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Tuesday, 17 July 2012

How Search Engines Works

What is search Engine?
Basically, a search engine is a software program that searches for sites based on the words that you designate as search terms. Search engines look through their own databases of information in order to find what it is that you are looking for.
When people use the term search engine in relation to the Web, they are usually referring to the actual search forms that searches through databases of HTML documents, initially gathered by a robot.

There are basically three types of search engines: 

1. powered by robots (called crawlers; ants or spiders)
2. powered by human submissions
3. hybrid of above two



Crawler-based search engines are those that use automated software agents (called crawlers) that visit a Web site, read the information on the actual site, read the site's meta tags and also follow the links that the site connects to performing indexing on all linked Web sites as well. The crawler returns all that information back to a central depository, where the data is indexed. The crawler will periodically return to the sites to check for any information that has changed. The frequency with which this happens is determined by the administrators of the search engine.

Human-powered search engines rely on humans to submit information that is subsequently indexed and catalogued. Only information that is submitted is put into the index.

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Friday, 13 July 2012

4G Technology

Fourth Generation Mobiles




4G also called as Fourth-Generation Communications System, is a term used to describe the next step in wireless communications. A 4G system can provide a comprehensive IP solution where voice, data and streamed multimedia can be provided to users on an "Anytime, Anywhere" basis. The data transfer rates are also much higher than previous generations.

The main objectives of 4G are:

1) 4G will be a fully IP-based integrated system.

2) This will be capable of providing 100 Mbit/s and 1 Gbit/s speeds both indoors and outdoors.

3) It can provide premium quality and high security.

4) 4G offer all types of services at an affordable cost.

4G is developed to provide high quality of service (QoS) and rate requirements set by forthcoming applications such as wireless broadband access, Multimedia Messaging, Video Chat, Mobile TV, High definition TV content, DVB, minimal service like voice and data, and other streaming services.

4G technology allow high-quality smooth video transmission. It will enable fast downloading of full-length songs or music pieces in real time.

The business and popularity of 4Gmobiles is predicted to be very vast. This 4Gmobile market will be over $400B and it will dominate the wireless communications, and its converged system will replace most conventional wireless infrastructure.

Data Rates For 4G:

The downloading speed for mobile Internet connections is from 9.6 kbit/s for 2G cellular at present. However, in actual use the data rates are usually slower, especially in crowded areas, or when there is congestion in network.

4G mobile data transmission rates are planned to be up to 20 megabits per second which means that it will be about 10-20 times faster than standard ASDL services.

In terms of connection seeds, 4G will be about 200 times faster than present 2G mobile data rates, and about 10 times faster than 3G broadband mobile. 3G data rates are currently 2Mbit/sec, which is very fast compared to 2G's 9.6Kbit/sec
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Thursday, 12 July 2012

Windows Server 2012




Windows Server 2012, formerly codenamed Windows Server 8, is the next release of Windows Server currently under development by Microsoft. It is the server version of Windows 8 and the successor to Windows Server 2008 R2. Windows Server 2012 will be the first version of Windows Server to have no support for Itanium-based computers since Windows NT 4.0. A developer preview (a pre-beta release) was released on 9 September 2011 to MSDN subscribers. On March 1, 2012, Microsoft issued a public beta (build 8250). On April 17, 2012, Microsoft announced the product name would be Windows Server 2012.. On May 31, 2012, Microsoft announced the release candidate (RC) for Windows Server 2012

Main Features of Windows server 2012:  


 1. User Interface
 2. Task Manager
 3. Installation option
 4. IP Address management
 5. Active Directory
 6. Hyper-V
 7. Cloud

System Requirement:

Architecture: 64 Bit

CPU- 1.4 Ghz
Memory - 512 MB
Hard disk Space - 32 GB (more if there is 16 GB of RAM or more)

Editions
1. Foundation
2. Essential
3. Standared
4. Datacenter
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Sunday, 3 June 2012

Difference Between Hub,Switch and Router





Hub


A common connection point for devices in a network. Hubs are commonly used to connect segments of a LAN. A hub contains multiple ports. When a packet arrives at one port, it is copied to the other ports so that all segments of the LAN can see all packets.



