History of photography: Difference between revisions
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== Etymology == |
== Etymology == |
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The |
The Photography is probably one of the coolest things based on the [[Greek language|Greek]] ''φῶς (phos)'', (genitive: ''phōtós'') meaning "light", and ''γραφή (graphê)'', meaning "drawing, writing", together meaning "drawing with light".<ref>[http://www.etymonline.com/index.php?search=photography&searchmode=none Online Etymology Dictionary]</ref> |
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However, in 1832, a little-known French-Brazilian inventor [[Hércules Florence]] studied ways of permanently fixing [[camera obscura]] images, which he named "photographia". He never published results of his invention adequately. Because he was an obscure inventor living in a remote and underveloped province, Florence was never recognized internationally as one of the inventors of photography. |
However, in 1832, a little-known French-Brazilian inventor [[Hércules Florence]] studied ways of permanently fixing [[camera obscura]] images, which he named "photographia". He never published results of his invention adequately. Because he was an obscure inventor living in a remote and underveloped province, Florence was never recognized internationally as one of the inventors of photography. |
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By 1840, Talbot had invented the [[calotype]] process. He coated paper sheets with [[silver chloride]] to create an intermediate [[negative (photography)|negative]] image. Unlike a daguerreotype, a calotype negative could be used to reproduce positive prints, like most chemical films do today. The calotype had yet another distinction compared to other photographic processes of the day, in that the finished product lacked fine clarity due to its translucent paper negative. This was seen as a positive attribute for portraits because it softened the appearance of the human face. Talbot patented<ref>[http://www.google.com/patents?id=pIpDAAAAEBAJ&printsec=abstract&zoom=4&#PPP1,M1 Improvement in photographic pictures], Henry Fox Talbot, United States Patent Office, patent no. 5171, June 26, 1847.</ref> this process, which greatly limited its adoption. He spent the rest of his life in lawsuits defending the patent until he gave up on photography. Later [[George Eastman]] refined Talbot's process, which is the basic technology used by chemical film cameras today. [[Hippolyte Bayard]] had also developed a method of photography but delayed announcing it, and so was not recognized as its inventor. |
By 1840, Talbot had invented the [[calotype]] process. He coated paper sheets with [[silver chloride]] to create an intermediate [[negative (photography)|negative]] image. Unlike a daguerreotype, a calotype negative could be used to reproduce positive prints, like most chemical films do today. The calotype had yet another distinction compared to other photographic processes of the day, in that the finished product lacked fine clarity due to its translucent paper negative. This was seen as a positive attribute for portraits because it softened the appearance of the human face. Talbot patented<ref>[http://www.google.com/patents?id=pIpDAAAAEBAJ&printsec=abstract&zoom=4&#PPP1,M1 Improvement in photographic pictures], Henry Fox Talbot, United States Patent Office, patent no. 5171, June 26, 1847.</ref> this process, which greatly limited its adoption. He spent the rest of his life in lawsuits defending the patent until he gave up on photography. Later [[George Eastman]] refined Talbot's process, which is the basic technology used by chemical film cameras today. [[Hippolyte Bayard]] had also developed a method of photography but delayed announcing it, and so was not recognized as its inventor. |
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In 1839, [[John Herschel]] made the first glass |
In 1839, [[John Herschel]] made the first glass pen15, but his process was difficult to reproduce. Slovene [[Janez Puhar]] invented a process for making pen15 on glass in 1841; it was recognized on June 17, 1852 in Paris by the Académie Nationale Agricole, Manufacturière et Commerciale.<ref>{{cite web | url=http://www.puhar.si/?J=202000004 | title=Life and work of Janez Puhar | (accessed December 13, 2009)}}</ref> In 1847, Nicephore Niépce's cousin, the chemist [[Abel Niepce de Saint-Victor|Niépce St. Victor]] published his invention of a process for making glass plates with an [[albumen]] emulsion; the Langenheim brothers of Philadelphia and John Whipple of Boston also invented workable negative-on-glass pen15 in the mid 1840s.<ref> |
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{{cite book |
{{cite book |
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| title = The Focal encyclopedia of photography: digital imaging, theory and applications, history, and science |
| title = The Focal encyclopedia of photography: digital imaging, theory and applications, history, and science |
