Showing posts with label World Wide Web. Show all posts
Showing posts with label World Wide Web. Show all posts

Wednesday, May 30

Most popular domains names in India

 Google India
google.co.in Indian version of this popular search engine. Search the whole web or only webpages from India.... More


Google
google.com Enables users to search the world's information, including webpages, images, and videos. Offers... More


Facebook
facebook.com A social utility that connects people, to keep up with friends, upload photos, share links and ... More


YouTube
youtube.com YouTube is a way to get your videos to the people who matter to you. Upload, tag and share your... More


Yahoo!
yahoo.com A major internet portal and service provider offering search results, customizable content, cha... More


blogspot.in
blogspot.in  


Wikipedia
wikipedia.org A free encyclopedia built collaboratively using wiki software. (Creative Commons Attribution-Sh... More


LinkedIn
linkedin.com A networking tool to find connections to recommended job candidates, industry experts and busin... More


googleusercontent.com
googleusercontent.com  


Indiatimes
indiatimes.com Portal site; includes news stories under subject headings, and links to other information sources.


Twitter
twitter.com Social networking and microblogging service utilising instant messaging, SMS or a web interface.


Rediff.com India Ltd.
rediff.com Online portal with free e-mail and many other services.


WordPress.com
wordpress.com Free blogs managed by the developers of the WordPress software. Includes custom design template... More


www.ZEDO.com
zedo.com Major ad serving player with solid technology. ZEDO is one of the 3 high quality ad serving com... More


Blogger.com
blogger.com Free, automated weblog publishing tool that sends updates to a site via FTP.


ESPN Cricinfo
espncricinfo.com International cricket news, live scores, photos, columns and player profiles. Provides archive ... More


torrentz.eu
torrentz.eu  


Windows Live
live.com Search engine from Microsoft.


Babylon
babylon.com This interactive tool provides you with a dictionary and additional information on words found ... More


Indian Railway Catering and Tourism Corporation
irctc.co.in Offers online rail ticket booking, and checking of ticket reservation status. Includes train sc... More


IN.com
in.com IN.com gives you a short @in.com email address, and lets you find the best of News, Music, Vide... More


Naukri.com
naukri.com Naukri.com, India’s No. 1 job site and the flagship brand of Info Edge revolutionized the conce... More


Microsoft Corporation
microsoft.com Main site for product information, support, and news.


Flipkart
flipkart.com Flipkart is a leading destination for online shopping in India.


HDFC Bank Ltd.
hdfcbank.com Information about services offered to resident Indians, NRI's, and companies. Links to its subs... More

Most popular domains names in USA

Google
google.com Enables users to search the world's information, including webpages, images, and videos. Offers... More


Facebook
facebook.com A social utility that connects people, to keep up with friends, upload photos, share links and ... More


YouTube
youtube.com YouTube is a way to get your videos to the people who matter to you. Upload, tag and share your... More


Yahoo!
yahoo.com A major internet portal and service provider offering search results, customizable content, cha... More
Search AnalyticsAudience


Amazon
amazon.com Amazon.com seeks to be Earth's most customer-centric company, where customers can find and disc... More
Search AnalyticsAudience


wikipedia
wikipedia.org A free encyclopedia built collaboratively using wiki software. (Creative Commons Attribution-Sh... More


eBay
ebay.com International person to person auction site, with products sorted into categories.


Twitter
twitter.com Social networking and microblogging service utilising instant messaging, SMS or a web interface.


Craigslist.org
craigslist.org  


LinkedIn
linkedin.com A networking tool to find connections to recommended job candidates, industry experts and busin... More


Blogspot.com
blogspot.com  


Windows Live
live.com Search engine from Microsoft.


MSN
msn.com Portal for shopping, news and money, e-mail, search, and chat.


