ilustrar al estudiante la manera de calcularlas, mediante el desarrollo de tres métodos: 1) manualmente, 2) en la hoja de cálculo Microsoft Excel y 3) por medio del software estadístico InfoStat. Cada resultado de la medida utilizada estará acompañado de un análisis, lo que permitirá su comprensión. Encontrará también conceptos básicos de estadística que aportarán al desarrollo de la competencia en cuanto al descripción de los datos. La guía está desarrollada de forma procedimental en donde cada uno de los tres métodos conducirán al estudiante a obtener el resultado de estas medidas. Como el primer método explicado es de forma manual, se contemplan las fórmulas utilizadas para el cálculo. Finalmente, encontrará una conclusión general y un ejercicio de práctica.
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Dempsey, Terri L. Handling the Qualitative Side of Mixed Methods Research: A Multisite, Team-Based High School Education Evaluation Study. RTI Press, 2018. http://dx.doi.org/10.3768/rtipress.2018.mr.0039.1809.

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Attention to mixed methods studies research has increased in recent years, particularly among funding agencies that increasingly require a mixed methods approach for program evaluation. At the same time, researchers operating within large-scale, rapid-turnaround research projects are faced with the reality that collection and analysis of large amounts of qualitative data typically require an intense amount of project resources and time. However, practical examples of efficiently collecting and handling high-quality qualitative data within these studies are limited. More examples are also needed of procedures for integrating the qualitative and quantitative strands of a study from design to interpretation in ways that can facilitate efficiencies. This paper provides a detailed description of the strategies used to collect and analyze qualitative data in what the research team believed to be an efficient, high-quality way within a team-based mixed methods evaluation study of science, technology, engineering, and math (STEM) high-school education. The research team employed an iterative approach to qualitative data analysis that combined matrix analyses with Microsoft Excel and the qualitative data analysis software program ATLAS.ti. This approach yielded a number of practical benefits. Selected preliminary results illustrate how this approach can simplify analysis and facilitate data integration.
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8

López Hernández, Lina Shirley. Sistemas de ecuaciones: método de Gauss. Ediciones Universidad Cooperativa de Colombia, 2022. http://dx.doi.org/10.16925/gcnc.26.

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Esta nota de clase se desarrolla en el marco del curso de álgebra lineal. En esta se resolverá un ejercicio de contexto, modelado por un sistema de ecuaciones mxn y resuelto por el método de Gauss. Debido al impacto negativo que tuvo la pandemia en los procesos de enseñanza-aprendizaje en todos los niveles educativos, se hace necesario hacer énfasis en conceptos previos, tales como: ecuación, ecuaciones lineales, modelación de ecuaciones lineales, entre otros. Lo anterior con el fin de que el estudiante logre establecer una ilación entre el concepto de ecuación y la resolución de sistemas por el método planteado. El procedimiento matemático se evidenciará paso a paso, se validará en una segunda nota, usando el método de determinantes y este a su vez se validará usando el programa de Microsoft Excel. Se toma como último validador este programa debido a que es una herramienta de fácil uso y que se encuentra al alcance de los estudiantes. Sumado a que es un software de uso común en el ámbito laboral, independientemente del campo de acción. Al final de la nota, se proponen una serie de ejercicios de contexto para que el estudiante afiance los conceptos, los procedimientos, el análisis y la interpretación de la información. Dado que el procedimiento matemático es casi un paso a paso, la interpretación de la información es inherente a cada situación.
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9

Abel, Jaison, Ernst Berndt, and Alan White. Price Indexes for Microsoft's Personal Computer Software Products. National Bureau of Economic Research, 2003. http://dx.doi.org/10.3386/w9966.

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10

Rozo, Nathaly. Morbilidad materna extrema en Colombia: un reto que continúa vigente. Instituto Nacional de Salud, 2020. http://dx.doi.org/10.33610/01229907.2020v2n3a4.

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Introducción: la morbilidad materna extrema (MME) desde la perspectiva de la vigilancia y de la salud pública otorga la posibilidad de la identificación temprana de la complicación severa o grave y que pone en riesgo la vida del binomio madre-hijo, para garantizar la atención adecuada y oportuna que conlleve a la reducción de la probabilidad de desenlaces fatales. Materiales y métodos: se realizó un análisis descriptivo retrospectivo de corte transversal, se calculó la razón de MME, el índice de letalidad y de MPNT y la oportunidad de la notificación para el 2019, junto con las tendencias de los últimos cinco años. Para el análisis de la información se establecieron frecuencias absolutas y relativas. El software utilizado para el análisis de los datos fue Microsoft Excel. Para la estimación de las tendencias se utilizó Joinpoint versión 4.7, teniendo en cuenta que las diferencias significativas se establecieron con p&lt;0,05, para un nivel de significación del 95 %. Resultados: la razón de MME para el 2019 fue de 37,1 casos por cada 1 000 nacidos vivos; 14 entidades territoriales se encontraron por encima del comportamiento nacional. La tendencia de la razón de morbilidad materna extrema para Colombia 2015 a 2019 muestra un comportamiento hacia el aumento. Conclusiones: el comportamiento de la MME en Colombia pone de manifiesto el fortalecimiento de la vigilancia del evento en el país y la aceptabilidad de los actores del sistema para participar de forma activa en la vigilancia.
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