There are three main points to remember about hubs:
  • Many kinds of nodes can be connected to the hub with networking cable.
  • All hubs can be uplinked together, either with straight-through cable or cross-over cable, depending on whether or not the hub has an uplink port.
  • Performance will decrease as the number of users is increased.


When choosing a hub, the main consideration should be performance. If the hub is 100Mbps and there are five users, each user will receive only 20Mbps of bandwidth. If the hub is intended for a small network with very little traffic, this should not be a problem. However, if the network is large or expected to expand, a switch is a better option in the end.
When considering a hub, always remember that the network may expand in the future. Try to buy a hub that has enough ports to allow expansion without more hardware purchases. If expansion is not an immediate concern, remember that in the future you can add more hubs.
The standard hub is great for starting a small network, or providing a network to one department. There are two basic types: 10baseT, which will support a speed of 10Mbps; and 100baseTX, which supports 100Mbps. A standard 10baseT hub cannot connect to hardware that runs at 100Mbps unless a switch or hub with auto-sensing capabilities is used between them. If your network is small and will not require expansion in the near future, a standard hub is the perfect solution.



Switch


In networks, a device that filters and forwards packets between LAN segments. Switches operate at the data link layer (layer 2) and sometimes the network layer(layer 3) of the OSI Reference Model and therefore support any packet protocol. LANs that use switches to join segments are called switched LANs or, in the case of Ethernet networks, switched Ethernet LANs.


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Switches also run in full duplex mode, which allows data to be sent and received across the network at the same time. Switches effectively double the speed of the network when compared to hubs, which only support half duplex mode.
A 10/100Mbps switch can also support hardware running at either 10Mbps or 100Mbps, allowing the continued use of older technology and delaying replacement.
Switches will increase the speed and efficiency of networks in any of the following situations:
  • Any network that calls for a 10/100 hub will benefit from a 10/100Mbps switch. The switch will increase available bandwidth, drastically increasing the speed that the network is running at.
  • Any network that requires enhanced performance for file servers, workstations, Web servers, etc. Any critical components should be connected directly to a 10/100Mbps switch.
  • Any network that uses high-speed applications including multimedia and video. Any workstation or file server using the intensive applications should be connected directly to a 10/100Mbps switch.
  • Any network that uses Fiber optic cabling should use a 10/100Mbps switch rather than a hub. A hub will not take full advantage of the speed possible with Fiber optic cabling.



Router


device that forwards data packets along networks. A router is connected to at least two networks, commonly two LANs or WANs or a LAN and its ISP.s network. Routers are located at gateways, the places where two or more networks connect. Routers use headers and forwarding tables to determine the best path for forwarding the packets, and they use protocols such as ICMP to communicate with each other and configure the best route between any two hosts



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Saturday, 19 May 2012

What is DNS, and its Working?




Introduction

A key component of the Internet and how it works revolves around the Domain Name System, otherwise known as DNS. The underlying technology behind the Internet, is that when a computer needs to talk to another computer on the Internet, they communicate via the computer's IP Address. The IP Address is a unique set of numbers associated with a particular machine, which will be discussed in a separate article. An example of an IP Address is 216.213.19.27, which is the IP Address that corresponds to www.pcprompt.net.

As the predecessor of the Internet, ARPANET, grew larger, connecting to remote machines by their IP Address grew cumbersome. It became more and more difficult for people to remember the IP Addresses associated with the machines they were trying to reach that a system was created to translate easier to remember symbolic names to their equivalent numerical IP Address. Thus the Domain Name System was born.

Domain Name System
The Domain Name System is the system used on the Internet for the mapping of names, such as www.google.com, to IP Addresses such as 216.239.51.99. Every time a new domain, like pcprompt.net, is registered, that domain is entered into one of the 13 Root Servers spread throughout the world and overseen by an organization called ICANN. Because your domain is in one of these servers, it can be reached and understood by the rest of the users on the Internet.