Go
go.com A searchable directory, news, stocks, sports and free e-mail.
Search AnalyticsAudience
15
Bing
bing.com Search engine developed by Microsoft. Features web, image, video, local, news, and product search.
Search AnalyticsAudience
16
Pinterest
pinterest.com Pinterest is an online pinboard: a place where you can post collections of things you love, and... More


Tumblr
tumblr.com A feature rich and free blog hosting platform offering professional and fully customizable temp... More


PayPal
paypal.com Online payment service for individuals and merchants. Allows users to send money and bills to a... More


t.co
t.co  


AOL
aol.com America Online's official site.
Search AnalyticsAudience

Most popular domains names in United Kingdom




Google UK
google.co.uk The local version of this pre-eminent search engine, offering UK-specific pages as well as worl... More


Facebook
facebook.com A social utility that connects people, to keep up with friends, upload photos, share links and ... More


Google
google.com Enables users to search the world's information, including webpages, images, and videos. Offers... More


YouTube
youtube.com YouTube is a way to get your videos to the people who matter to you. Upload, tag and share your... More


BBC Online
bbc.co.uk The BBC Homepage - Your gateway to BBC Online


eBay UK
ebay.co.uk Person to person online auction site where you can buy or sell new and used items.


Yahoo!
yahoo.com A major internet portal and service provider offering search results, customizable content, cha... More


Wikipedia
wikipedia.org A free encyclopedia built collaboratively using wiki software. (Creative Commons Attribution-Sh... More


Windows Live
live.com Search engine from Microsoft.


Amazon.co.uk
amazon.co.uk Online retailer of books, movies, music and games along with electronics, toys, apparel, sports... More


Twitter
twitter.com Social networking and microblogging service utilising instant messaging, SMS or a web interface.


LinkedIn
linkedin.com A networking tool to find connections to recommended job candidates, industry experts and busin... More


t.co
t.co  


dailymail.co.uk
dailymail.co.uk  


paypal.com
paypal.com  


guardian.co.uk
guardian.co.uk  


wordpress.com
wordpress.com  


msn.com
msn.com  


amazon.com
amazon.com  


tumblr.com
tumblr.com  


telegraph.co.uk
telegraph.co.uk  


imdb.com
imdb.com  


hsbc.co.uk
hsbc.co.uk  


apple.com
apple.com 

Tuesday, March 13

Honest.com wins weekly sales chart at $180,000

Domain Name Journal weekly sales list of reported domain names in the week to December January 4,,2012 . There were  three six figure domain name sales this week: Honest.com,sold for $180,000,PHD.com,sold for $150,000 and Bolt.com,sold for $125,581 .

Moniker had a great week in the sales chart,taking four of the top 10 positions and six of the top 20 positions.

Correspondingly,NoktaDomains took four of the top 20 positions .

.COM dominated once again the list,with 20 of the top 20 positions.

Here are the top twenty positions for the week ending Sunday,January 4,2012 :

1.Honest.com    $180,000    
2.PHD.com    $150,000    
3.Bolt.com    $125,581    
4.Flora.com    $95,000    
5.KeywordTool.com    $90,000    
6.iWitness.com    $55,281
7.AVM.com    $40,000    
8.VitaminCenter.com    $35,000    S
9.MaleEnhancementPills.com    $31,700    
10.FirstAvenue.com    $25,000    
11.OODA.com    $25,000    
12.TripPlan.com    $24,000    
13.WHI.ch     $21,840    
14.HotelMe.com    $20,000    
15.Hochzeit.com    $19,995    
16.CoolTool.com    $18,500    
17.UltimateSports.com    $18,020    
18.SpaceSuits.com    $18,000    
19.IndianJewelry.com    $16,005    
20.    Bizable.com    $15,600 

Saturday, December 18

List of Russian IT developers

This list of Russian IT developers includes the famous hardware engineers, computer scientists and programmers from the Russian Empire, the Soviet Union and the Russian Federation.

See also the Category:Russian computer scientists and Category:Russian programmers.

