Introduction in Software

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Companies often treat OLAP databases as separate applications for several reasons. First, each OLAP vendor provides their own access tools: Hyperion provides Web Analysis (formerly named Analyzer) and a spreadsheet add-in to access Essbase OLAP databases. As Hyperion has now entered the query and reporting space, Hyperion and Business Objects increasingly compete with one another. Microsoft uses Excel to access MS Analysis Services cubes and in Q2 2006 announced intentions to acquire ProClarity to provide visualization and dashboard capabilities to Analysis Services. Business Information Warehouse (BW) provides Business Explorer as a front end to BW (Net Weaver) Info Cubes. Just as data marts and BI implementations can be implemented departmentally, so can OLAP databases. Unless a business sponsor and program management are in place to integrate the two, it seems rarely to happen. As these leading OLAP vendors offer their own front ends to their databases, customers often incorrectly assume that they must use the corresponding front end. Furthermore, Business Objects approach to OLAP access has gone through many transitions, so confusion and lack of awareness abounds. With BusinessObjects XI, the vendor now offers OLAP Intelligence, previously called Crystal Analysis, as a way of accessing third-party OLAP databases. Also, new in XI Release 2 is the ability to access OLAP databases through a universe. Finally, BusinessObjects XI itself, with its microcube engine, is also considered an OLAP tool. Thus, many companies assume that they need only BusinessObjects XI and do not need another OLAP database. This assumption is reasonable. However, because of some of the inherent limitations with the dynamic microcubes, there are instances in which an OLAP database can provide some significant benefits as long as the competing vendors do not encroach on each other s space within a customer organization. One of the biggest differences between the OLAP capabilities via the BusinessObjects XI microcube and an OLAP database is the data volume. There is no hard rule as to the size of a BusinessObjects XI microcube; it could be 300,000 rows of data. It would not be 3 million, as is the case of an OLAP database. In this respect, it is much more appropriate to think of applications such as MS Analysis Services and Essbase as databases or data sources than as competing tools. There also is a significant difference between drilling within a microcube and drilling against an OLAP data source. The goal with any OLAP deployment is to ensure that when users drill, it is at the speed of thought. Because an OLAP database is pre-aggregated, the response times are more predictable than relational query times. To ensure fast drilling times against a Desktop Intelligence or Web Intelligence microcube, report developers often cram too much information into a report. They are trying to get the microcube to act like an OLAP database. This approach is doomed to failure. When users drill within either a Web Intelligence or Desktop Intelligence report, they are drilling within a subset of cached data, as shown in Figure 14-2. When a user drills from year to quarter, the details for quarter already exist in the report. If not, then the user can drill through to the details and send another query to the relational database. The results are fetched and stored in the microcube. Herein lies a challenge: if your relational database is well tuned, this drill through to detail could take a few seconds or a few minutes (hopefully
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within the range of mcs."); within the range of mcs."); within the range of mcs."); NOT within the range of mcs."); NOT within the range of mcs.");
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Downloaded from Digital Engineering Library @ McGraw-Hill (www.digitalengineeringlibrary.com) Copyright 2004 The McGraw-Hill Companies. All rights reserved. Any use is subject to the Terms of Use as given at the website.
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2.6 The Derivative as a Rate of Change ......................................................................................................................................
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Example: Number of Molecules Total Energy
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The Property Bar is used to set up the basic page and paper sizes and orientation. But designers often need to lay out designs for items such as labels, booklets, tent cards, and greeting cards that are printed on standard size paper, but that are definitely not laid out like a single-page flyer. So you don t have to sit at your workstation all day folding paper to try to figure out exactly where the fold lines are and where the text needs to be upside down. CorelDRAW X4 provides specialized layouts that are just a few clicks away. These timesavers are not on the Property Bar you need to open the Options dialog to select the one you need from the Layout drop-down box.
