Priestley, Joseph

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[[Image:Jpriestley.jpg|thumb|250px|Joseph Priestley is usually credited for the discovery of [[oxygen]].]]
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[[Image:Jpriestley.jpg|thumb|300px|Joseph Priestley is usually credited for the co-discovery of [[oxygen]].]]
  
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'''Joseph Priestley''' (March 13, 1733 &ndash; February 8, 1804) was an [[England|English]] [[chemistry|chemist]], [[Philosophy|philosopher]], [[Dissenter|dissenting]] [[clergyman]], and [[education|educator]]. As an educator, he promoted the teaching of history, science, and the arts, advocating curricula that reflected contemporary discoveries. As a religiously motivated but dissenting clergyman, he followed and preached a heterodox version of [[Christianity]] that challenged [[Trinitarian theology]].
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As a chemist, he experimented with several different gases becoming famous for his co-discovery of [[oxygen]], which he called "dephlogisticated air" in his determination to defend [[phlogiston theory]] which eventually left him isolated within the scientific community. He also discovered that [[carbon dioxide]] could be dissolved in water to produce a pleasant-tasting drink (soda water). He is also remembered for supporting the American colonists against British rule and for sympathizing with advocates of the [[French Revolution]].
  
'''Joseph Priestley''' ([[March 13]], [[1733]] &ndash; [[February 8]], [[1804]]) was an [[England|English]] [[chemistry|chemist]], [[Philosophy|philosopher]], [[Dissenter|dissenting]] [[clergyman]], and [[education|educator]].<ref>This is a sample footnote.</ref>
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==Early life and education==
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[[File:Joseph priestly statue.JPG|thumb|200px|Statue of Joseph Priestley in Birstall town square]]
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Joseph Priestley was born on March 13, 1733, in Fieldhead, a village near Birstall, about six miles south-west of [[Leeds]], in [[Yorkshire]], [[England]]. His mother died when he was young and he was sent to live with an aunt who was a devout Protestant. He was educated in nonconformist religious schools and excelled in a variety of languages, both classical and modern, including [[Arabic]] and [[Hebrew]]. He also studied what was then known as [[natural history]]. The school he attended, [[Batley Grammar School]], is still in operation, and it now has a section named [[Priestley House]], for children between the ages of two and ten.
  
He is known for his investigations of [[carbon dioxide]] and the co-discovery of [[oxygen]].
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In 1752, he entered the Dissenting Academy at Daventry, Northamptonshire, under the auspices of [[Nonconformism]], and there his religious views took shape. He became an adherent of [[Arianism]] and a fervent [[abolitionist]]. In September 1755, he started as a parish minister in Needham Market, Suffolk, though he was not officially ordained until May 18, 1762.
  
==Early life and education==
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Because he [[Stuttering|stammer]]ed, and the parish was neither suited to his [[heterodox]] ideas, nor wanting a bachelor for their minister, Priestley was unpopular in his Suffolk parish and ultimately went to Nantwich, [[Cheshire]]. He established a private school with 36 students in connection with the church in Nantwich where he preached, and derived his income from that school. He received his LL.D. degree from the [[University of Edinburgh]] in 1765.
He was born in [[Birstall, West Yorkshire|Birstall]] parish, six miles from [[Leeds]], [[Yorkshire]]. He learned a variety of languages, both classical and modern, in his youth, including several [[Semitic languages]]. He also studied what was then known as [[natural history]]. The school he attended, [[Batley Grammar School]], still exists, and it now has a junior and infants section for children between the ages of 2-10 named [[Priestley House]].
 
  
In 1751 he entered [[Daventry]], a school under the auspices of [[Nonconformism]], and there his religious views took shape. He became an adherent of [[Arianism]] and a fervent [[abolitionist]]. In September, [[1755]], he started as a parish minister in Needham Market, Suffolk, though he was not officially ordained until [[18 May]], [[1762]].  
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==Warrington==
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Priestley took a position in Warrington Acadamey in Lancashire, the largest of the dissenting academies in England, as a tutor in [[belles-lettres]] (the term "belles-lettres," literally meaning "beautiful" or "fine" letters, refers to literary works, particularly fiction, poetry, drama, or essays, a term once used for literature in general). By this time, his religious ideas had matured to [[Socinianism]], an antecedent of [[Unitarianism]]. At [[Warrington]], he associated with other liberal-minded tutors.
  
Because he stammered, and the parish was neither suited to his [[heterodox]] ideas, nor wanting a bachelor for their minister, Priestley was unpopular in his Suffolk parish and ultimately went to Nantwich, [[Cheshire]]. He established a private school in connection with the church in Nantwich where he preached, and derived his income from that school.
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A sympathetic printer, William Eyres, was willing to publish Priestley's work. It was here that he published his [[grammar]] book in 1761 (a remarkably liberal grammar for its day) and other books on history and educational theory.
  
