Saturday, August 6, 2016

Bed Time Story 33

Once upon a time there was a man named Charles Babbage and he was an English polymath. A mathematician, philosopher, inventor and mechanical engineer, Babbage, along with Ada Lovelace, is best remembered for originating the concept of a programmable computer.
Considered by some to be a "father of the computer",Babbage, along with Lovelace, is credited with inventing the first mechanical computer that eventually led to more complex designs. His varied work in other fields has led him to be described as "pre-eminent" among the many polymaths of his century.
Parts of Babbage's uncompleted mechanisms are on display in the Science Museum in London. In 1991, a perfectly functioning difference engine was constructed from Babbage's original plans. Built to tolerances achievable in the 19th century, the success of the finished engine indicated that Babbage's machine would have worked.Babbage's birthplace is disputed, but according to the Oxford Dictionary of National Biography he was most likely born at 44 Crosby Row, Walworth Road, London, England. A blue plaque on the junction of Larcom Street and Walworth Road commemorates the event.His date of birth was given in his obituary in The Times as 26 December 1792; but then a nephew wrote to say that Babbage was born one year earlier, in 1791. The parish register of St. Mary's Newington, London, shows that Babbage was baptised on 6 January 1792, supporting a birth year of 1791.Babbage was one of four children of Benjamin Babbage and Betsy Plumleigh Teape. His father was a banking partner of William Praed in founding Praed's & Co. of Fleet Street, London, in 1801. In 1808, the Babbage family moved into the old Rowdens house in East Teignmouth. Around the age of eight, Babbage was sent to a country school in Alphington near Exeter to recover from a life-threatening fever. For a short time he attended King Edward VI Grammar School in Totnes, South Devon, but his health forced him back to private tutors for a time.Babbage then joined the 30-student Holmwood academy, in Baker Street, Enfield, Middlesex, under the Reverend Stephen Freeman. The academy had a library that prompted Babbage's love of mathematics. He studied with two more private tutors after leaving the academy. The first was a clergyman near Cambridge; through him Babbage encountered Charles Simeon and his evangelical followers, but the tuition was not what he needed.He was brought home, to study at the Totnes school: this was at age 16 or 17. The second was an Oxford tutor, under whom Babbage reached a level in Classics sufficient to be accepted by Cambridge.Babbage arrived at Trinity College, Cambridge, in October 1810.He was already self-taught in some parts of contemporary mathematics; he had read in Robert Woodhouse, Joseph Louis Lagrange, and Marie Agnesi. As a result, he was disappointed in the standard mathematical instruction available at Cambridge.Babbage, John Herschel, George Peacock, and several other friends formed the Analytical Society in 1812; they were also close to Edward Ryan. As a student, Babbage was also a member of other societies such as The Ghost Club, concerned with investigating supernatural phenomena, and the Extractors Club, dedicated to liberating its members from the madhouse, should any be committed to one.In 1812 Babbage transferred to Peterhouse, Cambridge. He was the top mathematician there, but did not graduate with honours. He instead received a degree without examination in 1814. He had defended a thesis that was considered blasphemous in the preliminary public disputation; but it is not known whether this fact is related to his not sitting the examination.After Cambridge he , considering only his reputation, Babbage quickly made progress. He lectured to the Royal Institution on astronomy in 1815, and was elected a Fellow of the Royal Society in 1816. After graduation, on the other hand, he applied for positions unsuccessfully, and had little in the way of career. In 1816 he was a candidate for a teaching job at Haileybury College; he had recommendations from James Ivory and John Playfair, but lost out to Henry Walter. In 1819, Babbage and Herschel visited Paris and the Society of Arcueil, meeting leading French mathematicians and physicists.That year Babbage applied to be professor at the University of Edinburgh, with the recommendation of Pierre Simon Laplace; the post went to William Wallace.With Herschel, Babbage worked on the electrodynamics of Arago's rotations, publishing in 1825. Their explanations were only transitional, being picked up and broadened by Michael Faraday. The phenomena are now part of the theory of eddy currents, and Babbage and Herschel missed some of the clues to unification of electromagnetic theory, staying close to Ampère's force law.
Babbage purchased the actuarial tables of George Barrett, who died in 1821 leaving unpublished work, and surveyed the field in 1826 in Comparative View of the Various Institutions for the Assurance of Lives.This interest followed a project to set up an insurance company, prompted by Francis Baily and mooted in 1824, but not carried out. Babbage did calculate actuarial tables for that scheme, using Equitable Society mortality data from 1762 onwards.
During this whole period Babbage depended awkwardly on his father's support, given his father's attitude to his early marriage, of 1814: he and Edward Ryan wedded the Whitmore sisters. He made a home in Marylebone in London, and founded a large family. On his father's death in 1827, Babbage inherited a large estate (value around £100,000, equivalent to £7.81 million in today's pounds), making him independently wealthy.After his wife's death in the same year he spent time travelling. In Italy he met Leopold II, Grand Duke of Tuscany, foreshadowing a later visit to Piedmont. In April 1828 he was in Rome, and relying on Herschel to manage the difference engine project, when he heard that he had become professor at Cambridge, a position he had three times failed to obtain (in 1820, 1823 and 1826).Babbage lived and worked for over 40 years at 1 Dorset Street, Marylebone, where he died, at the age of 79, on 18 October 1871; he was buried in London's Kensal Green Cemetery. According to Horsley, Babbage died "of renal inadequacy, secondary to cystitis." He had declined both a knighthood and baronetcy. He also argued against hereditary peerages, favouring life peerages instead. With this known and a whole lot more to know about Charles Babbage i would have to say he is on my list for one of the most creditable inventors of all time.