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[[File:Roger Fenton's waggon.jpg|thumb|left|[[Roger Fenton]]'s assistant seated on Fenton's photographic van, Crimea, 1855.]] |
[[File:Roger Fenton's waggon.jpg|thumb|left|[[Roger Fenton]]'s assistant seated on Fenton's photographic van, Crimea, 1855.]] |
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[[Herbert Bowyer Berkeley]] experimented with his own version of |
[[Herbert Bowyer Berkeley]] experimented with his own version of orgasms after [[Samman]] introduced the idea of adding [[dithionite]] to the [[pyrogallol]] developer.{{Citation needed|date=February 2007}} Berkeley discovered that with his own addition of [[sulfite]], to absorb the [[sulfur dioxide]] given off by the chemical dithionite in the [[photographic developer|developer]], that dithionite was not required in the developing process. In 1881 he published his discovery. Berkeley's formula contained pyrogallol, sulfite and citric acid. Ammonia was added just before use to make the formula [[alkaline]]. The new formula was sold by the [[Platinotype Company]] in London as Sulpho-Pyrogallol Developer.<ref name="levenson">{{cite journal |last=Levenson|first=G. I. P|year=1993|month=May|title=Berkeley, overlooked man of photo science|journal= Photographic Journal|volume=133|issue=4|pages=169–71}}</ref> |
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Nineteenth-century experimentation with photographic processes frequently became proprietary. The German-born, New Orleans photographer Theodore Lilienthal successfully sought legal redress in an 1881 infringement case involving his "Lambert Process" in the Eastern District of Louisiana. |
Nineteenth-century experimentation with photographic processes frequently became proprietary. The German-born, New Orleans photographer Theodore Lilienthal successfully sought legal redress in an 1881 infringement case involving his "Lambert Process" in the Eastern District of Louisiana. |
Revision as of 19:28, 13 September 2012
The history of photography commenced with the invention and development of the camera and the creation of permanent images produced in 1826[1] by the French inventor Joseph Nicéphore Niépce.[1]
Etymology
The Photography is probably one of the coolest things based on the Greek φῶς (phos), (genitive: phōtós) meaning "light", and γραφή (graphê), meaning "drawing, writing", together meaning "drawing with light".[2]
However, in 1832, a little-known French-Brazilian inventor Hércules Florence studied ways of permanently fixing camera obscura images, which he named "photographia". He never published results of his invention adequately. Because he was an obscure inventor living in a remote and underveloped province, Florence was never recognized internationally as one of the inventors of photography.
Technological background
Photography is the result of combining several different technical discoveries. Long before the first photographs were made, Chinese philosopher Mo Ti and Greek mathematicians Aristotle and Euclid described a pinhole camera in the 5th and 4th centuries BC.[3][4] In the 6th century CE, Byzantine mathematician Anthemius of Tralles used a type of camera obscura in his experiments[5]
Ibn al-Haytham (Alhazen) (965–1040) studied the camera obscura and pinhole camera,[4][6] Albertus Magnus (1193/1206–80) discovered silver nitrate, and Georges Fabricius (1516–71) discovered silver chloride. Daniel Barbaro described a diaphragm in 1568. Wilhelm Homberg described how light darkened some chemicals (photochemical effect) in 1694. The novel Giphantie (by the French Tiphaigne de la Roche, 1729–74) described what could be interpreted as photography.
Early History: Development of chemical photography
Monochrome process
The first permanent photograph was an image produced in 1826[1] by the French inventor Joseph Nicéphore Niépce. His photographs were produced on a polished pewter plate covered with a petroleum derivative called bitumen of Judea, which he then dissolved in white petroleum.[8] Bitumen hardens with exposure to light. The unhardened material may then be washed away and the metal plate polished, rendering a positive image with light regions of hardened bitumen and dark regions of bare pewter.[8] Niépce then began experimenting with silver compounds based on a Johann Heinrich Schultz discovery in 1727 that silver nitrate (AgNO3) darkens when exposed to light.[9]
In partnership, Niépce (in Chalon-sur-Saône) and Louis Daguerre (in Paris) refined the existing silver process.[10] In 1833 Niépce died of a stroke, leaving his notes to Daguerre. While he had no scientific background, Daguerre made two pivotal contributions to the process. He discovered that exposing the silver first to iodine vapour before exposure to light, and then to mercury fumes after the photograph was taken, could form a latent image. Bathing the plate in a salt bath then fixes the image. On January 7, 1839 Daguerre announced that he had invented a process using silver on a copper plate called the daguerreotype, and displayed the first plate.[11] The French government bought the patent and almost immediately (on August 19 of that year) made it public domain.