==Warrington==
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While at Warrington, Priestley developed courses that placed an emphasis on history, science, and the arts. He advocated school curricula that reflected contemporary  discoveries, reasoning such an approach would better prepare students for the practical realities of life. He taught [[anatomy]] and [[astronomy]] and led field trips for his students to collect [[fossil]]s and [[botany|botanical]] specimens. Both modern [[history]] and the [[science]]s were subjects that had not been taught in any schools before Priestley. Warrington Academy became the foremost school of its kind in England.<ref> ''World of Biology'' (Gale Group, 1999).</ref>
Subsequently he went to [[Warrington Academy]], the biggest of the dissenting academies in England, as a tutor in [[belles-lettres]]. By this time his religious ideas had matured to [[Socinianism]], a form of [[Unitarianism]]. At [[Warrington]], he associated with other liberal-minded tutors. A sympathetic printer, William Eyres, was willing to publish his work. It was here that he published his [[grammar]] book in 1761 (a remarkably liberal grammar for its day) and other books on history and educational theory. He taught [[anatomy]] and [[astronomy]] and led field trips for his students to collect [[fossil]]s and [[botany|botanical]] specimens. Both modern [[history]] and the [[science]]s were subjects which had not been taught in any schools before Priestley.
 
  
 
==Leeds==
 
==Leeds==
On [[23 June]] [[1762]], Priestley married Mary Wilkinson of Wrexham, and by September [[1767]] the combination of his finances and her health caused him to relocate to Leeds. He there took charge of the Mill Hill congregation. In Leeds Priestley also published two political works, ''Essay on the First Principles of Government'' (1768) and ''The Present State of Liberty in Great Britain and her Colonies'' (1769). In 1769 followed ''Remarks on Dr. Blackstone's Commentaries'', where he defended constitutional rights of dissenters against [[William Blackstone]].  
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On June 23, 1762, Priestley married Mary Wilkinson of Wrexham. Yet, by September 1767, the combination of his finances and her poor health caused him to accept a pastorate in Leeds, where he took charge of the Mill Hill congregation. During his tenure at Mill Hill, he published two political works, ''Essay on the First Principles of Government'' (1768) and ''The Present State of Liberty in Great Britain and her Colonies'' (1769). In 1769, he offered ''Remarks on Dr. Blackstone's Commentaries,'' where he defended constitutional rights of dissenters against [[William Blackstone]].
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Priestley's house was next to a [[brewery]], and he became fascinated with the layer of dense gas that hung over the giant vats of fermenting [[beer]]. His first experiments showed that the gas would extinguish lighted wood chips. He then noticed that the gas appeared to be heavier than normal air, as it remained in the vats and did not mix with the air in the room. The distinctive gas, which Priestley called "fixed air," had already been discovered and named "[[mephitic air]]" by [[Joseph Black]]. It was, in fact, [[carbon dioxide]]. Priestley discovered a method of impregnating water with the carbon dioxide by placing a bowl of water above a vat of fermenting beer. The carbon dioxide soon became dissolved in the water to produce [[Carbonated water|soda water]], and Priestley found that the impregnated water developed a pleasant acidic taste. In 1773, he published an article on the carbonation of water (soda water), which won him the Royal Society's Copley Medal and brought much attention to his scientific work.
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He began to offer the treated water to friends as a refreshing drink. In 1772, Priestley published a paper entitled ''Impregnating Water with Fixed Air,'' in which he described a process of dripping [[sulfuric acid]] (or [[oil of vitriol]] as Priestley knew it) onto [[chalk]] to produce carbon dioxide and forcing the gas to dissolve by agitating a bowl of water in contact with the gas.
  
Priestley's house was next to a [[brewery]] and Priestley began to experiment with the gas given off by fermenting [[beer]]. His first experiments involved demonstrating that the gas would extinguish lighted wood chips. He then noticed that the gas appeared to be heavier than normal air as it remained in the vats and did not mix with the air in the room. The gas, which Priestley called "fixed air" and had already been discovered and named "[[mephitic air]]" by [[Joseph Black]], was [[carbon dioxide]]. Priestley discovered a method of impregnating water with the carbon dioxide by placing a bowl of water above a vat of fermenting [[beer]]. The carbon dioxide soon became dissolved in the water (producing [[Carbonated water|soda water]]) and Priestley found that the impregnated water developed a pleasant sweet acidic taste.  
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As early as 1766, Preistley met [[Benjamin Franklin]] in London, and the association between the two men of science was fruitful, leading the former to methodical explorations of electricity and ultimately to publish a definitive history of electrical research. Later, based on the support of Benjamin Franklin, Priestley was hired by [[William Petty, 2nd Earl of Shelburne|Lord Shelburne]] as his personal librarian and stayed in that post until 1780. It was here that he conducted the majority of his extensive chemical research, including the discovery of various gases.
  
He began to offer the treated water to friends as a refreshing drink. In 1772 Priestley published a paper entitled ''Impregnating Water with Fixed Air'' in which he described a process of dripping [[sulfuric acid]] (or [[oil of vitriol]] as Priestley knew it) onto chalk in order to produce carbon dioxide and forcing the gas to dissolve by agitating a bowl of water in contact with the gas. In December, 1772, at the instigation of [[Benjamin Franklin]], Priestley was hired by [[William Petty, 2nd Earl of Shelburne|Lord Shelburne]], as his personal librarian, and stayed in that post until 1780.
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While tutoring his benefactor's sons at [[Bowood House]] near [[Calne]] in 1774, he discovered a gas that French scientist [[Antoine Lavoisier]] would later name [[oxygen]]. Priestley was not yet aware of [[Swedish chemist Carl Wilhelm Scheele]]'s prior experiments with the same gas sometime before 1775. J.B. Priestley published his findings in the year 1775, in ''Experiments and Observations on Different Kinds of Air''. Later, in 1777, Scheele's discovery was published in his book, ''Chemical Treatise on Air and Fire''.
  