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                                          From Wikipedia, the free encyclopedia

Wednesday, August 3, 2016

Bed Time Story 32

Once upon a time there was a man named Ralph Henry Baer and he was a German-born American video game developer, inventor, and engineer, and was known as "The Father of Video Games" due to his many contributions to games and the video game industry in the latter half of the 20th century. Born in Germany, he and his family fled to the United States before the outbreak of World War II, where he changed his name and later served the American war effort. Afterwards, he pursued work in electronics. In 1951, while working at Loral, he was asked to build "the best television set in the world". He proposed the idea of playing games on television screens, but his boss rejected it. Later in 1966, while working at Sanders Associates, his 1951 idea came back to his mind, and he would go on to develop eight hardware prototypes. The last two (the Brown Box and its de/dt extension) would become the first home video game console, the Magnavox Odyssey. He would contribute to the development of other consoles and consumer game units. In February, 2006, he was awarded the National Medal of Technology for "his groundbreaking and pioneering creation, development and commercialization of interactive video games, which spawned related uses, applications, and mega-industries in both the entertainment and education realms". Baer was born in 1922 to Lotte (Kirschbaum) and Leo Baer, a Jewish family living in Germany, and was originally named Rudolf Heinrich Baer. At age 11, he was expelled from school because of his ancestry and had to go to an all-Jewish school. His father worked in a shoe factory in Pirmasens at the time. Baer's family, fearing increasing persecution, moved from Germany to New York City in 1938 two months prior to Kristallnacht while Baer was a teenager. Baer would later become a naturalized United States citizen. In the United States, he was self-taught and worked in a factory for a weekly wage of twelve dollars; upon seeing an advertisement at a bus station for education in the budding electronics field, he quit his job to study in the field. He graduated from the National Radio Institute as a radio service technician in 1940. In 1943 he was drafted to fight in World War II and assigned to military intelligence at the United States Army headquarters in London. With his secondary education funded by the G.I. Bill, Baer graduated with a Bachelor of Science degree in Television Engineering (unique at the time) from the American Television Institute of Technology in Chicago in 1949. In 1949, Baer went to work as chief engineer for a small electro-medical equipment firm, Wappler, Inc., where he designed and built surgical cutting machines, epilators, and low frequency pulse generating muscle-toning equipment. In 1951, Baer went to work as a senior engineer for Loral Electronics in Bronx, New York, where he designed power line carrier signaling equipment for IBM. From 1952 to 1956, he worked at Transitron, Inc., in New York City as a chief engineer and later as vice president. He started his own company before joining defense contractor Sanders Associates in Nashua, New Hampshire (now part of BAE Systems Inc.) in 1956, where he stayed until retiring in 1987. Baer's primary responsibility at Sanders was overseeing about 500 engineers in the development of electronic systems for military applications. However, out of this work came the concept of a home video game console; he would go on to create the basis for the first commercial units, among several other patented advances in video games and electronic toys. Baer married Dena Whinston in 1952; she died in 2006. They had three children during their marriage, and at the time of Baer's death, he had four grandchildren. Baer died at his home in Manchester, New Hampshire on December 6, 2014, according to family and friends close to him. With this being so and so much more to learn about Ralph Henry Baer i would have to say he is on my list for one of the most interesting inventors of all time.