Another key element of the Domain Name System are DNS Servers run by Companies and Internet Service Providers. Every time you connect to a site, you are asking your ISP's DNS Server to resolve, or convert, the hostname such as www.google.com to a an ip address such as 216.239.51.99. If your ISP's name server is not working or can not be reached, then you will not be able to traverse the Internet using hostnames, but instead would have to use their IP Address equivalent.

Any time you connect to a site, your ISP DNS Server must find out what name server has the information about the domain for the site you are trying to reach. Your ISP's DNS Server will connect to a Root Server and ask it who the name server is that knows the information about the site you are trying to reach. The Root Server will tell your ISP's DNS Server what server they should next contact for information. Next your ISP's DNS Server will then contact the server that the Root Server told it to contact, where it will be given the IP Address associated with the site you are trying to reach.

Real Life Example
A lot of what has been discussed may be a bit confusing, so lets do a real life example. In the flowchart below labeled Figure 1, you will see a computer trying to connect to www.google.com and the steps it takes.
How DNS Works Image

We will discuss these steps below:
  1. A User opens a web browser and tries to connect to www.google.com. The operating system not knowing the IP Address for www.google.com, asks the ISP's DNS Server for this information.
  2. The ISP's DNS Server does not know this information, so it connects to a Root Server to find out what name server, running somewhere in the world, know the information about google.com.
  3. The Root Server tells the ISP's DNS Server to contact a particular name server that knows the information about google.com.
  4. The ISP's DNS Server connects to Google's DNS server and asks for the IP Address for www.google.com.
  5. Google's DNS Server responds to the ISP's DNS server with the appropriate IP Address.
  6. The ISP's DNS Server tells the User's operating system the IP Address for google.com.
  7. The operating system tells the Web Browser the IP Address for www.google.com.
  8. The web browser connects and starts communication with www.google.com.


Conclusion
As you can see, the Domain Name System is essential in the use of the Internet. Without it, you would not be able to type in names, but would have to remember the numerical IP Addresses in order to get anywhere on the Internet.

Reference: Internet
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Wednesday, 16 May 2012

How DHCP Works



Dynamic Host Configuration Protocol (DHCP) is a client/server protocol that automatically provides an 
Internet Protocol (IP) host with its IP address and other related configuration information such as the subnet mask and default gateway. RFCs 2131 and 2132 define DHCP as an Internet Engineering Task Force (IETF) standard based on Bootstrap Protocol (BOOTP), a protocol with which DHCP shares many implementation details. DHCP allows hosts to obtain necessary TCP/IP configuration information from a DHCP server.

Benefits of DHCP
  • Reliable IP Address configuration
  • Reduced Network Administration
How DHCP Works




1.DHCP DISCOVER: The Dynamic Host Configuration Protocol (DHCP) client broadcasts a DHCP discover message on the network containing its MAC address and NetBIOS destined for UDP port 68 (used by BOOTP and Dynamic Host Configuration Protocol (DHCP) servers). This first datagram is known as a DHCPDISCOVER message, which is a request to any DHCP server that receives the datagram for configuration information.
2.DHCP OFFER: Each DHCP server on the network that receives the request responds with a DHCP offer message as broadcast (UDP port 67) to the computer that issued the DHCPDISCOVER. An offered the IP address and subnet mask is also included in the message. If the DHCP client device received multiple DHCPOFFER, the DHCP client accepts the first DHCP offer that arrives.
3.DHCP REQUEST: The Dynamic Host Configuration Protocol (DHCP) client accepts an offer and broadcasts a DHCPREQUEST datagram. The DHCPREQUEST datagram contains the IP address of the server that issued the offer and the physical address of the DHCP client. DHCPREQUEST message requests the selected DHCP server to assign the DHCP client an IP address and other TCP/IP configuration settings. DHCPREQUEST message also notifies all other DHCP servers that their offers were not accepted by the DHCP client.
4.DHCP ACK: When the DHCP server from which the offer was selected receives the DHCPREQUEST datagram, it constructs a DHCPACK datagram. This datagram is known as a DHCPACK (DHCP ACKNOWLEDGEMENT). The DHCPACK includes an IP address and subnet mask for the DHCP client. It may include other TCP/IP configuration information like IP addresses for the default gateway, IP addresses for DNS servers, IP addresses for WINS servers etc.