In 1772 Priestley wrote ''Observations on Civil Liberty and the Nature and Justice of the War with America''. Whilst tutoring his benefactor's sons at [[Bowood House]] near [[Calne]] in [[1774]] he discovered [[oxygen]], unaware of [[Carl Wilhelm Scheele]]'s prior discovery sometime before 1773. Priestley's discovery was published in 1775 in '''Experiments and Observations on Different Kinds of Air''' and in 1777 Scheele's discovery was published in his book ''Chemical Treatise on Air and Fire''.  
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Both Priestley and Scheele were unaware that oxygen was a [[chemical element]]. Priestley named the gas (which he had generated by heating red mercuric oxide with a "burning lens") "de-phlogisticated air," in accordance with the [[phlogiston theory]] commonly held at the time.
  
Both Priestley and Scheele were unaware that oxygen was a [[chemical element]]; Priestley named the gas (which he had generated by heating red mercuric oxide with a "burning lens") "de-phlogisticated air", in accordance with the [[phlogiston theory]] which held at the time. In his experiments he managed to identify eight distinct gases,  disproving the commonly held view that there was just one "air".
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Priestley's concept of this new-found "air" (or gas), which dramatically supported and enhanced combustion, was shaped by his attachment to the prevalent "phlogiston" theory. [[Phlogiston]] was thought to to be a substance that gave materials their ability to burn. An awkward explanation was offered that somehow this substance (phlogiston) with "negative weight" was released during the burning process and the surrounding air (or gas) must exhibit the capacity to absorb this phlogiston.
<<Please add a short explanation of "phlogiston theory" and what Priestley meant by "de-phlogisticated air". You can consult our article on [[Oxygen]] and Wikipedia's article on phlogiston theory.>>
 
  
In [[1777]], he wrote ''The Doctrine of Philosophical Necessity''. This book was devoted to the subject of the freedom of the human will. [[Schopenhauer]], in his ''[[On the Freedom of the Will]]'', in [[1839]], included Priestley as one of three great men who completely changed their minds regarding this subject. "This proves," he wrote, "how difficult and deep down is the correct insight into our problem." The other two great men, Schopenhauer wrote, were [[Spinoza]] and [[Voltaire]]. Priestley wrote that "There is no absurdity more glaring to my understanding, than the notion of philosophical liberty. &mdash; Without a miracle, or the intervention of some foreign cause, no volition or action of any man could have been otherwise, than it has been."
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Priestley accurately observed that the new gas he discovered could support combustion for longer periods than ordinary air. His interpretation was that this gas contained no phlogiston and could thus absorb more of it than could ordinary air. Following this line of logic, he called the gas "dephlogisticated air." In fact, Priestley rated the quality of various airs by their relative ability to absorb phlogiston, among other important properties. Preistley's writings about his discoveries gave the necessary clue that enabled [[Antoine-Laurent Lavoisier]], the French scientist, to recognize the error in Priestley's theory. Lavoisier correctly asserted the gas to be one of the active causes of combustion rather than the receiver of the supposed phlogiston. Lavoisier named the gas "oxygen" and effectively laid the phlogiston theory to rest. Priestley nevertheless defended the outdated theory.
  
There is a statue of Priestley in [[Leeds City Square]].
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Priestley is considered to have been a better experimentalist than a theorist, as is evidenced by the multitude of his observations and creative experiments.
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Priestley's wide interests and capacity to intuitively sense the interrelationship of previously unrecognized phenomena led him from chemistry to biology with relative ease. He recognized that production of "good air" (later known as oxygen) was related to [[respiration]] of [[plant]]s and that this offset the production of carbon dioxide produced by [[animal]]s. His observations in this area could be seen as  seminal in the development of [[biological science]] and the awareness of the interdependence between the animal and plant worlds.
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"The injury which is continually done to the atmosphere by the respiration of such a large number of animals…is, in part at least, repaired by the vegetable creation."<ref>Ann Holt, ''A Life of Joseph Priestley'' (London: Oxford University Press, 1931).</ref>
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Preistley held the post of librarian to Lord Shelburne from 1772 to 1780, and was able to research and identify other gases including nitrogen, ammonia, nitrous oxide, hydrogen chloride, and sulfur dioxide. This he accomplished by means of an ingenious adaptation of the pneumatic trough, using [[mercury]] instead of water in isolating his gases.
  
 
==Birmingham==
 
==Birmingham==
 
[[Image:Chamberlain Square Statue Priestley.jpg|right|thumb|Statue of Joseph Priestley in [[Chamberlain Square]], Birmingham]]
 
[[Image:Chamberlain Square Statue Priestley.jpg|right|thumb|Statue of Joseph Priestley in [[Chamberlain Square]], Birmingham]]
In 1780 he moved to [[Birmingham]] and was appointed junior minister of the New Meeting Society. He became a member of the [[Lunar Society]], but his admiration for the [[French Revolution]] caused him to be driven out of the city in the [[Priestley Riots]] of [[1791]]. He is remembered there by the [[Lunar Society Moonstones|Moonstones]], and a more traditional statue in [[Chamberlain Square]] in the city centre. The latter is a [[1951]] recast, in [[bronze]], of a white [[marble]] original by [[A. W. Williamson]], unveiled in 1874.
 
 
There is a [[Blue Plaque]] comemorating him on on the side of the Church of St Michael and St Joseph, New Meeting House Lane, Birmingham [http://www.birminghamcivicsociety.org.uk/blueplaques.htm], and another on the Warrington Salvation Army Citadel, once the home of Priestley[http://img.cryst.bbk.ac.uk/BCA/CNews/1998/Sep98/PLinfo.html].
 
