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How can you improve the speed when you query the large table?
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We can improve the speed by creating the index on necessary fields.
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100 means 100 bps (bits per second). This is the data transfer speed for cables.
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Friday, March 28, 2008
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TwistedTechie
Monday, October 06, 2008 4:57 AM
It should be 100Mbps not 100bps.
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no-one
Wednesday, July 02, 2008 6:57 AM
That is not correct
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LINQ defines standard query operators that allow code written in LINQ-enabled languages to filter, enumerate, and create projections of several types of collections using the same syntax. Such collections may include arrays, enumerable classes, XML, datasets from relational databases, and third party data sources. The LINQ project uses features of version 2.0 of the .NET Framework, new LINQ-related assemblies, and extensions to the C# and Visual Basic .NET languages. Microsoft has distributed a preview release of LINQ, consisting of those libraries and compilers for C# 3.0 and Visual Basic 9. Other languages, such as F# and Nemerle, have also announced preliminary support.
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Friday, October 19, 2007
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Robert
Saturday, July 26, 2008 9:09 AM
Here is a good collection of .Net 3.0 Interview Questions

http://www.oopsconcepts.com/Net+3+Interview+Questions+and+Answers
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A database index is a data structure that improves the speed of operations in a table. Indices can be created using one or more columns, providing the basis for both rapid random lookups and efficient ordering of access to records. The disk space required to store the index is typically less than the storage of the table (since indices usually contain only the key-fields according to which the table is to be arranged, and excludes all the other details in the table), yielding the possibility to store indices into memory from tables that would not fit into it. In a relational databasean index is a copy of part of a table. Some databases extend the power of indexing by allowing indices to be created on functions or expressions. For example, an index could be created on upper(last_name), which would only store the uppercase versions of the last_name field in the index. Another option sometimes supported is the use of "filtered" indices, where index entries are created only for those records that satisfy some conditional expression. A further aspect of flexibility is to permit indexing on user-defined functions, as well as expressions formed from an assortment of built-in functions.
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The .NET Framework 3.5 provides the foundation for building connected and appealing applications, productively, on a wide variety of systems from the device to the data center.

Microsoft continues to support developers using the .NET Framework platform by providing support for applications built in previous versions to the 3.5 release, so existing applications built for .NET Framework 2.0 or .NET Framework 3.0 will continue to work.

The .NET Framework 3.5 adds new features in several major technology areas:
  • Deep integration of Language Integrated Query (LINQ) and data awareness.
  • Support for Web 2.0 AJAX-style applications and services in ASP.NET and WCF.
  • Full tooling support for WF, Windows Communication Foundation (WCF), and Windows Presentation Foundation (WPF), including the new workflow-enabled services technology.
  • New classes in the base class library (BCL) for the .NET Framework 3.5 address the most common customer requests.
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Tuesday, June 10, 2008
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In n-tier architecture the entire application is divided in several pieces. These pieces can be logical or physical. Each piece performs a specific task such as displaying user interface or data access. There can be any number of tiers or layers of such pieces. Hence, the name n-tier (Note that many times the terms tier and layer are used interchangeably). However, most commonly applications have 3 distinct tiers or layers. They are:
  • Presentation Layer
  • Business Logic Layer
  • Data Access Layer
As you can guess, presentation layer is nothing but a piece of software that deals with user interface of your application. Displaying data to the end user and allow them to interface with it is the core functionality of this layer.

In most of the cases the data entered by the end user needs some kind of validation or further processing. This is the responsibility of Business Logic Layer.

Finally, your application data needs to be stored and retrieved in some data store (RDBMS, XML etc.). This task is handled by Data Access Layer.

In short, the process works like this:

  • User requests for some application data.
  • The data access layer retrieves the data and is forwarded to the presentation layer via business logic layer. Sometimes data access layer gives this data directly to presentation layer.
  • Presentation layer receives the data to be displayed via business logic layer.
  • The user changes the data and initiates the appropriate action (such as insert, or update).
  • The business logic layer validates the data submitted by the user.
  • If the data is valid it is handed over to data access layer for updating into the database.
Advantages of N-Tier ArchitectureAt first glance this division of tasks may seem to be unnecessary. However, it gives following benefits:
  • The applications gets divided in logically isolated pieces reducing tight coupling between the UI, business processes and database.
  • Change in the underlying database and data access methods do not have any effect on the presentation layer or client application.
  • Client application no longer has SQL statements embedded in it. This makes it de-coupled from rest of the application.
  • Table and column names can be effectively eliminated from the client-side code.
  • The client application is unaware from where data comes (location transparency).
  • It becomes easier to modify or extend your application, without breaking or recompiling the client-side code.
The downside of n-tier architecture is that you need to create many isolated classes and pieces of software. However, benefits of n-tier applications will far outweigh its disadvantage.
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