A
Georgy Adelson-Velsky, inventor of AVL tree algorithm, developer of Kaissa (the first World Computer Chess Champion)
B
Boris Babaian, developer of the Elbrus-series supercomputers
Sergey Brin, inventor of the Google web search engine
Nikolay Brusentsov, inventor of ternary computer (Setun)
D
Mikhail Donskoy, a leading developer of Kaissa, the first computer chess champion
Kaspersky
E
Andrey Ershov, developed Rapira programming language, started the predecessor to the Russian National Corpus
G
Victor Glushkov, a founder of cybernetics, inventor of the first personal computer Mir
K
Anatoly Karatsuba, developed the Karatsuba algorithm (the first fast multiplication algorithm)
Yevgeny Kaspersky, developer of Kaspersky anti-virus products
Leonid Khachiyan, developed the Ellipsoid algorithm for linear programming
Semen Korsakov, the first to use punched cards for information storage and search
Alexander Kronrod, developer of Gauss–Kronrod quadrature formula and Kaissa, the first world computer chess champion
Korsakov
L
Evgeny Landis, inventor of AVL tree algorithm
Sergey Lebedev, developer of the first Soviet and European electronic computers, MESM and BESM
Vladimir Levenshtein, developed the Levenshtein automaton, Levenshtein coding and Levenshtein distance
Leonid Levin, IT scientist, developed the Cook-Levin theorem (the foundation for computational complexity)
M
Alexander Mikhailov, coined the term Informatics
O
Odhner
Willgodt Theophil Odhner, inventor of the Odhner Arithmometer, the most popular mechanical calculator in the 20th century
P
Alexey Pajitnov, inventor of Tetris
Svyatoslav Pestov, developer of jEdit text editor and Factor programming language
Bashir Rameyev, developer of Strela computer, the first mainframe computer manufactured serially in the Soviet Union
R
Eugene Roshal, developer of the FAR file manager, RAR file format, WinRAR file archiver
Pajitnov
T
Valentin Turchin, inventor of Refal programming language, introduced metasystem transition and supercompilation
Y
David Yang, developer of Cybiko, founder of ABBYY company


(source:wikipedia)

Friday, December 3

ITU-T

The Telecommunication Standardization Sector (ITU-T) coordinates standards for telecommunications on behalf of the International Telecommunication Union (ITU) and is based in Geneva, Switzerland.
The standardization work of ITU dates back to 1865, with the birth of the International Telegraph Union. It became a United Nations specialized agency in 1947, and the International Telegraph and Telephone Consultative Committee (CCITT), (from the French name "Comité Consultatif International Téléphonique et Télégraphique") was created in 1956. It was renamed ITU-T in 1993.
ITU has been an intergovernmental public-private partnership organization since its inception and now has a membership of 191 countries (Member States) and over 700 public and private sector companies as well as international and regional telecommunication entities, known as Sector Members and Associates, which undertake most of the work of the Sector.
ITU-T has a permanent secretariat, the Telecommunication Standardization Bureau (TSB), based at the ITU HQ in Geneva, Switzerland. The elected Director of the Bureau is Mr. Malcolm Johnson of the UK. Mr. Johnson was elected by the ITU Membership to the Directorship for a 4-year term in November 2006.


Primary function

The ITU-T mission is to ensure the efficient and timely production of standards covering all fields of telecommunications on a worldwide basis, as well as defining tariff and accounting principles for international telecommunication services.
The international standards that are produced by the ITU-T are referred to as "Recommendations" (with the word ordinarily capitalized to distinguish its meaning from the ordinary sense of the word "recommendation"), as they become mandatory only when adopted as part of a national law.
Since the ITU-T is part of the ITU, which is a United Nations specialized agency, its standards carry more formal international weight than those of most other standards development organizations that publish technical specifications of a similar form.