  
==London and USA==
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Priestley's philosophical influence extended beyond his scientific work and included many publications and activities that were considered radical in eighteenth century England. He was involved in controversy over religion and politics. In 1782, he published ''The History of the Corruption of Christianity,'' which was officially burned by the Church of England in 1785. He supported the American colonists' war against England and expressed sympathy for supporters of the French Revolution (which broke out in 1789).
He next moved to London where he received an invitation to become morning preacher at Gravel Pit Chapel, [[London Borough of Hackney|Hackney]]. His three sons emigrated to the [[United States]] in 1793. The following June, Priestley followed them, seeking political and religious freedom. Although never [[naturalisation|naturalised]], he lived in [[Northumberland, Pennsylvania]], for the last decade of his life until his death at the age of 70. Priestley is buried in rural Northumberland, Pennsylvania.
 
  
==Honors and extras==
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In 1780, he moved to [[Birmingham]] and was appointed junior minister of the New Meeting Society. He became a member of the [[Lunar Society]], but his admiration for the [[French Revolution]] caused him to be driven out of the city in the [[Priestley Riots]] of 1791. His home and laboratory were burned to the ground by an unruly mob and he fled to London for a time.
[[Image:Priestly home.jpg|thumb|150px|Joseph Priestley's home in rural Northumberland, Pennsylvania.]]
 
  
* The [[American Chemical Society]]'s highest honour, the [[Priestley Medal]], is named for him.
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==London and United States==
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In [[London]], Priestley received an invitation to become morning preacher at Gravel Pit Chapel, [[London Borough of Hackney|Hackney]]. His three sons emigrated to the [[United States]] in 1793. The following June, when he was 60 years of age, he and his wife followed them, seeking political and religious freedom. Although never [[naturalisation|naturalized]], he lived in [[Northumberland, Pennsylvania]], for the last decade of his life.
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[[File:Priestley House Front 2.jpg|thumb|250px|left|Joseph Priestley's home in rural Northumberland, Pennsylvania.]]
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He became a friend of [[Thomas Jefferson]], among other political figures. An essay written by Priestley in 1768, was used by Jefferson as an inspiration for ideas included in the [[Declaration of Independence]].
  
* [[Priestley College]] in [[Warrington]] is a sixth form college (for 16&ndash;19 year olds) named in his honour. It is the largest sixth form college in Warrington, and within its main building, a statue of Joseph Priestley stands, watching over the students as they pass through the reception area.
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Priestley quietly passed away on February 6, 1804, while in the presence of his family at home. He is buried in rural Northumberland, Pennsylvania.
  
* The writer [[Hilaire Belloc]] was Priestley's great-grandson.
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==Legacy==
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By the time he died in 1804, Priestley had been made a member of every major scientific society in the Western world and he had discovered numerous substances.<ref name=Schofield>Robert E. Schofield, ''The Enlightened Joseph Priestley: A Study of His Life and Works from 1773 to 1804'' (University Park, PA: Pennsylvania State University Press, 2004, ISBN 0271024593).</ref> The nineteenth-century French naturalist [[George Cuvier]], in his eulogy of Priestley, praised his discoveries while at the same time lamenting his refusal to abandon [[phlogiston]] theory, calling him "the father of modern chemistry [who] never acknowledged his daughter."<ref>Qtd. in John McLachlan, ''Joseph Priestley, Man of Science, 1733-1804: An Iconography of a Great Yorkshireman'' (Braunton, Devon: Merlin Books, 1983, ISBN 0863030521).</ref> Priestley published more than 150 works on topics ranging from political philosophy to education to theology to natural philosophy.<ref>T. E. Thorpe, ''Joseph Priestley'' (London: J. M. Dent, 1906).</ref> He led and inspired British radicals during the 1790s, paved the way for [[utilitarianism]],<ref name=Tapper>Alan Tapper, "Joseph Priestley." ''Dictionary of Literary Biography 252: British Philosophers 1500–1799''. Eds. Philip B. Dematteis and Peter S. Fosl. (Detroit, MI: Gale Group, 2002).</ref> and helped found [[Unitarianism]].<ref name=Schofield/> A wide variety of philosophers, scientists, and poets became [[Association of Ideas|associationists]] as a result of his [[redaction]] of David Hartley's ''[[Observations on Man]]'', including [[Erasmus Darwin]], Coleridge, [[William Wordsworth]], [[John Stuart Mill]], [[Alexander Bain]], and [[Herbert Spencer]].<ref name=Schofield/> [[Immanuel Kant]] praised Priestley in his ''[[Critique of Pure Reason]]'' (1781), writing that he "knew how to combine his paradoxical teaching with the interests of religion".<ref name=Tapper/> Indeed, it was Priestley's aim to "put the most 'advanced' Enlightenment ideas into the service of a rationalized though heterodox Christianity, under the guidance of the basic principles of scientific method."<ref name=Tapper/>
  
