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1

Perkovich, Dave. Microsoft MCSE readiness review: Exam 70-098, implementing and supporting Microsoft Windows 98. Redmond, Wash: Microsoft Press, 1999.

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2

Faure à Revin, petite histoire familiale et industrielle. Paris: Harmattan, 2011.

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3

Faure, Benoit. Faure à Revin, petite histoire familiale et industrielle. Paris: Harmattan, 2011.

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4

MCSE Microsoft Windows 2000 network infrastructure readiness review : exam 70-216. Redmond, Wash: Microsoft Press, 2000.

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5

Office, General Accounting. Medicare: Internal controls over electronic claims for anesthesia services are inadequate : report to the Acting Administrator, Health Care Financing Administration, Department of Health and Human Services. Washington, D.C: The Office, 1989.

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6

Fernandez-Serra, M. V., and X. Blase. Electronic and transport properties of doped silicon nanowires. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533046.013.2.

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This article describes a number of theoretical works and methods dedicated to the analysis of the atomic and electronic structure, doping properties and transport characteristics of silicon nanowires (SiNWs). The goal is to show how quantum confinement and dimensionality effects can intrinsically change the behavior of SiNWs as compared to their bulk and thin film counterparts. The article begins with a review of work done on surface reconstructions and electronic structure of SiNWs as a function of system doping and passivation. It then considers the problem of doping in SiNWs as well as the methodology typically used to analyze the problems of transport. It also discusses the electronic transport properties of SiNWs as a function of dopant type, along with their chemical functionalization. Finally, it demonstrates how surface dangling-bond defects trap the impurities in SiNWs and neutralize them.
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7

McGuiness, C. L., R. K. Smith, M. E. Anderson, P. S. Weiss, and D. L. Allara. Nanolithography using molecular films and processing. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533060.013.23.

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This article focuses on the use of molecular films as building blocks for nanolithography. More specifically, it reviews efforts aimed at utilizing organic molecular assemblies in overcoming the limitations of lithography, including self-patterning and directed patterning. It considers the methods of patterning self-assembled organic monolayer films through soft-lithographic methods such as microcontact printing and nanoimprint lithography, through direct ‘write’ or ‘machine’ processes with a nanometer-sized tip and through exposure to electron or photon beams. It also discusses efforts to pattern the organic assemblies via the physicochemical self-assembling interactions, including patterning via phase separation of chemically different molecules and insertion of guest adsorbates into host matrices. Furthermore, it examines the efforts that have been made to couple patterned molecular assemblies with inorganic thin-film growth methods to form spatially constrained, three-dimensional thin films. Finally, it describes a hybrid self-assembly/conventional lithography (i.e. molecular rulers) approach to forming nanostructures.
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8

MCDST Exam Review. Lulu.com, 2007.

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9

Netzer, Falko P., and Claudine Noguera. Oxide Thin Films and Nanostructures. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780198834618.001.0001.

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Nanostructured oxide materials ultra-thin films, nanoparticles and other nanometer-scale objects play prominent roles in many aspects of our every-day life, in nature and in technological applications, among which is the all-oxide electronics of tomorrow. Due to their reduced dimensions and dimensionality, they strongly interact with their environment gaseous atmosphere, water or support. Their novel physical and chemical properties are the subject of this book from both a fundamental and an applied perspective. It reviews and illustrates the various methodologies for their growth, fabrication, experimental and theoretical characterization. The role of key parameters such as film thickness, nanoparticle size and support interactions in driving their fundamental properties is underlined. At the ultimate thickness limit, two-dimensional oxide materials are generated, whose functionalities and potential applications are described. The emerging field of cation mixing is mentioned, which opens new avenues for engineering many oxide properties, as witnessed by natural oxide nanomaterials such as clay minerals, which, beyond their role at the Earth surface, are now widely used in a whole range of human activities. Oxide nanomaterials are involved in many interdisciplinary fields of advanced nanotechnologies: catalysis, photocatalysis, solar energy materials, fuel cells, corrosion protection, and biotechnological applications are amongst the areas where they are making an impact; prototypical examples are outlined. A cautious glimpse into future developments of scientific activity is finally ventured to round off the treatise.
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10

Microsoft Corporation. MCSE Microsoft Windows 2000 Professional Readiness Review, Exam 70-210. Microsoft Press, 2000.

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11

MCSE Microsoft Windows XP Professional Readiness Review: Exam 70 270 (With CD-ROM). Microsoft Press, 2001.

