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Members (such as service accounts and cluster service accounts) have local administrative access to a server via this group. In other words, members can install software, create folders and shares, restrict access to local objects, start and stop services, perform machine-speci c activity, and so on. This group lifts dependency on the Domain Admins group, which is restricted from having interactive logon access to servers. Members have local administrative access to a workstation via this group. In other words, members can install software, create folders and shares, restrict access to local objects, start and stop services, perform machine-speci c activity, and so on. This group lifts dependency on the Domain Admins group, which is restricted from having interactive logon access to servers. Members can only create/modify/delete selected objects in their OU and child OUs. A domain can have multiple OUs and, thus, multiple <OU Level> Admin groups. For example, MGA Admins can create/modify/delete objects in the BCC OU and its child OUs. Members can only create/modify/delete speci c objects in speci c OUs. For example, MGA HelpDesk can create/modify/delete users in an OU only. Members (other <OU Level> HelpDesks) can reset passwords and enable/disable user objects in other tier-level OUs if needed.
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IE7 now makes it possible to select and store more than 50 different home pages. The ability to store multiple home pages is a new feature of IE7. This new capability allows you to save numerous home pages to your browser, which can then be accessed with the click of a single button. This feature can be quite a timesaver if you have a number of Web sites that you use on a regular basis. You can include all of your most frequently visited sites as home pages so that you can open them all quickly and easily at a later date. Before you can take full advantage of this new feature, you must first choose which sites you want to include as your home pages. Then you can begin adding new home pages. To create a new home page
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* Figure 1.7 Directions of S,opt, in and out, S11 and S11 in the schematic for raw device testing.
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processing of inorganics as an alternative to LTPS is progressing. However, even these advances have limitations, and therefore, one of the most important and most challenging applications for the proposed macroelectronics technology remains unsolved. TFT technologies able to reach the level of RF Performance needed to support sensor-based consumer electronics and electronically scanned antennas for government communication and radar systems, must be found. Many next-generation radar systems require very large, electrically scanned antenna arrays, which are exible and conformal.49 Antenna sizes of up to 5000 square feet or more are needed for some applications. A extremely low weight is critical for airborne or space-borne applications, and a low cost is required to attain system affordability goals. The goal is RF circuit performance at over 500 MHz or even several gigahertz if possible. Flexible plastic antennas incorporating active circuitry at each element of the array (to include low-noise ampli ers, RF switches, active RF combiners, and digital control circuits) are ideal candidates to meet these requirements. The challenges here include not only gigahertz-type switching, but also low noise gure operation for adequate ampli er operation. In addition, an ideal solution is a transceiver, which requires that the TFT technology provide at least milliwatt levels of output power at an ef ciency of more than 10% to achieve practical solutions. The challenges for application of macroelectronic TFTs for RF are signi cant and the available technical solutions are limited.3 As described in Section 1.3.1, high fT devices required for RF can be most effectively achieved simply by reduction of the channel length. Unfortunately, production of such short channels is both expensive and dif cult, as is well known from microelectronics experience. This is even more so for macroelectronic devices because it is dif cult to generate such small features reproducibly over the large substrates desired for production. Furthermore, the large substrates may be glass or various plastics, which tend to have rougher and undulating surfaces (compared with semiconductor wafers), making it even more dif cult to control small feature sizes. However, the bene t of smaller geometries is signi cant. Thus, if all other factors were the same, a lithographically de ned device at 1 m would have a theoretical fT 400 times higher than the corresponding ink-jet-fabricated device with a 20 m channel. For high-performance TFTs, an improvement of several orders of magnitude over existing technology can be expected by simultaneously increasing mobility and decreasing device dimensions. For example, using values consistent with modest semiconductor technology, for mobility (>100 cm2/V-s) and channel length (1 2 m), Figure 1.9 indicates that the theoretical maximum fT is in the 5 15 GHz range. Real devices, of course, have parasitic elements that degrade the performance and practical circuits do not operate at the peak performance of an individual device. Therefore, a realistic expectation for a macroelectronics TFT RF circuit is probably about 1 GHz, possibly as high as 3 GHz. This is, obviously, very mediocre when compared with hundreds of gigahertz achieved by microelectronic devices and circuits.
