Censored links: Linking as a crime

The World Wide Web is constituted by documents linked with other documents, thus allowing access to referred documents. Censorship affects hyperlinks as well. Say, you publish an essay on racist propaganda on the Net and make link references to neo-nazi web sites. It goes without saying that you do not endorse neo-nazi pamphlets. By linking to these web sites you want your readers to get an idea of what you are writing about. Linking does not necessarily mean approving. Is this not evident?

According to Swiss and German prosecuting attorneys you may have committed a crime without having illegal intentions. From his web site Thomas Stricker, director of the Institute of Computer Systems at the ETH Zurich, has linked to an anti-racist web site with links to racist content in order to draw the attention to the difficulties legal regulation of the Net has to face. Neglecting his intentions, Swiss authorities instituted a criminal action against Stricker.

Another case, reported by the Global Internet Liberty Campaign, proves that not just links to racist resources or to resources with links to such resources are under prosecution. The Motion Picture Association of America sued to prevent Internet users from linking to websites that have DeCSS, a program helping Linux users play DVDs on their computers. The trial is scheduled for December.

References:

Global Internet Liberty Campaign, Hollywood wants end to links, in: GILC Alert 4,4, April 24, 2000, http://www.gilc.org/alert/alert44.html

Wolfgang Näser, Allgemeines zum Thema "Homepage", http://staff-www.uni-marburg.de/naeser/allgem.htm

Florian Rötzer, Ab wann ist ein externer Link auf strafrechtlich relevante Inhalte selbst strafbar?, in: Telepolis, December 1, 1997

Florian Rötzer, Strafverfahren gegen ETH-Professor wegen Links zu rassistischen Websites, in: Telepolis, February 24, 2000

Florian Rötzer, Ab wievielen Zwischenschritten ist ein Link auf eine rechtswidrige Website strafbar, in: Telepolis, February 24, 2000

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Late 1970s - Present: Fourth Generation Computers

Following the invention of the first integrated circuits always more and more components could be fitted onto one chip. LSI (Large Scale Integration) was followed by VLSI (Very Large Scale Integration) and ULSI (Ultra-Large Scale Integration), which increased the number of components squeezed onto one chip into the millions and helped diminish the size as well as the price of computers. The new chips took the idea of the integrated circuit one step further as they allowed to manufacture one microprocessor which could then be programmed to meet any number of demands.

Also, ensuing the introduction of the minicomputer in the mid 1970s by the early 1980s a market for personal computers (PC) was established. As computers had become easier to use and cheaper they were no longer mainly utilized in offices and manufacturing, but also by the average consumer. Therefore the number of personal computers in use more than doubled from 2 million in 1981 to 5.5 million in 1982. Ten years later, 65 million PCs were being used.

Further developments included the creation of mobile computers (laptops and palmtops) and especially networking technology. While mainframes shared time with many terminals for many applications, networking allowed individual computers to form electronic co-operations. LANs (Local Area Network) permitted computers to share memory space, information, software and communicate with each other. Although already LANs could reach enormous proportions with the invention of the Internet an information and communication-network on a global basis was established for the first time.

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1970s: Computer-Integrated Manufacturing (CIM)

Since the 1970s there had been a growing trend towards the use of computer programs in manufacturing companies. Especially functions related to design and production, but also business functions should be facilitated through the use of computers.

Accordingly the CAD/CAM technology, related to the use of computer systems for design and production, was developed. CAD (computer-aided design) was created to assist in the creation, modification, analysis, and optimization of design. CAM (computer-aided manufacturing) was designed to help with the planning, control, and management of production operations. CAD/CAM technology, since the 1970s, has been applied in many industries, including machined components, electronics products, equipment design and fabrication for chemical processing.

To enable a more comprehensive use of computers in firms the CIM (computer-integrated manufacturing) technology, which also includes applications concerning the business functions of companies, was created. CIM systems can handle order entry, cost accounting, customer billing and employee time records and payroll. The scope of CIM technology includes all activities that are concerned with production. Therefore in many ways CIM represents the highest level of automation in manufacturing.

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McCann Erickson

Alfred W. Erickson founded the advertising agency McCann Erickson in 1902. In1913 McCann opened a San Francisco office and a Detroit office that moved to Cleveland in 1915. With operations in 127 countries, McCann reaches across the globe and continues to expand its capabilities through start-up units and acquisitions. McCann has recently added creative resources in the local, pan-regional and global arenas and also extended its expertise in specialized marketing categories, such as business-to-business and high-tech communications.

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National Laboratory for Applied Network Research

NLANR, initially a collaboration among supercomputer sites supported by the National Science Foundation, was created in 1995 to provide technical and engineering support and overall coordination of the high-speed connections at these five supercomputer centers.

Today NLANR offers support and services to institutions that are qualified to use high performance network service providers - such as Internet 2 and Next Generation Internet.

http://www.nlanr.net

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Proxy Servers

A proxy server is a server that acts as an intermediary between a workstation user and the Internet so that security, administrative control, and caching service can be ensured.

A proxy server receives a request for an Internet service (such as a Web page request) from a user. If it passes filtering requirements, the proxy server, assuming it is also a cache server, looks in its local cache of previously downloaded Web pages. If it finds the page, it returns it to the user without needing to forward the request to the Internet. If the page is not in the cache, the proxy server, acting as a client on behalf of the user, uses one of its own IP addresses to request the page from the server out on the Internet. When the page is returned, the proxy server relates it to the original request and forwards it on to the user.

Source: Whatis.com

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