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                                                From Wikipedia, the free encyclopedia

Tuesday, August 2, 2016

Bed Time Story 31

Once upon a time there was a man named John Vincent Atanasoff and he was an American physicist and inventor, best known for inventing the first electronic digital computer.Atanasoff invented the first electronic digital computer in the 1930s at Iowa State College. Challenges to his claim were resolved in 1973 when the Honeywell v. Sperry Rand lawsuit ruled that Atanasoff was the inventor of the computer. His special-purpose machine has come to be called the Atanasoff–Berry Computer.
Atanasoff, of Bulgarian, French and Irish ancestry, was born on October 4, 1903 in Hamilton, New York to an electrical engineer and a school teacher. Atanasoff's father, Ivan Atanasoff was born in 1876 in the village of Boyadzhik, close to Yambol, Bulgaria. While Ivan was still an infant, Ivan's own father was killed by Ottoman soldiers after the Bulgarian April Uprising.In 1889, Ivan Atanasov immigrated to the United States with his uncle. Atanasoff's mother, Iva Lucena Purdy, was a teacher of mathematics.
Atanasoff was raised by his parents in Brewster, Florida. At the age of nine he learned to use a slide rule, followed shortly by the study of logarithms, and subsequently completed high school at Mulberry High School in two years. In 1925, Atanasoff received his bachelor of science degree in electrical engineering from the University of Florida, graduating with straight A's.
He continued his education at Iowa State College and in 1926 earned a master's degree in mathematics. He completed his formal education in 1930 by earning a Ph.D. in theoretical physics from the University of Wisconsin–Madison with his thesis, The Dielectric Constant of Helium. Upon completion of his doctorate, Atanasoff accepted an assistant professorship at Iowa State College in mathematics and physics.
Partly due to the drudgery of using the mechanical Monroe calculator, which was the best tool available to him while he was writing his doctoral thesis, Atanasoff began to search for faster methods of computation. At Iowa State, Atanasoff researched the use of slaved Monroe calculators and IBM tabulators for scientific problems. In 1936 he invented an analog calculator for analyzing surface geometry. The fine mechanical tolerance required for good accuracy pushed him to consider digital solutions.
With a grant of $650 received in September 1939 and the assistance of his graduate student Clifford Berry, the Atanasoff–Berry Computer (ABC) was prototyped by November of that year. According to Atanasoff, several operative principles of the ABC were conceived by him during the winter of 1938 after a drive to Rock Island, Illinois.
The key ideas employed in the ABC included binary math and Boolean logic to solve up to 29 simultaneous linear equations. The ABC had no central processing unit (CPU), but was designed as an electronic device using vacuum tubes for digital computation. It also used separate regenerative capacitor memory that operated by a process still used today in DRAM memory. With this being so and so much more still to learn about John Atanasoff I would say he is on my list of one of the most notable inventors in the world.