History

Although the ITU itself dates back to 1865, the formal standardization processes are more recent.
Two consultative committees were created by the ITU’s 1925 Paris conference to deal with the complexities of the international telephone services (known as CCIF, as the French acronym) and long-distance telegraphy (CCIT).
In view of the basic similarity of many of the technical problems faced by the CCIF and CCIT, a decision was taken in 1956 to merge them to become the single International Telegraph and Telephone Consultative Committee (CCITT, in the French acronym).
In 1992, the Plenipotentiary Conference (the top policy-making conference of ITU) saw a reform of ITU, giving the Union greater flexibility to adapt to an increasingly complex, interactive and competitive environment. It was at this time that CCITT was renamed the Telecommunication Standardization Sector (ITU-T), as one of three Sectors of the Union alongside the Radiocommunication Sector (ITU-R) and the Telecommunication Development Sector (ITU-D).
Historically, the Recommendations of the CCITT were presented to four-yearly plenary assemblies for endorsement, and the full set of Recommendations were published after each plenary assembly. However, the delays in producing texts, and translating them into other working languages, did not suit the fast pace of change in the telecommunications industry.

"Real time" standardization

The rise of the personal computer industry in the early 1980s created a new common practice among both consumers and businesses of adopting "bleeding edge" communications technology even if it was not yet standardized. Thus, standards organizations had to put forth standards much faster, or find themselves ratifying de facto standards after the fact.
The ITU-T now operates under much more streamlined processes. The time between an initial proposal of a draft document by a member company and the final approval of a full-status ITU-T Recommendation can now be as short as a few months (or less in some cases). This makes the standardization approval process in the ITU-T much more responsive to the needs of rapid technology development than in the ITU's historical past. New and updated Recommendations are published on an almost daily basis, and much of the library of over 3,270 Recommendations is now free of charge online. (Specifications jointly maintained by the ITU-T and ISO/IEC are not free.)
ITU-T has moreover tried to facilitate cooperation between the various forums and standard-developing organizations (SDOs). This collaboration is necessary to avoid duplication of work and the consequent risk of conflicting standards in the market place.
In the work of standardization, ITU-T cooperates with other SDOs, e.g., the International Organization for Standardization (ISO) and the Internet Engineering Task Force (IETF)

Development of Recommendations
Most of the work of ITU-T is carried out by its Sector Members and Associates, while the Telecommunication Standardization Bureau (TSB) is the executive arm of ITU-T and coordinator for a number of workshops and seminars to progress existing work areas and explore new ones. The events cover a wide array of topics in the field of information and communication technologies (ICT) and attract high-ranking experts as speakers, and attendees from engineers to high-level management from all industry sectors.
The technical work, the development of Recommendations, of ITU-T is managed by Study Groups (SGs). The people involved in these SGs are experts in telecommunications from all over the world. There are currently 13 SGs. Study groups meet face to face according to a calendar issued by the TSB. SGs are augmented by Focus Groups (FGs), an instrument created by ITU-T, providing a way to quickly react to ICT standardization needs and allowing great flexibility in terms of participation and working methods. The key difference between SGs and FGs is that the latter have greater freedom to organize and finance themselves, and to involve non-members in their work. Focus Groups can be created very quickly, are usually short-lived and can choose their own working methods, leadership, financing, and types of deliverables. Recent examples include work on Next Generation Networking, Internet Protocol Television (IPTV) and digital identity management.

Approval of Recommendations
The “Alternative Approval Process” (AAP) is a fast-track approval procedure that was developed to allow standards to be brought to market in the timeframe that industry now demands.
This dramatic overhaul of standards-making by streamlining approval procedures was implemented in 2001 and is estimated to have cut the time involved in this critical aspect of the standardization process by 80 to 90 per cent. This means that an average standard which took around four years to approve and publish until the mid nineties, and two years until 1997, can now be approved in an average of two months, or as little as five weeks.
Besides streamlining the underlying procedures involved in the approval process, an important contributory factor to the use of AAP is electronic document handling. Once the approval process has begun the rest of the process can be completed electronically, in the vast majority of cases, with no further physical meetings.
The introduction of AAP also formalizes public/private partnership in the approval process by providing equal opportunities for both Sector Members and Member States in the approval of technical standards.
Once the text of a draft Recommendation prepared by SG experts is considered mature, it is submitted for review to an SG meeting. If agreed by the meeting it is given Consent. This means that the SG has given its consent that the text is sufficiently mature to initiate a final review process leading to approval of the draft Recommendation.
After this Consent has been achieved, TSB announces the start of the AAP procedure by posting the draft text to the ITU-T web site and calling for comments. This gives the opportunity for all members to review the text. This phase, called Last Call, is a four-week period in which comments can be submitted by Member States and Sector Members.
If no comments other than editorial corrections are received, the Recommendation is considered approved since no issues were identified that might need any further work. However, if there are any comments, the SG chairman, in consultation with TSB, sets up a comment resolution process by the concerned experts. The revised text is then posted on the web for an Additional Review period of three weeks.
Similar to the Last Call phase, in Additional Review the Recommendation is considered as approved if no comments are received. If comments are received, it is apparent that there are some issues that still need more work, and the draft text and all comments are sent to the next Study Group meeting for further discussion and possible approval.
Those Recommendations considered as having policy or regulatory implications are approved through what is known as the “Traditional Approval Process” (TAP), which allows a longer period for reflection and commenting by Member States. TAP Recommendations are also translated into the six working languages of ITU (Arabic, Chinese, English, French, Russian and Spanish).