==See also==
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Considering the extent of Priestley's influence, relatively little scholarship has been devoted to him. In the early twentieth century, Priestley was most often described as a conservative and dogmatic scientist who was nevertheless a political and religious reformer. In a historiographic review essay, historian of science [[Simon Schaffer]] described the two dominant portraits of Priestley: the first depicts him as "a playful innocent" who stumbled across his discoveries; the second portrays him as innocent as well as "warped" for not understanding their implications better. Assessing Priestley's works as a totality has been difficult for scholars because of his wide-ranging interests. His scientific discoveries have usually been divorced from his theological and metaphysical publications to make an analysis of his life and writings easier, but this approach has been challenged by scholars such as John McEvoy and Robert Schofield. Although early Priestley scholarship claimed that his theological and metaphysical works were "distractions" and "obstacles" to his scientific work, scholarship published in the 1960s, 1970s, and 1980s maintained that Priestley's works constituted a unified theory. However, as Schaffer explains, no convincing synthesis of his work has yet been expounded.<ref>Simon Schaffer, "Priestley Questions: An Historiographic Survey." ''History of Science'' 22.2 (1984): 151–83.</ref> More recently, in 2001, historian of science Dan Eshet argued that efforts to create a "synoptic view" have resulted only in a rationalization of the contradictions in Priestley's thought, because they have been "organized around philosophical categories" and have "separate[d] the producers of scientific ideas from any social conflict".<ref>Dan Eshet, "Rereading Priestley." ''History of Science'' 39.2 (2001): 127–59.</ref>
  
*[[Antoine Lavoisier]]
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Priestley is remembered by the towns in which he served as a reforming educator and minister and by the scientific organizations he influenced. Two educational institutions have been named in his honor—[[Priestley College]] in Warrington and [[Joseph Priestley College]] in [[City of Leeds|Leeds]] (now part of [[Leeds City College]])—and an [[asteroid]], [[5577 Priestley]], discovered in 1986 by [[Duncan Waldron]].<ref>Lutz D. Schmadel, ''Dictionary of Minor Planet Names'' (Springer, 2003), 474.</ref> In Birstall, the [[Leeds City Square]], and in [[Chamberlain Square|Birmingham]], he is memorialized through statues, and plaques commemorating him have been posted in Birmingham and Warrington. The main undergraduate chemistry laboratories at the [[University of Leeds]] were refurbished as part of a £4m refurbishment plan in 2006 and renamed as the Priestley Laboratories in his honour as a prominent chemist from Leeds.<ref>[http://reporter.leeds.ac.uk/press_releases/current/assets/sainsbury1.pdf The official opening of the Priestley Laboratories by Lord Sainsbury], University of Leeds, October 20, 2006. Retrieved May 12, 2014.</ref>
*[[Liberalism]]
 
* [[Oxygen]]
 
  
== Footnotes ==
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== Notes ==
<<The following is a sample footnote. Actual footnotes will appear once created within the text of the article. Please retain the coding "references /" below.>>
 
 
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<references />
  
 
== References ==
 
== References ==
<<Please add at least 3 good references here. The references may be books and/or Web sites, but they need to be formatted according to the style given in our Writer's Manual.>>
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*  Philip B. Dematteis and Peter S. Fosl (Eds.). ''Dictionary of Literary Biography 252: British Philosophers 1500–1799''. Detroit, MI: Gale Group, 2002. ISBN 978-0787646691
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* ''Encyclopedia of World Biography,'' 2nd ed. 17 vols. Gale Research. ISBN 978-0787622213
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* Holt, Anne. ''A Life of Joseph Priestley''. London: Oxford University Press, 1931. ISBN 0837142407
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* "Joseph Priestley," in ''World of Chemistry.'' Gale Group, 1999.
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* McLachlan, John. ''Joseph Priestley, Man of Science, 1733-1804: An Iconography of a Great Yorkshireman''. Braunton, Devon: Merlin Books, 1983. ISBN 0863030521
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* Rhees, David J. ''Joseph Priestley, Enlightened Chemist: Catalogue to an Exhibit Celebrating the 250th Birthday of Joseph Priestley and the Inauguration of the Center for History of Chemistry''. Philadelphia: Center for History of Chemistry, 1983. ISBN 0941901009
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* Schmadel, Lutz D. ''Dictionary of Minor Planet Names''. New York: Springer, 2003. ISBN 978-3540662921
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* Schofield, Robert E. ''The Enlightenment of Joseph Priestley: A Study of His Life and Work from 1733 to 1773''. University Park, PA: Pennsylvania State University Press, 1998. ISBN 0271016620
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* Schofield, Robert E. ''The Enlightened Joseph Priestley: A Study of His Life and Works from 1773 to 1804''. University Park, PA: Pennsylvania State University Press, 2004. ISBN 0271024593
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* Smith, Edgar Fahs. ''Priestley in America, 1794-1804''. Philadelphia, PA: P. Blakiston's Son & Co., 1920.
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* Thorpe, T. E. ''Joseph Priestley''. London: J. M. Dent, 1906.
  
 
==External links==
 
==External links==
* [http://www.priestleysociety.net/ The Joseph Priestley Society]
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All links retrieved August 10, 2022.
*[http://www.woodrow.org/teachers/chemistry/institutes/1992/Priestley.html A comprehensive Biography at the Woodrow Wilson National Fellowship Foundation]
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*[http://www.priestley.ac.uk/ Priestley College, Warrington, named for Joseph Priestley].  
*[http://www.thoemmes.com/encyclopedia/priestley.htm A detailed biographical article from the Thoemmes Dictionary of Eighteenth-Century British Philosophers.]
 