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Monday, August 1, 2016

Bed Time Story 30

Once upon a time there was a man named Joseph Aspdin and he was an English cement manufacturer who obtained the patent for Portland cement on 21 October 1824. Aspdin (or Aspden) was the eldest of the six children of Thomas Aspdin, a bricklayer living in the Hunslet district of Leeds, Yorkshire. He was baptised on Christmas Day, 1778. He entered his father's trade, and married Mary Fotherby at Leeds Parish Church (the Parish Church of St Peter at Leeds) on 21 May 1811.
By 1817 he had set up in business on his own in central Leeds. He must have experimented with cement manufacture during the next few years, because on 21 October 1824 he was granted the British Patent BP 5022 entitled An Improvement in the Mode of Producing an Artificial Stone, in which he coined the term "Portland cement" by analogy with the Portland stone, an oolitic limestone that is quarried on the channel coast of England, on the Isle of Portland in Dorset. See below for the text of the patent.
Almost immediately after this, in 1825, in partnership with a Leeds neighbour, William Beverley, he set up a production plant for this product in Kirkgate, Wakefield. Beverley stayed in Leeds, but Aspdin and his family moved to Wakefield (about nine miles away) at this point. He obtained a second patent, for a method of making lime, in 1825. The Kirkgate plant was closed in 1838 after compulsory purchase of the land by the Manchester and Leeds Railway Company, and the site was cleared. He moved his equipment to a second site nearby in Kirkgate.
At this time his eldest son James was working as an accountant in Leeds, and his younger son, William, was running the plant. However, in 1841, Joseph went into partnership with James, and posted a notice that William had left, and that the company would not be responsible for his debts, stating "I think it right to give notice that my late agent, William Aspdin, is not now in my employment, and that he is not authorised to receive any money, nor contract any debts on my behalf or on behalf of the new firm."
In 1843, William established his own plant at Rotherhithe, near London. There he introduced a new and substantially stronger cement, using a modified recipe for cement-making, the first "modern" Portland cement. In 1844 Joseph retired, transferring his share of the business to James. James moved to a third site at Ings Road in 1848, and this plant continued in operation until 1900. Joseph Aspdin died on 20 March 1855, at home in Wakefield.
 Aspdin called the product Portland cement because set mortar made from it resembled “the best Portland stone". Portland stone was the most prestigious building stone in use in England at the time. The patent clearly does not describe the product recognised as Portland cement today. The product was aimed at the market for stuccos and architectural pre-cast mouldings, for which a fast-setting, low-strength cement was required (see cement). It was fired at low temperature (below 1250 °C) and therefore contained no alite. With this known and so much more to learn about Joseph Aspdin i would say he is on my list for one of the most interesting inventors.



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Friday, July 29, 2016

Bed Time Story 29

Once upon a time there was a man named Neil Arnott and he was a Scottish physician.Neil Arnott FRS was a distinguished graduate of Marischal College, University of Aberdeen (AM, 1805; MD 1814) and subsequently studied in London under Sir Everard Home (1756–1832), through whom he obtained, when only eighteen, the appointment of full surgeon to an East Indiaman. After making two voyages to China acting as a surgeon in the service of the British East India Company (1807-9 and 1810–11), he settled in London where he practised from 1811–1854, and quickly acquired a high reputation. He gave lectures at the Philomathic Institution published as Elements of physics (1827). He was one of the founders of the University of London, 1836. Within a few years he was made physician to the French and Spanish embassies, and in 1837 he became physician extraordinary to the Queen. He was elected to the Fellow of the Royal Society (FRS) in 1838. He was a strong advocate of scientific, as opposed to purely classical, education; and he manifested interest in natural philosophy by the gift of 2,000 pounds to each of the four universities of Scotland and to the University of London, to promote its study in the experimental and practical form.From his earliest youth, Arnott had an intense love of natural philosophy, and to this added an inventiveness which served him in good stead in his profession and yielded the Arnott waterbed in 1832, which later was developed into a water-filled chair intended to prevent seasickness. Other inventions include the Arnott ventilator, the Arnott stove, etc.This being so and with so much more to learn about Neil Arnott i would have to say he is on my list for one of the worlds most needed inventors.