    DHCP Terms and Definitions


    TermDefinition
    DHCP serverA computer running the DHCP Server service that holds information about available IP addresses and related configuration information as defined by the DHCP administrator and responds to requests from DHCP clients.
    DHCP clientA computer that gets its IP configuration information by using DHCP.
    ScopeA range of IP addresses that are available to be leased to DHCP clients by the DHCP Server service.
    LeaseThe length of time for which a DHCP client can use a DHCP-assigned IP address configuration.
    ReservationA specific IP address within a scope permanently set aside for leased use by a specific DHCP client. Client reservations are made in the DHCP database using the DHCP snap-in and are based on a unique client device identifier for each reserved entry.
    ExclusionrangeOne or more IP addresses within a DHCP scope that are not allocated by the DHCP Server service. Exclusions ensure that the specified IP addresses will not be offered to clients by the DHCP server as part of the general address pool.
    APIPAA TCP/IP feature in Windows XP and Windows Server 2003 that automatically configures a unique IP address from the range 169.254.0.1 through 169.254.255.254 with a subnet mask of 255.255.0.0 when the TCP/IP protocol is configured for automatic addressing, the Automatic private IP address alternate configuration setting is selected, and a DHCP server is not available. The APIPA range of IP addresses is reserved by the Internet Assigned Numbers Authority (IANA) for use on a single subnet, and IP addresses within this range are not used on the Internet.
    SuperscopeA configuration that allows a DHCP server to provide leases from more than one scope to clients on a single physical network segment.
    Multicast IPMulticast IP addresses allow multiple clients to receive data that is sent to a single IP address, enabling point-to-multipoint communication. This type of transmission is often used for streaming media transmissions, such as video conferencing.
    Multicast ScopeA range of multicast IP addresses that can be assigned to DHCP clients. A multicast scope allows dynamic allocation of multicast IP addresses for use on the network by using the MADCAP protocol, as defined in RFC 2730.
    BOOTPAn older protocol with similar functionality; DHCP is based on BOOTP. BOOTP is an established protocol standard used for configuring IP hosts. BOOTP was originally designed to enable boot configuration for diskless workstations. Most DHCP servers, including those running Windows Server 2003, can be configured to respond to both BOOTP requests and DHCP requests.




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    Friday, 4 May 2012

    How to install Windows8 step by step




    To know Latest News about windows8: Click here

    Download Windows8 Developer Preview iso image From Microsoft Website : Click Here

    After download you can burn to a dvd...

    For Making a Bootable USB Drive, download a simple tool From microsoft store : Click Here

    After installing Select iso image 



     Select the media
    select the USB drive which you want to convert into bootable Windows 8 drive and click Begin copying. The USB device must be larger than 4GB.
    It will start copying the files and after some time your USB will be ready.
    After above steps... Time for installation

    Restart your Computer and change the boot device priority to USB Drive from BIOS

    and Boot from USB Drive

    after sometime you can see a window like below

    To know Latest News about windows8: Click here

    Select your language and click next


    click install now, If you are already installed this windows 8 then you can repair with below option "Repair your computer"

    This window indicates the license agreement

    For upgrade your windows7 to windows8 then you can select upgrade option other wise you can click custom..
    here we are selecting custom

    To know Latest News about windows8: Click here

    partition created by drive option displyed below the screen


    Installation  Process
    Enter your user name here

    Loading with your personal settings and Enjoy with windows 8
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