*[http://www.priestley.ac.uk/ Priestley Sixth Form College, Warrington, named for Joseph Priestley]
 
*[http://www.search.revolutionaryplayers.org.uk/engine/custom/people.asp?theme=47&text=0 Priestley artifacts on display] at "Revolutionary Players" [[industrial revolution]] website, URL accessed [[August 14]], [[2006]]
 
*[http://www.harvardsquarelibrary.org/UIA%20Online/preistley.html Joseph Priestly Biography, part of a series of famous American Unitarians.]
 
  
 
[[Category:Physical sciences]]
 
[[Category:Physical sciences]]
[[Category:Biographies of Scientists and Inventors]]
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[[Category:Biographies of Scientists and Mathematicians]]
 
[[Category:Biography]]
 
[[Category:Biography]]
  
 
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Latest revision as of 00:48, 11 August 2022

Joseph Priestley is usually credited for the co-discovery of oxygen.

Joseph Priestley (March 13, 1733 – February 8, 1804) was an English chemist, philosopher, dissenting clergyman, and educator. As an educator, he promoted the teaching of history, science, and the arts, advocating curricula that reflected contemporary discoveries. As a religiously motivated but dissenting clergyman, he followed and preached a heterodox version of Christianity that challenged Trinitarian theology.

As a chemist, he experimented with several different gases becoming famous for his co-discovery of oxygen, which he called "dephlogisticated air" in his determination to defend phlogiston theory which eventually left him isolated within the scientific community. He also discovered that carbon dioxide could be dissolved in water to produce a pleasant-tasting drink (soda water). He is also remembered for supporting the American colonists against British rule and for sympathizing with advocates of the French Revolution.

Early life and education

Statue of Joseph Priestley in Birstall town square

Joseph Priestley was born on March 13, 1733, in Fieldhead, a village near Birstall, about six miles south-west of Leeds, in Yorkshire, England. His mother died when he was young and he was sent to live with an aunt who was a devout Protestant. He was educated in nonconformist religious schools and excelled in a variety of languages, both classical and modern, including Arabic and Hebrew. He also studied what was then known as natural history. The school he attended, Batley Grammar School, is still in operation, and it now has a section named Priestley House, for children between the ages of two and ten.

In 1752, he entered the Dissenting Academy at Daventry, Northamptonshire, under the auspices of Nonconformism, and there his religious views took shape. He became an adherent of Arianism and a fervent abolitionist. In September 1755, he started as a parish minister in Needham Market, Suffolk, though he was not officially ordained until May 18, 1762.

Because he stammered, and the parish was neither suited to his heterodox ideas, nor wanting a bachelor for their minister, Priestley was unpopular in his Suffolk parish and ultimately went to Nantwich, Cheshire. He established a private school with 36 students in connection with the church in Nantwich where he preached, and derived his income from that school. He received his LL.D. degree from the University of Edinburgh in 1765.

Warrington

Priestley took a position in Warrington Acadamey in Lancashire, the largest of the dissenting academies in England, as a tutor in belles-lettres (the term "belles-lettres," literally meaning "beautiful" or "fine" letters, refers to literary works, particularly fiction, poetry, drama, or essays, a term once used for literature in general). By this time, his religious ideas had matured to Socinianism, an antecedent of Unitarianism. At Warrington, he associated with other liberal-minded tutors.

A sympathetic printer, William Eyres, was willing to publish Priestley's work. It was here that he published his grammar book in 1761 (a remarkably liberal grammar for its day) and other books on history and educational theory.

While at Warrington, Priestley developed courses that placed an emphasis on history, science, and the arts. He advocated school curricula that reflected contemporary discoveries, reasoning such an approach would better prepare students for the practical realities of life. He taught anatomy and astronomy and led field trips for his students to collect fossils and botanical specimens. Both modern history and the sciences were subjects that had not been taught in any schools before Priestley. Warrington Academy became the foremost school of its kind in England.[1]

Leeds

On June 23, 1762, Priestley married Mary Wilkinson of Wrexham. Yet, by September 1767, the combination of his finances and her poor health caused him to accept a pastorate in Leeds, where he took charge of the Mill Hill congregation. During his tenure at Mill Hill, he published two political works, Essay on the First Principles of Government (1768) and The Present State of Liberty in Great Britain and her Colonies (1769). In 1769, he offered Remarks on Dr. Blackstone's Commentaries, where he defended constitutional rights of dissenters against William Blackstone.

Priestley's house was next to a brewery, and he became fascinated with the layer of dense gas that hung over the giant vats of fermenting beer. His first experiments showed that the gas would extinguish lighted wood chips. He then noticed that the gas appeared to be heavier than normal air, as it remained in the vats and did not mix with the air in the room. The distinctive gas, which Priestley called "fixed air," had already been discovered and named "mephitic air" by Joseph Black. It was, in fact, carbon dioxide. Priestley discovered a method of impregnating water with the carbon dioxide by placing a bowl of water above a vat of fermenting beer. The carbon dioxide soon became dissolved in the water to produce soda water, and Priestley found that the impregnated water developed a pleasant acidic taste. In 1773, he published an article on the carbonation of water (soda water), which won him the Royal Society's Copley Medal and brought much attention to his scientific work.

He began to offer the treated water to friends as a refreshing drink. In 1772, Priestley published a paper entitled Impregnating Water with Fixed Air, in which he described a process of dripping sulfuric acid (or oil of vitriol as Priestley knew it) onto chalk to produce carbon dioxide and forcing the gas to dissolve by agitating a bowl of water in contact with the gas.