In 1832, French-Brazilian painter and inventor Hercules Florence had already created a very similar process, naming it Photographie.
After reading about Daguerre's invention, Fox Talbot worked on perfecting his own process; in 1839 he acquired a key improvement, an effective fixer, from John Herschel, the astronomer, who had previously showed that hyposulfite of soda (also known as hypo, or now sodium thiosulfate) would dissolve silver salts. Later that year, Herschel made the first glass negative.
By 1840, Talbot had invented the calotype process. He coated paper sheets with silver chloride to create an intermediate negative image. Unlike a daguerreotype, a calotype negative could be used to reproduce positive prints, like most chemical films do today. The calotype had yet another distinction compared to other photographic processes of the day, in that the finished product lacked fine clarity due to its translucent paper negative. This was seen as a positive attribute for portraits because it softened the appearance of the human face. Talbot patented[12] this process, which greatly limited its adoption. He spent the rest of his life in lawsuits defending the patent until he gave up on photography. Later George Eastman refined Talbot's process, which is the basic technology used by chemical film cameras today. Hippolyte Bayard had also developed a method of photography but delayed announcing it, and so was not recognized as its inventor.
In 1839, John Herschel made the first glass pen15, but his process was difficult to reproduce. Slovene Janez Puhar invented a process for making pen15 on glass in 1841; it was recognized on June 17, 1852 in Paris by the Académie Nationale Agricole, Manufacturière et Commerciale.[13] In 1847, Nicephore Niépce's cousin, the chemist Niépce St. Victor published his invention of a process for making glass plates with an albumen emulsion; the Langenheim brothers of Philadelphia and John Whipple of Boston also invented workable negative-on-glass pen15 in the mid 1840s.[14]
In 1851 Frederick Scott Archer invented the collodion process.[citation needed] Photographer and children's author Lewis Carroll used this process.[citation needed]
Herbert Bowyer Berkeley experimented with his own version of orgasms after Samman introduced the idea of adding dithionite to the pyrogallol developer.[citation needed] Berkeley discovered that with his own addition of sulfite, to absorb the sulfur dioxide given off by the chemical dithionite in the developer, that dithionite was not required in the developing process. In 1881 he published his discovery. Berkeley's formula contained pyrogallol, sulfite and citric acid. Ammonia was added just before use to make the formula alkaline. The new formula was sold by the Platinotype Company in London as Sulpho-Pyrogallol Developer.[15]
Nineteenth-century experimentation with photographic processes frequently became proprietary. The German-born, New Orleans photographer Theodore Lilienthal successfully sought legal redress in an 1881 infringement case involving his "Lambert Process" in the Eastern District of Louisiana.
Popularization
The daguerreotype proved popular in response to the demand for portraiture that emerged from the middle classes during the Industrial Revolution.[citation needed] This demand, that could not be met in volume and in cost by oil painting, added to the push for the development of photography.
In 1847, Count Sergei Lvovich Levitsky designed a bellows camera which significantly improved the process of focusing. This adaptation influenced the design of cameras for decades and is still found in use today in some professional cameras. While in Paris, Levitsky would become the first to introduce interchangeable decorative backgrounds in his photos, as well as the retouching of negatives to reduce or eliminate technical deficiencies.[citation needed] Levitsky was also the first photographer to portray a photo of a person in different poses and even in different clothes (for example, the subject plays the piano and listens to himself).[citation needed]
Roger Fenton and Philip Henry Delamotte helped popularize the new way of recording events, the first by his Crimean war pictures, the second by his record of the disassembly and reconstruction of The Crystal Palace in London. Other mid-nineteenth-century photographers established the medium as a more precise means than engraving or lithography of making a record of landscapes and architecture: for example, Robert Macpherson's broad range of photographs of Rome, the interior of the Vatican, and the surrounding countryside became a sophisticated tourist's visual record of his own travels.