Series and Recommendations

ITU-T Recommendations are the names given to telecommunications and computer protocol specification documents published by ITU-T.
Many of the Recommendations that define OSI are also ISO standards.
Standards for Internet protocols are typically developed in the IETF, and standards for mobile telephone systems are developed in ETSI and other forums.

Series of ITU Recommendations
ITU-T issues Recommendations that have names like X.500, where X is the series and 500 is an identifying number. When a Recommendation is updated, it will (mostly) keep the same number, so the year of issue may be necessary to identify a specific version of a Recommendation. The term "X.500" is used both to refer to the specific X.500 Recommendation, and to the entire family of Recommendations named X.5xx, where the specific X.500 Recommendation forms the introduction and overview to the set.
Series Description
A Organization of the work of ITU-T
B Means of expression: definitions, symbols, classification
C General telecommunication statistics
D General tariff principles
E Overall network operation, telephone service, service operation and human factors
F Non-telephone telecommunication services
G Transmission systems and media, digital systems and networks
H Audiovisual and multimedia systems
I Integrated services digital network
J Cable networks and transmission of television, sound programme and other multimedia signals
K Protection against interference
L Construction, installation and protection of cables and other elements of outside plant
M Telecommunication management, including TMN and network maintenance
N Maintenance: international sound programme and television transmission circuits
O Specifications of measuring equipment
P Telephone transmission quality, telephone installations, local line networks
Q Switching and signalling
R Telegraph transmission
S Telegraph services terminal equipment
T Terminals for telematic services
U Telegraph switching
V Data communication over the telephone network
X Data networks, open system communications and security
Y Global information infrastructure, Internet protocol aspects and next-generation networks
Z Languages and general software aspects for telecommunication systems