As early as 1766, Preistley met Benjamin Franklin in London, and the association between the two men of science was fruitful, leading the former to methodical explorations of electricity and ultimately to publish a definitive history of electrical research. Later, based on the support of Benjamin Franklin, Priestley was hired by Lord Shelburne as his personal librarian and stayed in that post until 1780. It was here that he conducted the majority of his extensive chemical research, including the discovery of various gases.

While tutoring his benefactor's sons at Bowood House near Calne in 1774, he discovered a gas that French scientist Antoine Lavoisier would later name oxygen. Priestley was not yet aware of Swedish chemist Carl Wilhelm Scheele's prior experiments with the same gas sometime before 1775. J.B. Priestley published his findings in the year 1775, in Experiments and Observations on Different Kinds of Air. Later, in 1777, Scheele's discovery was published in his book, Chemical Treatise on Air and Fire.

Both Priestley and Scheele were unaware that oxygen was a chemical element. Priestley named the gas (which he had generated by heating red mercuric oxide with a "burning lens") "de-phlogisticated air," in accordance with the phlogiston theory commonly held at the time.

Priestley's concept of this new-found "air" (or gas), which dramatically supported and enhanced combustion, was shaped by his attachment to the prevalent "phlogiston" theory. Phlogiston was thought to to be a substance that gave materials their ability to burn. An awkward explanation was offered that somehow this substance (phlogiston) with "negative weight" was released during the burning process and the surrounding air (or gas) must exhibit the capacity to absorb this phlogiston.

Priestley accurately observed that the new gas he discovered could support combustion for longer periods than ordinary air. His interpretation was that this gas contained no phlogiston and could thus absorb more of it than could ordinary air. Following this line of logic, he called the gas "dephlogisticated air." In fact, Priestley rated the quality of various airs by their relative ability to absorb phlogiston, among other important properties. Preistley's writings about his discoveries gave the necessary clue that enabled Antoine-Laurent Lavoisier, the French scientist, to recognize the error in Priestley's theory. Lavoisier correctly asserted the gas to be one of the active causes of combustion rather than the receiver of the supposed phlogiston. Lavoisier named the gas "oxygen" and effectively laid the phlogiston theory to rest. Priestley nevertheless defended the outdated theory.

Priestley is considered to have been a better experimentalist than a theorist, as is evidenced by the multitude of his observations and creative experiments.

Priestley's wide interests and capacity to intuitively sense the interrelationship of previously unrecognized phenomena led him from chemistry to biology with relative ease. He recognized that production of "good air" (later known as oxygen) was related to respiration of plants and that this offset the production of carbon dioxide produced by animals. His observations in this area could be seen as seminal in the development of biological science and the awareness of the interdependence between the animal and plant worlds.

"The injury which is continually done to the atmosphere by the respiration of such a large number of animals…is, in part at least, repaired by the vegetable creation."[2]

Preistley held the post of librarian to Lord Shelburne from 1772 to 1780, and was able to research and identify other gases including nitrogen, ammonia, nitrous oxide, hydrogen chloride, and sulfur dioxide. This he accomplished by means of an ingenious adaptation of the pneumatic trough, using mercury instead of water in isolating his gases.

Birmingham

Statue of Joseph Priestley in Chamberlain Square, Birmingham

Priestley's philosophical influence extended beyond his scientific work and included many publications and activities that were considered radical in eighteenth century England. He was involved in controversy over religion and politics. In 1782, he published The History of the Corruption of Christianity, which was officially burned by the Church of England in 1785. He supported the American colonists' war against England and expressed sympathy for supporters of the French Revolution (which broke out in 1789).

In 1780, he moved to Birmingham and was appointed junior minister of the New Meeting Society. He became a member of the Lunar Society, but his admiration for the French Revolution caused him to be driven out of the city in the Priestley Riots of 1791. His home and laboratory were burned to the ground by an unruly mob and he fled to London for a time.

London and United States

In London, Priestley received an invitation to become morning preacher at Gravel Pit Chapel, Hackney. His three sons emigrated to the United States in 1793. The following June, when he was 60 years of age, he and his wife followed them, seeking political and religious freedom. Although never naturalized, he lived in Northumberland, Pennsylvania, for the last decade of his life.

Joseph Priestley's home in rural Northumberland, Pennsylvania.

He became a friend of Thomas Jefferson, among other political figures. An essay written by Priestley in 1768, was used by Jefferson as an inspiration for ideas included in the Declaration of Independence.

Priestley quietly passed away on February 6, 1804, while in the presence of his family at home. He is buried in rural Northumberland, Pennsylvania.

Legacy

By the time he died in 1804, Priestley had been made a member of every major scientific society in the Western world and he had discovered numerous substances.[3] The nineteenth-century French naturalist George Cuvier, in his eulogy of Priestley, praised his discoveries while at the same time lamenting his refusal to abandon phlogiston theory, calling him "the father of modern chemistry [who] never acknowledged his daughter."[4] Priestley published more than 150 works on topics ranging from political philosophy to education to theology to natural philosophy.[5] He led and inspired British radicals during the 1790s, paved the way for utilitarianism,[6] and helped found Unitarianism.[3] A wide variety of philosophers, scientists, and poets became associationists as a result of his redaction of David Hartley's Observations on Man, including Erasmus Darwin, Coleridge, William Wordsworth, John Stuart Mill, Alexander Bain, and Herbert Spencer.[3] Immanuel Kant praised Priestley in his Critique of Pure Reason (1781), writing that he "knew how to combine his paradoxical teaching with the interests of religion".[6] Indeed, it was Priestley's aim to "put the most 'advanced' Enlightenment ideas into the service of a rationalized though heterodox Christianity, under the guidance of the basic principles of scientific method."[6]