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12

Russell, Cristel Antonia, Dale W. Russell, and Joel W. Grube. Substance Use and the Media. Edited by Kenneth J. Sher. Oxford University Press, 2015. http://dx.doi.org/10.1093/oxfordhb/9780199381678.013.19.

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This chapter reviews the research relating to substance use portrayals and marketing in media. Research suggests that alcohol and tobacco marketing through traditional advertising, but also through product placements in film and television and other new forms of promotion, are prevalent. Youth may be especially exposed to these marketing efforts. New interactive electronic media, including social media, mobile phones, and games are increasingly important marketing tools. Overall, there is good evidence that exposure to tobacco marketing and portrayals are related to smoking behaviors, especially among youth. Evidence regarding exposure to alcohol marketing and portrayals also indicates that it is correlated with drinking behaviors among youth. Less is known about the effects of exposure to other substance use portrayals or about new media. There is some evidence that social marketing through media campaigns or entertainment media may have socially desirable effects. Future research should focus on emerging media and marketing techniques.
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13

Weinel, Jonathan. Inner Sound. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780190671181.001.0001.

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Inner Sound explores how altered states of consciousness have shaped the design of electronic music and audio-visual media. The book begins by discussing consciousness, and how this may change during states such as dreaming, psychedelic experience, meditation, and trance. Next, a variety of shamanic traditions are reviewed, in order to explore how indigenous societies have reflected visionary experiences through visual art and music. This provides the necessary background from which to consider how analogue and digital audio technologies enable specific capabilities for representing or inducing altered states of consciousness in psychedelic rock, electronic dance music, and electroacoustic music. Developing the discussion to consider sound in the context of audio-visual media, the role of altered states of consciousness in films, visual music, VJ performances, interactive video games, and virtual reality applications is also discussed. Through the analysis of these examples, the author uncovers common mechanisms, and ultimately proposes a conceptual model for ‘Altered States of Consciousness Simulations’. This theoretical model describes how sound can be used to simulate various subjective states of consciousness from a first-person perspective, in an interactive context. Throughout the book, the ethical issues regarding altered states of consciousness in electronic music and audio-visual media are also explored, ultimately allowing the reader to consider not only the design of Altered States of Consciousness Simulations, but also the implications of their use for digital society. In this way, Inner Sound explores the limits of technology for representing and manipulating consciousness, at the frontiers of electronic music and art.
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14

Microsoft Corporation. MCSA/MCSE Managing a Microsoft Windows 2000 Network Environment Readiness Review; Exam 70-218. Microsoft Press, 2002.

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15

Corporation, Microsoft, ed. MCSE readiness review. Redmond, Wash: Microsoft, 2000.

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16

Dulaney, Emmett, and MeasureUp Inc. MCSE Designing a Microsoft Windows 2000 Network Infrastructure Readiness Review; Exam 70-221. Microsoft Press, 2001.

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17

Spealman, Jill, and MeasureUp Inc. MCSE Designing a Microsoft Windows 2000 Directory Services Infrastructure Readiness Review; Exam 70-219. Microsoft Press, 2001.

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18

Blunt, MO, A. Stannard, E. Pauliac-Vaujour, CP Martin, Ioan Vancea, Milovan Suvakov, Uwe Thiele, Bosiljka Tadic, and P. Moriarty. Patterns and pathways in nanoparticle self-organization. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533046.013.8.

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This article reviews relatively recent forms of self-assembly and self-organization that have demonstrated particular potential for the assembly of nanostructured matter, namely biorecognition and solvent-mediated dynamics. It first considers the key features of self-assembled and self-organized nanoparticle arrays, focusing on the self-assembly of nanoparticle superlattices, the use of biorecognition for nanoparticle assembly, and self-organizing nanoparticles. It then describes the mechanisms and pathways for charge transport in nanoparticle assemblies, with particular emphasis on the relationship between the current–voltage characteristics and the topology of the lattice. It also discusses single-electron conduction in nanoparticle films as well as pattern formation and self-organization in dewetting nanofluids.
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19

Perkovich, Dave, and Microsoft Corporation. MCSE Microsoft(r) Windows(r) 2000 Network Infrastructure Readiness Review; Exam 70-216. Microsoft Press, 2000.

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20

Microsoft Corporation. MCSE Readiness Review: Microsoft(r) Windows(r) 2000 Core Exam Set. Microsoft Press, 2001.

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