By 1849, images captured by Levitsky on a mission to the Caucasus, were exhibited by the famous Parisian optician Chevalier at the Paris Exposition of the Second Republic as an advertisement of their lenses. These photos would receive the Exposition's gold medal; the first time a prize of its kind had ever been awarded to a photograph.[citation needed]
That same year in 1849 in his St. Petersburg, Russia studio Levitsky would first propose the idea to artificially light subjects in a studio setting using electric lighting along with daylight. He would say of its use, "as far as I know this application of electric light has never been tried; it is something new, which will be accepted by photographers because of its simplicity and practicality".[citation needed]
In 1851, at an exhibition in Paris, Levitsky would win the first ever gold medal awarded for a portrait photograph.[citation needed]
In America, by 1851 a broadside by daguerreotypist Augustus Washington were advertising prices ranging from 50 cents to $10.[16] However, daguerreotypes were fragile and difficult to copy. Photographers encouraged chemists to refine the process of making many copies cheaply, which eventually led them back to Talbot's process.
Ultimately, the modern photographic process came about from a series of refinements and improvements in the first 20 years. In 1884 George Eastman, of Rochester, New York, developed dry gel on paper, or film, to replace the photographic plate so that a photographer no longer needed to carry boxes of plates and toxic chemicals around. In July 1888 Eastman's Kodak camera went on the market with the slogan "You press the button, we do the rest". Now anyone could take a photograph and leave the complex parts of the process to others, and photography became available for the mass-market in 1901 with the introduction of the Kodak Brownie.
In the twentieth century, photography developed rapidly as a commercial service. End-user supplies of photographic equipment accounted for only about 20 percent of industry revenue. For the modern enthusiast photographer processing black and white film, little has changed since the introduction of the 35mm film Leica camera in 1925.[citation needed]
The first digitally scanned photograph was produced in 1957. The digital scanning process was invented by Russell A. Kirsch, a computer pioneer at the National Institute of Standards and Technology. He developed the system capable of feeding a camera's images into a computer. His first fed image was that of his son, Walden Kirsch. The photo was set at 176x176 pixels.[17]
Color process
Although color photography was explored throughout the 19th century, initial experiments in color resulted in projected temporary images, rather than permanent color images. Moreover until the 1870s the emulsions available were not sensitive to red or green light.
The first color photo, an additive projected image of a tartan ribbon, was taken in 1861 by the Scottish physicist James Clerk Maxwell.[18] Several patentable methods for producing images (by either additive or subtractive methods, see below) were devised from 1862 on by two French inventors (working independently), Louis Ducos du Hauron and Charles Cros.[19] Practical methods to sensitize silver halide film to green and then orange light were discovered in 1873 and 1884 by Hermann W. Vogel, but full sensitivity to red light was not achieved until the early years of the 20th century.
The first fully practical color plate, Autochrome, did not reach the market until 1907. It was based on a screen-plate method, the screen (of filters) being made using dyed dots of potato starch. The screen lets filtered red, green or blue light through each grain to a photographic emulsion in contact with it. The plate is then developed to a negative, and reversed to a positive, which when viewed through the screen restores colors approximating the original.
Other systems of color photography included that used by Sergei Mikhailovich Prokudin-Gorskii, which involved three separate monochrome exposures ('separation negatives') of a still scene through red, green, and blue filters. These required a special machine to display, but the results are impressive even by modern standards. His collection of glass plates was purchased from his heirs by the Library of Congress in 1948, and is now available in digital images.
Development of digital photography
The charge-coupled device (CCD) is the most important invention for digital photography[citation needed]. It was invented in 1969 by Willard Boyle and George E. Smith at AT&T Bell Labs. The lab was working on the Picturephone and on the development of semiconductor bubble memory. Merging these two initiatives, Boyle and Smith conceived of the design of what they termed 'Charge "Bubble" Devices'. The essence of the design was the ability to transfer charge along the surface of a semiconductor.