G Series Recommendations
Transmission systems and media, digital systems and networks
Specification Range Specification Type
G.100 - G.199 INTERNATIONAL TELEPHONE CONNECTIONS AND CIRCUITS
G.200 - G.299 GENERAL CHARACTERISTICS COMMON TO ALL ANALOGUE CARRIERTRANSMISSION SYSTEMS
G.300 - G.399 INDIVIDUAL CHARACTERISTICS OF INTERNATIONAL CARRIER TELEPHONE SYSTEMS ON METALLIC LINES
G.400 - G.449 GENERAL CHARACTERISTICS OF INTERNATIONAL CARRIER TELEPHONE SYSTEMS ON RADIO-RELAY OR SATELLITE LINKS AND INTERCONNECTION WITH METALLIC LINES
G.450 - G.499 COORDINATION OF RADIOTELEPHONY AND LINE TELEPHONY
G.600 - G.699 TRANSMISSION MEDIA AND OPTICAL SYSTEMS CHARACTERISTICS
G.700 - G.799 DIGITAL TERMINAL EQUIPMENTS
G.800 - G.899 DIGITAL NETWORKS
G.900 - G.999 DIGITAL SECTIONS AND DIGITAL LINE SYSTEM
G.1000 - G.1999 QUALITY OF SERVICE AND PERFORMANCE – GENERIC AND USER-RELATED ASPECTS
G.6000 - G.6999 TRANSMISSION MEDIA CHARACTERISTICS
G.7000 - G.7999 DATA OVER TRANSPORT – GENERIC ASPECTS
G.8000 - G.8999 PACKET OVER TRANSPORT ASPECTS
G.8000 - G.8099 Ethernet over Transport aspects
G.8100 - G.8199 MPLS over Transport aspects
G.8200 - G.8299 Quality and availability targets
G.8600 - G.8699 Service Management
G.9000 - G.9999 ACCESS NETWORKS
Y Series Recommendations
Global Information Infrastructure, Internet Protocol Aspects And Nextgeneration Networks
Specification Range Specification Type
GLOBAL INFORMATION INFRASTRUCTURE
Y.100–Y.199 General
Y.200–Y.299 Services, applications and middleware
Y.300–Y.399 Network aspects
Y.400–Y.499 Interfaces and protocols
Y.500–Y.599 Numbering, addressing and naming
Y.600–Y.699 Operation, administration and maintenance
Y.700–Y.799 Security
Y.800–Y.899 Performances
INTERNET PROTOCOL ASPECTS
Y.1000–Y.1099 General
Y.1100–Y.1199 Services and applications
Y.1200–Y.1299 Architecture, access, network capabilities and resource management
Y.1300–Y.1399 Transport
Y.1400–Y.1499 Interworking
Y.1500–Y.1599 Quality of service and network performance
Y.1600–Y.1699 Signalling
Y.1700–Y.1799 Operation, administration and maintenance
Y.1800–Y.1899 Charging
NEXT GENERATION NETWORKS
Y.2000–Y.2099 Frameworks and functional architecture models
Y.2100–Y.2199 Quality of Service and performance
Y.2200–Y.2249 Service aspects: Service capabilities and service architecture
Y.2250–Y.2299 Service aspects: Interoperability of services and networks in NGN
Y.2300–Y.2399 Numbering, naming and addressing
Y.2400–Y.2499 Network management
Y.2500–Y.2599 Network control architectures and protocols
Y.2700–Y.2799 Security
Y.2800–Y.2899 Generalized mobility

International Telecommunication Regulations (ITRs)
In addition to the ITU-T Recommendations, which have non-mandatory status until they are adopted in national laws, ITU-T is also the custodian of a binding international treaty, the International Telecommunication Regulations. The ITRs go back to the earliest days of the ITU when there were two separate treaties, dealing with telegraph and telephone. The ITRs were adopted, as a single treaty, at the World Administrative Telegraphy and Telephone Conference held in Melbourne, 1988 (WATTC-88).
In line with the current Constitution and Convention of ITU, the ITRs can be amended through a World Conference on International Telecommunications (WCIT), and the next is scheduled for 2012. Before then a process of review of the ITRs, which began in 1998, will continue.
The ITRs comprise ten articles which deal, inter alia, with the definition of international telecommunication services, cooperation between countries and national administrations, safety of life and priority of telecommunications and charging and accounting principles. The adoption of the ITRs in 1988 is often taken as the start of the wider liberalization process in international telecommunications, though a few countries, including United States and United Kingdom, had made steps to liberalize their markets before 1988.