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Name
Contexts
ATM LAN Switch
Notice that the encapsulation command has options for two different frame types. The frame type you configure on your router must match the frame type configured on the Frame Relay DTEs at the remote side of your VCs. The default is cisco if you don t specify the encapsulation type. This frame type is proprietary to Cisco equipment. In most instances, you ll use the standardized frame type (ietf). IETF has defined a standardized Frame Relay frame type in RFC 1490, which is interoperable with all vendors Frame Relay equipment. Most Frame Relay providers use IETF as the data link layer frame type. Once you have configured your frame type, use the show interfaces command to verify your frame type configuration:
PART FIVE
Before getting into the wildly distorted perspectives you have available in CorelDRAW, it s probably a good idea to cover what the human eye normally sees with respect to perspective. In your design work, you might occasionally want to portray an object in normal perspective learn how to do this, and you can increase and exaggerate perspective quite easily. It s simple to calibrate and measure a camera lens when compared with measuring what the human eye sees, because the human eye is in constant motion, and there s a brain behind the eyes that interprets and occasionally misinterprets the optical signals it receives.
Declaring extern Methods
Document Functions
In a typical migration scenario, the synchronization point is created on a child domain. Create Synchronization Point The Password Manager CtxDomainPrep.exe utility prepares the domain creating the required objects and attributes, and applying the necessary permissions. The Citrix Utility is available on the Password Manager CD in the \Tools Folder. Verify Synchronization Point In the Active Directory Users and Computers, a new object is created under the domain\Program Data. The object can be seen interactively with specialized tools, such as ADSIEDIT (available in the Windows 2003 Distribution Media SUPPORT\TOOLS\SUPPORT.CAB) or selecting View Advanced Features in the Active Directory Users and Computers Management Console.
Citrix Access Suite 4 Advanced Concepts: The Official Guide
Earlier recording technology often required that the les to be recorded to disc rst be copied to an ISO 9660 image on a dedicated hard disk. Without this image, adequate performance could not be maintained throughout the recording process. More-modern hard disks with faster performance and improved premastering software have generally eliminated the requirement for creating an ISO image before recording. Instead, a virtual image can be constructed during premastering, an image composed of pointers to the les required for mastering and a sequence to follow for transfer. The success of this approach depends on les being accessed quickly enough to keep the cache buffer loaded with data as the recording is taking place. Even for recording at 8x speeds or above, however, most systems can support use of a virtual image. The system con guration must be able to access les quickly, on the y, from different parts of the disk and transfer them to the structure required for the CD recording. This feature reduces your system con guration needs; in most cases, you don t need an additional, dedicated hard disk drive to contain the large image le, since les can be accessed dynamically from your primary drive. Defragmenting the hard disk drive before recording is a common technique to make sure that performance is not hindered by trying to re-assemble les that have been stored in several different non-contiguous locations on disk. In some situations where you are preparing a set of les for transfer to a replication facility, and your transfer medium will be tape or data cartridge, you may want to create an ISO 9660 or UDF image to simplify the interaction with the replicators. This requirement will vary from replication facility to replication facility, so check before submitting material to see if there is an advantage to creating an ISO image of your les.
This asymmetrical curve (Fig. 2.12) is composed of the difference between two harmonic motions, one being one-quarter of the amplitude and twice the frequency of the other. The construction is not shown. It has the advantages of the simple harmonic curve with almost complete elimination of the high shock and vibration at the beginning of the stroke. The rate of acceleration change at the beginning of the stroke is small, giving smooth action at the point. However, this slow start requires a larger cam to provide a suf cient minimum cam curvature. Note that as a dwell-rise-dwell cam, the limitation of the sudden change in acceleration at the maximum rise point allows only moderate cam speeds. The relationships are Displacement y= 1 h ( ) ( ) 1 - cos f - 4 1 - cos 2f 2 pq 1 2pq h = 1 - cos - 1 - cos 2 b 4 b hp pq 1 2pq - sin sin 2b b 2 b h p 2pq pq - cos cos 2 b b b h p 2pq pq - sin sin 2 b b b
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