biotechnology summary The fusion of flesh and machine is trend which, although inscribed in the history of modern technology from its beginnings, has reached a unprecedented momentum in recent years as a result of crucial advances in information technology, biology, and the development of global networks. Consequently, doubts are emerging concerning the viability of a distinct and definable human nature. Historical and social theories and concepts are being unhinged by the spread hybrids and by new forms of artificial life which are likely to trigger social changes escaping the grip of calculation. Attempts to defend an essential human nature against technical hybridisation, rather than strengthening the human subject, may have further blurred the question of historical subjectivity. Large amounts of money are invested into research and development of artifical biology, making some of the predictions of AI and robotics experts about radical and far reaching changes a matter of time. |
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The 17th Century: The Invention of the First "Computers" The devices often considered the first "computers" in our understanding were rather In 1642 Further improvements in the field of early computing devices were made by Charles Xavier Thomas de Colmar, a Frenchmen. His arithometer could not only add and multiply, but perform the four basic arithmetic functions and was widely used up until the First World War. |
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Epilogue As scientists are working hard on a quantum computer and also on quantum cryptography one can imagine that another revolution in the study of encryption has to be expected within the next years. By then today's hardware and software tools will look extraordinary dull. At the moment it is impossible to foresee the effects on cryptography and democratic developments by those means; the best and the worst can be expected at the same time. A certain ration of pessimism and prosecution mania are probably the right mixture of emotions about those tendencies, as the idea of big brother has come into existence long ago. At the same time it will - in part - be a decision of the people to let science work against them or not. Acceleration of data-transmission calls for an acceleration of encryption-methods. And this again falls back on us, on an acceleration of daily life, blurring the private and the public for another time. We live in an intersection, job and private life growing together. Cryptography cannot help us in that case. The privacy in our mind, the virtuality of all private and public lies in the field of democracy, or at least what is - by connection to the Human Rights - regarded as democracy. |
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Association for Progressive Communication (APC) The APC is a global federation of 24 non-profit Internet providers serving over 50,000 NGOs in 133 countries. Since 1990, APC has been supporting people and organizations worldwide, working together online for social, environmental and economic justice. The APC's network of members and partners spans the globe, with significant presence in Central and Eastern Europe, Africa, Asia and Latin America. History Between 1982 and 1987 several independent, national, non-profit computer networks emerged as viable information and communication resources for activists and NGOs. The networks were founded to make new communication techniques available to movements working for social change. In 1987, people at GreenNet in England began collaborating with their counterparts at the Institute for Global Communications (IGC) in the United States. These two networks started sharing electronic conference material and demonstrated that transnational electronic communications could serve international as well as domestic communities working for peace, human rights and the environment. This innovation proved so successful that by late 1989, networks in Sweden, Canada, Brazil, Nicaragua and Australia were exchanging information with each other and with IGC and GreenNet. In the spring of 1990, these seven organizations founded the Association for Progressive communications to co-ordinate the operation and development of this emerging global network of networks. Strategies and Policies The APC defends and promotes non-commercial, productive online space for NGOs and collaborates with like-minded organizations to ensure that the information and communication needs of civil society are considered in telecommunications, donor and investment policy. The APC is committed to freedom of expression and exchange of information on the Internet. The APC helps to build capacity between existing and emerging communication service providers. The APC Women's Networking Support Program promotes gender-aware Internet design, implementation and use. Through its African members, the APC is trying to strengthen indigenous information sharing and independent networking capacity on the continent. Members of APC develop Internet products, resources and tools to meet the advocacy, collaboration and information publishing and management needs of civil society. Recent APC initiatives have included the APC Toolkit Project: Online Publishing and Collaboration for Activists and the Mission-Driven Business Planning Toolkit. The APC also runs special projects like the Beijing+5, which shall enable non-governmental organizations to actively participate in the review of the Beijing Platform for Action. |
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First Amendment Handbook The First Amendment to the US Constitution, though short, lists a number of rights. Only a handful of words refer to freedoms of speech and the press, but those words are of incalculable significance. To understand the current subtleties and controversies surrounding this right, check out this First Amendment site. This detailed handbook of legal information, mostly intended for journalists, should be of interest to anyone who reads or writes. For example, the chapter Invasion of Privacy shows the limits of First Amendment rights, and the balance between the rights of the individual and the rights of the public - or, more crudely, the balance of Tabloid vs. Celebrity. Each section is carefully emended with relevant legal decisions. http://www.rcfp.org/handbook/viewpage.cgi |
