World War I ...

With World War I an entire system of ideas how wars work collapsed. Suddenly it was no longer mostly soldiers who had to fight. War became an engagement of every day's life. Everybody got involved.
Propaganda therefore changed as well. The campaigns were no longer temporarily and recent but had to be planned for years. Who failed in organizing it or used the wrong keywords failed. Masters of modern propaganda became the British, whereas the Germans failed completely in the beginning.

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The Right to get Disinformed

Disinformation might also be welcome:
While the ones criticize disinformation and try to fight against it, others do nothing against it. And others again seem to enjoy getting disinformed. How this works? It is the result of a society that does no longer want to live under the pressure of doing and hearing everything at the same time. Acceleration of life seems too fast. The only way to get out is to refuse certain things/messages/truths. Receiving disinformation can be more comfortable than getting so-called correct information. This is especially true for the readers of the yellow press. The yellow press lives on that perspective, the commodity of getting light news, mostly wrong news and lies - but those being wrapped up in nice pictures and stories about those who seem to reign the world.
The aim is the escape out of reality.
A surplus of information, information terror, can produce disinformation. The profusion can get exploited for disinformation. This works in that way that in the mass of information the individual has no possibility to get an overview of the different ways of thinking and to reach a stage of objective knowledge.

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1940s - Early 1950s: First Generation Computers

Probably the most important contributor concerning the theoretical basis for the digital computers that were developed in the 1940s was Alan Turing, an English mathematician and logician. In 1936 he created the Turing machine, which was originally conceived as a mathematical tool that could infallibly recognize undecidable propositions. Although he instead proved that there cannot exist any universal method of determination, Turing's machine represented an idealized mathematical model that reduced the logical structure of any computing device to its essentials. His basic scheme of an input/output device, memory, and central processing unit became the basis for all subsequent digital computers.

The onset of the Second World War led to an increased funding for computer projects, which hastened technical progress, as governments sought to develop computers to exploit their potential strategic importance.

By 1941 the German engineer Konrad Zuse had developed a computer, the Z3, to design airplanes and missiles. Two years later the British completed a secret code-breaking computer called Colossus to decode German messages and by 1944 the Harvard engineer Howard H. Aiken had produced an all-electronic calculator, whose purpose was to create ballistic charts for the U.S. Navy.

Also spurred by the war the Electronic Numerical Integrator and Computer (ENIAC), a general-purpose computer, was produced by a partnership between the U.S. government and the University of Pennsylvania (1943). Consisting of 18.000 vacuum tubes, 70.000 resistors and 5 million soldered joints, the computer was such a massive piece of machinery (floor space: 1,000 square feet) that it consumed 160 kilowatts of electrical power, enough energy to dim lights in an entire section of a bigger town.

Concepts in computer design that remained central to computer engineering for the next 40 years were developed by the Hungarian-American mathematician John von Neumann in the mid-1940s. By 1945 he created the Electronic Discrete Variable Automatic Computer (EDVAC) with a memory to hold both a stored program as well as data. The key element of the Neumann architecture was the central processing unit (CPU), which allowed all computer functions to be coordinated through a single source. One of the first commercially available computers to take advantage of the development of the CPU was the UNIVAC I (1951). Both the U.S. Census bureau and General Electric owned UNIVACs (Universal Automatic Computer).

Characteristic for first generation computers was the fact, that instructions were made-to-order for the specific task for which the computer was to be used. Each computer had a different binary-coded program called a machine language that told it how to operate. Therefore computers were difficult to program and limited in versatility and speed. Another feature of early computers was that they used vacuum tubes and magnetic drums for storage.

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The Theory of the Celestro-Centric World


In 1870 the U.S.-American C.R.Teed, inspired by the lecture of the bible and elder believers (like Edmund Halley in 1692), developed a new model of the world. In Germany the idea was published by Karl Neupert. In the 1930s the theory got famous, when it was published as the new world-vision. Though the theories differed slightly, all authors imagined the world as a ball, where human beings live inside. In the middle are the moon and the sun - and also God, sitting in the center.

for further details see:
http://www.angelfire.com/il/geocosmos/

http://home.t-online.de/home/Werner_Lang

Those who believe in it, call it the truth, those who simply like the idea, may call it a parallel science. Others call it disinformation, asking for the reasons to spread it. The turning to the inside, where there is no way out, produces a different reality. It shows that realities are always produced.
Political conservatives and racists like Hitler were fascinated by the idea and tried to present it as a new truth, a new reality, which was possible to make ideological use of.

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NSFNet

Developed under the auspices of the National Science Foundation (NSF), NSFnet served as the successor of the ARPAnet as the main network linking universities and research facilities until 1995, when it was replaced it with a commercial backbone network. Being research networks, ARPAnet and NSFnet served as testing grounds for future networks.

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Blue Box

The blue box-system works with a special blue colored background. The person in front can act as if he/she was filmed anywhere, also in the middle of a war.

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Josef Goebbels

Josef Goebbels (1897-1945) was Hitler's Minister for Propaganda and Public Enlightenment. He had unlimited influence on the press, the radio, movies and all kind of literary work in the whole Reich. In 1944 he received all power over the Total War. At the same time he was one of the most faithful followers of Hitler - and he followed him into death in 1945.

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Aeneas Tacticus

Supposedly his real name was Aeneas of Stymphalus. He was a Greek military scientist and cryptographer. He invented an optical system for communication similar to a telegraph: the water-clocks.

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Theoedore Roosevelt

With the assassination of President McKinley, Theodore Roosevelt (1858-1919), not quite 43, became the youngest President in the Nation's history. Roosevelt's youth differed sharply from that of the log cabin Presidents. He was born in New York City in 1858 into a wealthy family. Roosevelt steered the United States more actively into world politics. He liked to quote a favorite proverb, "Speak softly and carry a big stick. . . . "

He won the Nobel Peace Prize for mediating the Russo-Japanese War.

for more information see the official website:

http://www.whitehouse.gov/WH/glimpse/presidents/html/tr26.html

http://www.whitehouse.gov/WH/glimpse/presiden...
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