Considering the extent of Priestley's influence, relatively little scholarship has been devoted to him. In the early twentieth century, Priestley was most often described as a conservative and dogmatic scientist who was nevertheless a political and religious reformer. In a historiographic review essay, historian of science Simon Schaffer described the two dominant portraits of Priestley: the first depicts him as "a playful innocent" who stumbled across his discoveries; the second portrays him as innocent as well as "warped" for not understanding their implications better. Assessing Priestley's works as a totality has been difficult for scholars because of his wide-ranging interests. His scientific discoveries have usually been divorced from his theological and metaphysical publications to make an analysis of his life and writings easier, but this approach has been challenged by scholars such as John McEvoy and Robert Schofield. Although early Priestley scholarship claimed that his theological and metaphysical works were "distractions" and "obstacles" to his scientific work, scholarship published in the 1960s, 1970s, and 1980s maintained that Priestley's works constituted a unified theory. However, as Schaffer explains, no convincing synthesis of his work has yet been expounded.[7] More recently, in 2001, historian of science Dan Eshet argued that efforts to create a "synoptic view" have resulted only in a rationalization of the contradictions in Priestley's thought, because they have been "organized around philosophical categories" and have "separate[d] the producers of scientific ideas from any social conflict".[8]

Priestley is remembered by the towns in which he served as a reforming educator and minister and by the scientific organizations he influenced. Two educational institutions have been named in his honor—Priestley College in Warrington and Joseph Priestley College in Leeds (now part of Leeds City College)—and an asteroid, 5577 Priestley, discovered in 1986 by Duncan Waldron.[9] In Birstall, the Leeds City Square, and in Birmingham, he is memorialized through statues, and plaques commemorating him have been posted in Birmingham and Warrington. The main undergraduate chemistry laboratories at the University of Leeds were refurbished as part of a £4m refurbishment plan in 2006 and renamed as the Priestley Laboratories in his honour as a prominent chemist from Leeds.[10]

Notes

  1. World of Biology (Gale Group, 1999).
  2. Ann Holt, A Life of Joseph Priestley (London: Oxford University Press, 1931).
  3. 3.0 3.1 3.2 Robert E. Schofield, The Enlightened Joseph Priestley: A Study of His Life and Works from 1773 to 1804 (University Park, PA: Pennsylvania State University Press, 2004, ISBN 0271024593).
  4. Qtd. in John McLachlan, Joseph Priestley, Man of Science, 1733-1804: An Iconography of a Great Yorkshireman (Braunton, Devon: Merlin Books, 1983, ISBN 0863030521).
  5. T. E. Thorpe, Joseph Priestley (London: J. M. Dent, 1906).
  6. 6.0 6.1 6.2 Alan Tapper, "Joseph Priestley." Dictionary of Literary Biography 252: British Philosophers 1500–1799. Eds. Philip B. Dematteis and Peter S. Fosl. (Detroit, MI: Gale Group, 2002).
  7. Simon Schaffer, "Priestley Questions: An Historiographic Survey." History of Science 22.2 (1984): 151–83.
  8. Dan Eshet, "Rereading Priestley." History of Science 39.2 (2001): 127–59.
  9. Lutz D. Schmadel, Dictionary of Minor Planet Names (Springer, 2003), 474.
  10. The official opening of the Priestley Laboratories by Lord Sainsbury, University of Leeds, October 20, 2006. Retrieved May 12, 2014.

References
ISBN links support NWE through referral fees

  • Philip B. Dematteis and Peter S. Fosl (Eds.). Dictionary of Literary Biography 252: British Philosophers 1500–1799. Detroit, MI: Gale Group, 2002. ISBN 978-0787646691
  • Encyclopedia of World Biography, 2nd ed. 17 vols. Gale Research. ISBN 978-0787622213
  • Holt, Anne. A Life of Joseph Priestley. London: Oxford University Press, 1931. ISBN 0837142407
  • "Joseph Priestley," in World of Chemistry. Gale Group, 1999.
  • McLachlan, John. Joseph Priestley, Man of Science, 1733-1804: An Iconography of a Great Yorkshireman. Braunton, Devon: Merlin Books, 1983. ISBN 0863030521
  • Rhees, David J. Joseph Priestley, Enlightened Chemist: Catalogue to an Exhibit Celebrating the 250th Birthday of Joseph Priestley and the Inauguration of the Center for History of Chemistry. Philadelphia: Center for History of Chemistry, 1983. ISBN 0941901009
  • Schmadel, Lutz D. Dictionary of Minor Planet Names. New York: Springer, 2003. ISBN 978-3540662921
  • Schofield, Robert E. The Enlightenment of Joseph Priestley: A Study of His Life and Work from 1733 to 1773. University Park, PA: Pennsylvania State University Press, 1998. ISBN 0271016620
  • Schofield, Robert E. The Enlightened Joseph Priestley: A Study of His Life and Works from 1773 to 1804. University Park, PA: Pennsylvania State University Press, 2004. ISBN 0271024593
  • Smith, Edgar Fahs. Priestley in America, 1794-1804. Philadelphia, PA: P. Blakiston's Son & Co., 1920.
  • Thorpe, T. E. Joseph Priestley. London: J. M. Dent, 1906.

External links

All links retrieved August 10, 2022.

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