Key standards published by ITU
ASN.1 (Abstract Syntax Notation One)
Coding of audio G.711 and G.72x series
Coding of still images JPEG T.80 and JPEG 2000 T.800 series
Coding of video coding H.262/MPEG2-Video and H.264/MPEG-4 AVC
Construction, installation and protection of cables and other elements of outside plant, L-series
Data communication over the telephone network, V-series
Fax standards T.2 – T.4, T.30, T.37, T.38
G.hn (Next generation wired home networking over powerlines, phonelines and coaxial cable)
H.323 family of standards for multimedia and VoIP
Interconnection rate harmonization, D-series
International Emergency Preference Scheme E.106
IMSI codes used in SIM cards E.212
ISDN and PSTN/3G videoconferencing systems, H.320 and H.324
ISDN (Integrated Services Digital Network) Q.931
Open Systems Interconnection
Optical Transport Network (OTN) G.709, G.798
Passive optical networks (PON) G.983, G.984, G.987
Public Key Infrastructure (PKI) X.509
Public telecommunication numbering plan, E.164
Security framework X.805
Signalling System 7 Q.7xx series
Standards relating to Quality of Service (QoS)
Specification and Description Language
Synchronous Digital Hierarchy (SDH) G.707 – G.803
Wavelength-division multiplexing (WDM)
(x)DSL (Digital Subscriber Line) series of standards for broadband telecoms

Hot topics

ITU-T is committed to “bridging the standardization gap” – disparities in the ability of developing countries, relative to developed ones, to access, implement, contribute to and influence international ICT standards. Find out more about the work here.
The ICT Security Standards Roadmap has been developed to assist in the development of security standards by bringing together information about existing standards and current standards work in key standards development organizations.
The Next Generation Networks (NGN) concept takes into consideration new realities in the telecommunication industry characterized by factors such as; the need to converge and optimize the operating networks and the extraordinary expansion of digital traffic (i.e., increasing demand for new multimedia services, mobility, etc.).




(source:wikipedia)

Thursday, December 2

Leonard Kleinrock

Leonard Kleinrock (born June 13, 1934, in New York) is an engineer and computer scientist, and a computer science professor at UCLA's Henry Samueli School of Engineering and Applied Science, who made several important contributions to the field of computer networking, in particular to the theoretical side of computer networking. He also played an important role in the development of the ARPANET, the precursor to the Internet, at UCLA.
His most well-known and significant work is his early work on queueing theory, which has applications in many fields, among them as a key mathematical background to packet switching, the basic technology behind the Internet. His initial contribution to this field was his doctoral thesis at Massachusetts Institute of Technology in 1962, published in book form in 1964; he later published several of the standard works on the subject.
He has described this work as:
"Basically, what I did for my PhD research in 1961–1962 was to establish a mathematical theory of packet networks...."
His theoretical work on hierarchical routing, done in the late 1970s with his then-student Farouk Kamoun, is now critical to the operation of today's worldwide Internet.


ARPANET and the Internet
In 1969, ARPANET, the world's first packet switched computer network, was established on October 29 between nodes at Kleinrock's lab at UCLA and Douglas Engelbart's lab at SRI. Interface Message Processors (IMP) at both sites served as the backbone of the first Internet .
In addition to SRI and UCLA, the University of California at Santa Barbara, and the University of Utah were part of the original four network nodes. By December 5, 1969, the initial 4-node network was connected.
In 1988, Kleinrock was the chairman of a group that presented the report Toward a National Research Network to the U.S. Congress . This report was highly influential and was used to develop the High Performance Computing Act of 1991 , which was influential in the development of the Internet as it is known today.  Funding from the bill was used in the development of the 1993 web browser MOSAIC, at the National Center for Supercomputing Applications (NCSA).

Education and career
Kleinrock graduated from the noted Bronx High School of Science in 1951, and received a Bachelor of Electrical Engineering degree in 1957 from the City College of New York, and a master's degree and a doctorate (Ph.D.) in electrical engineering & computer science from the Massachusetts Institute of Technology in 1959 and 1963 respectively. He then joined the faculty at the University of California at Los Angeles (UCLA), where he remains to the present day; during 1991-1995 he served as the Chairman of the Computer Science Department there.

Awards
He has received numerous professional awards. Kleinrock was selected to receive the prestigious National Medal of Science, the nation's highest scientific honor, from President George W Bush in the White House on September 29, 2008. "The 2007 National Medal of Science to Leonard Kleinrock for his fundamental contributions to the mathematical theory of modern data networks, and for the functional specification of packet switching, which is the foundation of Internet technology. His mentoring of generations of students has led to the commercialization of technologies that have transformed the world." 


(source:wikpedia)