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SQL Server 2005 indexes may have several options, including uniqueness, space allocation, and performance options.
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For a fully cognitive radio, the baseband processing also has to be adaptive. This can be most easily achieved by implementing the baseband processing as software on a Digital Signal Processor (DSP). Consequently, fully cognitive radio has also been called software radio by many of its proponents.
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For a long time, the XFree86 software package was the only X Windows package available for Linux. As its name implies, it s a free, open-source version of the X Windows software intended for the x86 computer platform. Unfortunately, XFree86 is notorious for being extremely hard to configure and get working properly. It uses a cryptic configuration file to define the input and output device settings on the system, which is often confusing to follow. Having the wrong values set for a device could render your workstation useless! However, because XFree86 was once the only way to produce graphical windows on Linux PCs, it was necessary to learn how to use it. As time progressed, several attempts to automate the XFree86 configuration were made. Many Linux distributions used a user-interactive method of automatically generating the XFree86 configuration file. Several dialog boxes would appear during installation, prompting the installer to select the video card and monitor setup from a list. The responses were then used to generate a configuration file. There were also attempts at trying to automatically detect video card, monitor, keyboard, and mouse settings. Some of these attempts were better than others. These efforts, though, did eventually lead to another X Windows software package.
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Abecker, A., Bernardi, A., Maus, H., Sintek, M. and Wenzel, C. (2000) Information supply for business processes: coupling work ow with document analysis and information retrieval. Knowledge Based Systems, 13(5): 271 284. Ackerman, M.S., McDonald, D., Lutters, W. and Marumatsu, J. (1999) Recommenders for expertise management. In Workshop on Recommender Systems: Algorithms and Evaluation, SIGIR 99. Ahmed, K. and Benbrahim, M. (1995) Text summarisation: the role of lexical cohesion analysis. New Review of Document and Text Management, 1: 321 335. Alexaki, S., Christophides, V., Karvounarakis, G., Plexousakis, D. and Tolle, K. (2000) The RDF Suite: Managing Voluminous RDF Description Bases. Technical report, Institute of Computer Science, FORTH, Heraklion, Greece. See http://www.ics.forth.gr/proj/isst/rdf/rssdb/rdfsuite.pdf. Ankolenkar, A., Burstein, M., Hobbs, J.R., Lassila, O., Martin, D.L., McDermott, D., McIlraith, S.A., Narayanan, S., Paolucci, M., Payne, T.R. and Sycara, K. (2002), DAML-S: web service description for the semantic web, In The First International Semantic Web Conference (ISWC), June. Arprez, J.C., Corcho, O., Fernandez-Lopez, M. and Gomez-Perez, A. (2001) WebODE: a scalable workbench for ontological engineering. In Proceedings of the First International Conference on Knowledge Capture (K-CAP) October 21 23, Victoria, BC, Canada. Auer, T. (2000) Wissens-Sicherung im Kontext mit der Personal Entwicklung. Schweizer Arbeitgeber, 10. Banerjee, J., Kim, W., Kim, H.-J. and Korth, H.F. (1987) Semantics and implementation of schema evolution in object-oriented databases. SIGMOD Record. In Proceedings of the Conference on Management of Data, Vol. 16(3), pp. 311 322. Bates, M.J. (1986) An exploratory paradigm for online information retrieval. In Brookes, B.C. (ed.), Intelligent Information Systems for the Information Society. Amsterdam: North-Holland. Becerra-Fernandez, I. (2000) Facilitating the online search of experts at NASA using expert seeker people- nder. In Reimer, U. (ed.), 3rd International Conference on Practical Aspects of Knowledge Management PAKM 2000. Bechhofer, S., Horrocks, I., Patel-Schneider, P.F. and Tessaris, S. (1999) A proposal for
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