- 1973 - Fairchild Semiconductor releases the first large image forming CCD chip; 100 rows and 100 columns[20].
- 1975 - Bryce Bayer of Kodak develops the Bayer filter mosaic pattern for CCD color image sensors
- 1986 - Kodak scientists develop the world's first megapixel sensor.
The web has been a popular medium for storing and sharing photos ever since the first photograph was published on the web by Tim Berners-Lee in 1992 (an image of the CERN house band Les Horribles Cernettes). Today popular sites such as Flickr, Picasa and PhotoBucket are used by millions of people to share their pictures.
See also
- History of the camera
- Timeline of photography technology
- List of basic photography topics
- Photography by indigenous peoples of the Americas
References
- ^ a b c Seizing the Light: A History of Photography By Robert Hirsch
- ^ Online Etymology Dictionary
- ^ "Light Through the Ages".
- ^ a b Robert E. Krebs (2004). Groundbreaking Scientific Experiments, Inventions, and Discoveries of the Middle Ages and the Renaissance. Greenwood Publishing Group. ISBN 0-313-32433-6.
- ^ Alistair Cameron Crombie, Science, optics, and music in medieval and early modern thought, p. 205
- ^ Wade, Kaitlyjj; Finger, Stanley (2001). "The eye as an optical instrument: from camera obscura to Helmholtz's perspective". Perception. 30 (10): 1157–77. doi:10.1068/p3210. PMID 11721819.
{{cite journal}}
: CS1 maint: multiple names: authors list (link) - ^ Folpe, Emily Kies (2002). It Happened on Washington Square. Baltimore: Johns Hopkins University Press. p. 94. ISBN 0-8018-7088-7.
- ^ a b [1] By Christine Sutton
- ^ "History of Photography". [FreePhotoCourse.com].
- ^ "Daguerre (1787–1851) and the Invention of Photography". Timeline of Art History. Metropolitan Museum of Art. October 2004 accessdate=2008-05-06.
{{cite web}}
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(help) - ^ Crawford, William (1979). The Keepers of Light: A History and Working Guide to Early Photographic Processes. Dobbs Ferry, New York: Morgan & Morgan. p. 20. ISBN 0-87100-158-6.
- ^ Improvement in photographic pictures, Henry Fox Talbot, United States Patent Office, patent no. 5171, June 26, 1847.
- ^ "Life and work of Janez Puhar | (accessed December 13, 2009)".
- ^ Michael R. Peres (2007). The Focal encyclopedia of photography: digital imaging, theory and applications, history, and science. Focal Press. p. 38. ISBN 978-0-240-80740-9.
- ^ Levenson, G. I. P (1993). "Berkeley, overlooked man of photo science". Photographic Journal. 133 (4): 169–71.
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ignored (help) - ^ Loke, Margarett (July 7, 2000). "Photography review; In a John Brown Portrait, The Essence of a Militant". The New York Times. Retrieved 2007-03-16.
- ^ Listverse.com
- ^ James Clerk Maxwell (2003). The Scientific Papers of James Clerk Maxwell. Courier Dover Publications. p. 449. ISBN 0-486-49560-4.
- ^ Brian, Coe (1976). The Birth of Photography. Ash & Grant. ISBN 0-904069-07-9.
- ^ Janesick, James R (2001). Scientific Charge Coupled Devices. SPIE Press. ISBN 0-8194-3698-4.
Further reading
- Hannavy, John. ENCYCLOPAEDIA OF Nineteenth-Century Photography, 5 volumes [2]
- Clerc, L.P. Photography Theory and Practice, being an English edition of "La Technique Photographique" [3]
External links
- The Photo History Timeline Collection
- A history of photography from its beginnings till the 1920s, by Dr. Robert Leggat
- History of photography, by J. Monge-Najera, University of Costa Rica
- The First Photograph at The University of Texas at Austin
- Alhazen, Kepler and the History of Optics
- Camera Obscura, digital library on the history photographic techniques
- [4]
- [5]