Century Raven Boat Manual
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The following stories were written by Master Chief Jack Duncan, retired, who served as torpedoman on PT 103 from 1943 to 1944. Jack also served on PT 62 and PT 318 as. OGP/ogp/mailboat003a.jpg' alt='Century Raven Boat Manual' title='Century Raven Boat Manual' />Claude Shannon Wikipedia. Claude Elwood Shannon April 3. February 2. 4, 2. American mathematician, electrical engineer, and cryptographer known as the father of information theory. Shannon is noted for having founded information theory with a landmark paper, A Mathematical Theory of Communication, that he published in 1. He is, perhaps, equally well known for founding digital circuit design theory in 1. Massachusetts Institute of Technology MIThe wrote his thesis demonstrating that electrical applications of Boolean algebra could construct any logical, numerical relationship. Shannon contributed to the field of cryptanalysis for national defense during World War II, including his fundamental work on codebreaking and secure telecommunications. BiographyeditChildhoodeditShannon was born in Petoskey, Michigan and grew up in Gaylord, Michigan. Avrdude Usb Serial Port'>Avrdude Usb Serial Port. His father, Claude, Sr. New Jersey, was a self made businessman, and for a while, a Judge of Probate. Shannons mother, Mabel Wolf Shannon 1. Gaylord High School. Most of the first 1. Shannons life were spent in Gaylord, where he attended public school, graduating from Gaylord High School in 1. Shannon showed an inclination towards mechanical and electrical things. Diplomat Built In Oven Manual. His best subjects were science and mathematics. At home he constructed such devices as models of planes, a radio controlled model boat and a barbed wire telegraph system to a friends house a half mile away. While growing up, he also worked as a messenger for the Western Union company. His childhood hero was Thomas Edison, who he later learned was a distant cousin. Both Shannon and Edison were descendants of John Ogden 1. Shannon was apolitical and an atheist. Logic circuitseditIn 1. Shannon entered the University of Michigan, where he was introduced to the work of George Boole. Century Raven Boat Manual' title='Century Raven Boat Manual' />He graduated in 1. In 1. 93. 6, Shannon began his graduate studies in electrical engineering at MIT, where he worked on Vannevar Bushs differential analyzer, an early analog computer. While studying the complicated ad hoc circuits of this analyzer, Shannon designed switching circuits based on Booles concepts. In 1. 93. 7, he wrote his masters degree thesis, A Symbolic Analysis of Relay and Switching Circuits,1. A paper from this thesis was published in 1. In this work, Shannon proved that his switching circuits could be used to simplify the arrangement of the electromechanicalrelays that were used then in telephone call routing switches. Next, he expanded this concept, proving that these circuits could solve all problems that Boolean algebra could solve. In the last chapter, he presents diagrams of several circuits, including a 4 bit full adder. Using this property of electrical switches to implement logic is the fundamental concept that underlies all electronic digital computers. Shannons work became the foundation of digital circuit design, as it became widely known in the electrical engineering community during and after World War II. The theoretical rigor of Shannons work superseded the ad hoc methods that had prevailed previously. Howard Gardner called Shannons thesis possibly the most important, and also the most noted, masters thesis of the century. Shannon received his Ph. D. degree from MIT in 1. Tom And Jerry Complete Collection All 161 Episodes on this page. Vannevar Bush suggested that Shannon should work on his dissertation at the Cold Spring Harbor Laboratory, in order to develop a mathematical formulation for Mendeliangenetics. Century Raven Boat Manual' title='Century Raven Boat Manual' />This research resulted in Shannons Ph. D. thesis, called An Algebra for Theoretical Genetics. In 1. 94. 0, Shannon became a National Research Fellow at the Institute for Advanced Study in Princeton, New Jersey. In Princeton, Shannon had the opportunity to discuss his ideas with influential scientists and mathematicians such as Hermann Weyl and John von Neumann, and he also had occasional encounters with Albert Einstein and Kurt Gdel. Shannon worked freely across disciplines, and this ability may have contributed to his later development of mathematical information theory. Wartime researcheditShannon then joined Bell Labs to work on fire control systems and cryptography during World War II, under a contract with section D 2 Control Systems section of the National Defense Research Committee NDRC. Shannon is credited with the invention of signal flow graphs, in 1. He discovered the topological gain formula while investigating the functional operation of an analog computer. For two months early in 1. Shannon came into contact with the leading British mathematician Alan Turing. Turing had been posted to Washington to share with the U. S. Navys cryptanalytic service the methods used by the British Government Code and Cypher School at Bletchley Park to break the ciphers used by the Kriegsmarine. U boats in the north Atlantic Ocean. He was also interested in the encipherment of speech and to this end spent time at Bell Labs. Shannon and Turing met at teatime in the cafeteria. Turing showed Shannon his 1. Universal Turing machine 1. This impressed Shannon, as many of its ideas complemented his own. In 1. 94. 5, as the war was coming to an end, the NDRC was issuing a summary of technical reports as a last step prior to its eventual closing down. Inside the volume on fire control, a special essay titled Data Smoothing and Prediction in Fire Control Systems, coauthored by Shannon, Ralph Beebe Blackman, and Hendrik Wade Bode, formally treated the problem of smoothing the data in fire control by analogy with the problem of separating a signal from interfering noise in communications systems. In other words, it modeled the problem in terms of data and signal processing and thus heralded the coming of the Information Age. Shannons work on cryptography was even more closely related to his later publications on communication theory. At the close of the war, he prepared a classified memorandum for Bell Telephone Labs entitled A Mathematical Theory of Cryptography, dated September 1. A declassified version of this paper was published in 1. Communication Theory of Secrecy Systems in the Bell System Technical Journal. This paper incorporated many of the concepts and mathematical formulations that also appeared in his A Mathematical Theory of Communication. Shannon said that his wartime insights into communication theory and cryptography developed simultaneously and that they were so close together you couldnt separate them. In a footnote near the beginning of the classified report, Shannon announced his intention to develop these results in a forthcoming memorandum on the transmission of information. While he was at Bell Labs, Shannon proved that the cryptographicone time pad is unbreakable in his classified research that was later published in October 1. He also proved that any unbreakable system must have essentially the same characteristics as the one time pad the key must be truly random, as large as the plaintext, never reused in whole or part, and be kept secret. Information theoryeditIn 1. A Mathematical Theory of Communication, an article in two parts in the July and October issues of the Bell System Technical Journal. This work focuses on the problem of how best to encode the information a sender wants to transmit. In this fundamental work, he used tools in probability theory, developed by Norbert Wiener, which were in their nascent stages of being applied to communication theory at that time. Annual Manual 2. 01. The Inlander. Published on Aug 3.