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codes an algorithm for bringing a legible message into an illegible form. There has to exist some sort of code book to encode/decode it. |
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plaintext the original, legible text |
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Industrial design Industrial design refers to the ornamental aspect of a useful article which may constitute of two or three-dimensional elements. To be qualified for |
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ARPAnet ARPAnet was the small network of individual computers connected by leased lines that marked the beginning of today's global data networks. Being an experimental network mainly serving the purpose to test the feasibility of In 1969 ARPANET went online and links the first two computers, one of them located at the University of California, Los Angeles, the other at the Stanford Research Institute. But ARPAnet has not become widely accepted before it was demonstrated in action to a public of computer experts at the First International Conference on Computers and Communication in Washington, D. C. in 1972. Before it was decommissioned in 1990, In the USA commercial users already outnumbered military and academic users in 1994. Despite the rapid growth of the Net, most computers linked to it are still located in the United States. |
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ciphertext the enciphered/encoded and primarily illegible text |
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File Transfer Protocol (FTP) FTP enables the transfer of files (text, image, video, sound) to and from other remote computers connected to the Internet. |
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Censorship of Online Content in China During the Tian-an men massacre reports and photos transmitted by fax machines gave notice of what was happening only with a short delay. The Chinese government has learned his lesson well and "regulated" Internet access from the beginning. All Internet traffic to and out of China passes through a few Users are expected not to "harm" China's national interests and therefore have to apply for permission of Internet access; Web pages have to be approved before being published on the Net. For the development of measures to monitor and control Chinese content providers, China's state police has joined forces with the MIT. For further information on Internet censorship, see Human Rights Watch, |
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MIRALab MIRALab is a research laboratory attached to the University of Geneva. Its motto is "where research meets creativity". MIRAlab's objective is to model human functionalities, such as movement or facial expression, in a realistic way. |
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National Science Foundation (NSF) Established in 1950, the National Science Foundation is an independent agency of the U.S. government dedicated to the funding in basic research and education in a wide range of sciences and in mathematics and engineering. Today, the NSF supplies about one quarter of total federal support of basic scientific research at academic institutions. For more detailed information see the Encyclopaedia Britannica: http://www.britannica.com/bcom/eb/article/0/0,5716,2450+1+2440,00.html |
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to encipher/encode to put a word or text into ciphers/codes |
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Economic rights The economic rights (besides |
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Wide Application Protocol (WAP) The WAP (Wireless Application Protocol) is a specification for a set of communication protocols to standardize the way that wireless devices, such as cellular telephones and radio transceivers, can be used for Internet access, including While Internet access has been possible in the past, different manufacturers have used different technologies. In the future, devices and service systems that use WAP will be able to interoperate. Source: Whatis.com |
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Bulletin Board Systems A BBS (bulletin board system) is a computer that can be reached by computer modem dialing (you need to know the phone number) or, in some cases, by Bulletin board systems originated and generally operate independently of the Internet. Source: Whatis.com |
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Telephone The telephone was not invented by Alexander Graham Bell, as is widely held to be true, but by Philipp Reiss, a German teacher. When he demonstrated his invention to important German professors in 1861, it was not enthusiastically greeted. Because of this dismissal, no financial support for further development was provided to him. And here Bell comes in: In 1876 he successfully filed a patent for the telephone. Soon afterwards he established the first telephone company. |
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Chappe's fixed optical network Claude Chappe built a fixed optical network between Paris and Lille. Covering a distance of about 240kms, it consisted of fifteen towers with semaphores. Because this communication system was destined to practical military use, the transmitted messages were encoded. The messages were kept such secretly, even those who transmit them from tower to tower did not capture their meaning, they just transmitted codes they did not understand. Depending on weather conditions, messages could be sent at a speed of 2880 kms/hr at best. Forerunners of Chappe's optical network are the For more information on early communication networks see |
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