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Thursday, July 28, 2016

Bed TIme Story 28

Once upon a time there was a man named Edwin Howard Armstrong and he was an American electrical engineer and inventor, best known for developing FM (frequency modulation) radio. He held 42 patents and received numerous awards, including the first Medal of Honor awarded by the Institute of Radio Engineers (now IEEE), the French Legion of Honor, the 1941 Franklin Medal and the 1942 Edison Medal. He was inducted into the National Inventors Hall of Fame and included in the International Telecommunication Union's roster of great inventors.Armstrong was born in the Chelsea district of New York City, the oldest of John and Emily (Smith) Armstrong's three children. His father began working at a young age at the American branch of the Oxford University Press, which published bibles and standard classical works, eventually advancing to the position of vice president. His parents first met at the North Presbyterian Church, located at 31st Street and Ninth Avenue. His mother's family had strong ties to Chelsea, and an active role in church functions. When the church moved north, the Smiths and Armstrongs followed, and in 1895 the Armstrong family moved from their brownstone row house at 347 West 29th Street to a similar house at 26 West 97th Street in the Upper West Side.The family was comfortably middle class, however, at the age of eight Armstrong contracted a disease, then known as St. Vitus' Dance, which left him with a lifelong physical tic when excited or under stress. Due to this illness he was withdrawn from public school and was home-tutored for two years. In order to improve his health, the Armstrong family moved to a house which overlooked the Hudson River, at 1032 Warburton Avenue in Yonkers. The Smith family subsequently moved next door.Armstrong's tic and the time he was removed from school led him to become socially withdrawn. From an early age he showed an interest in electrical and mechanical devices, particularly trains. He loved heights and constructed a makeshift backyard antenna tower that included a bosun's chair for hoisting himself up and down its length, to the concern of neighbors. Much of his early research was conducted in the attic of his parent's house.In 1909 Armstrong enrolled at Columbia University in New York City, where he became a member of the Epsilon Chapter of the Theta Xi engineering fraternity, and studied under Professor Michael Pupin at the Hartley Laboratories, a separate research unit at Columbia. Another of his instructors, Professor John H. Morecroft, later remembered Armstrong as being intensely focused on the topics that interested him, but somewhat indifferent to the rest of his studies. He was known for challenging conventional wisdom and being quick to question the opinions of both professors and peers. In one case he recounted how he tricked an instructor he disliked into receiving a severe electrical shock. He also stressed the practical over the theoretical, stating that progress was more likely the product of experimentation and work based on physical reasoning than on mathematical calculation and formulae (known as part of "mathematical physics").
Armstrong graduated from Columbia in 1913, earning an electrical engineering degree. He later received two honorary doctorates, from Columbia in 1929, and Muhlenberg College in 1941. In 1934, he filled the vacancy left by John H. Morecroft's death, receiving an appointment as a Professor of Electrical Engineering at Columbia, a position he held the remainder of his life.Following college graduation, he received a $600 one-year appointment as a laboratory assistant at Columbia, after which he nominally worked as a research assistant, for a salary of $1 a year, under Professor Pupin. Unlike most engineers, Armstrong never became a corporate employee. He set up a self-financed independent research and development laboratory at Columbia, and owned his patents outright.with this being so and so much more to learn about Edwin Howard Armstrong i would have to say he is on my list for one of the most important inventors in history.




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Wednesday, July 27, 2016

Bed Time Story 27

Once upon a time there was a man named Momofuku Ando and he was a Japanese inventor and businessman who founded Nissin Food Products Co., Ltd.. He is known as one of the inventors of instant noodles, instant ramen, and Cup Noodles. Ando was born Go Pek-Hok (Chinese: 吳百福; Pe̍h-ōe-jī: Gô Pek-hok) in 1910 into a wealthy Taiwanese family in Kagi-chō (嘉義廳?) (modern-day Chiayi), Japanese-era Taiwan, and raised by his grandparents within the city walls of Tainan-chō (臺南廳?) (modern-day Tainan) following the deaths of his parents. His grandparents owned a small textiles store, which inspired him, at the age of 22, to start his own textiles company, using 190,000 yen, in Eiraku-chō (永樂町?), Daitōtei, Taihoku-shi (modern-day Taipei). In 1933, Ando traveled to Osaka where he established a clothing company while studying economics at Ritsumeikan University. After World War II, Ando became a Japanese citizen and moved to Japan, where he entered Ritsumeikan University and at the same time founded a small merchandising firm in Osaka with the inheritance from his family. "Momofuku" is the Japanese reading of his Chinese given name (百福; Pek-hok), while Andō (安藤) is a common Japanese surname. He was convicted of tax evasion in 1948 and served two years in jail. In his biography, Ando said he had provided scholarships for students, which at the time was a form of tax evasion. After he lost his company due to a chain reaction bankruptcy, Ando founded what was to become Nissin in Ikeda, Osaka, Japan, starting off as a small family-run company producing salt. In 1964, seeking a way to promote the instant noodle industry, Ando founded the Instant Food Industry Association, which set guidelines for fair competition and product quality, introducing several industry standards such as the inclusion of production dates on packaging and the "fill to" line. He was also the chairman of the International Ramen Manufacturers' Association. The Momofuku Ando Instant Ramen Museum is named after him. Ando died of heart failure on January 5, 2007 at a hospital in Ikeda, Osaka Prefecture at the age of 96. With this being so and so much more to learn about Momofuku Ando i would say he is on my list for one of the most interesting inventors in history.



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From Wikipedia, the free encyclopedia