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Organic chemistry   /ɔrgˈænɪk kˈɛməstri/   Listen
noun
Chemistry  n.  
1.
That branch of science which treats of the composition of substances, and of the changes which they undergo in consequence of alterations in the constitution of the molecules, which depend upon variations of the number, kind, or mode of arrangement, of the constituent atoms. These atoms are not assumed to be indivisible, but merely the finest grade of subdivision hitherto attained. Chemistry deals with the changes in the composition and constitution of molecules. See Atom, Molecule. Note: Historically, chemistry is an outgrowth of alchemy (or alchemistry), with which it was anciently identified.
2.
An application of chemical theory and method to the consideration of some particular subject; as, the chemistry of iron; the chemistry of indigo.
3.
A treatise on chemistry. Note: This word and its derivatives were formerly written with y, and sometimes with i, instead of e, in the first syllable, chymistry, chymist, chymical, etc., or chimistry, chimist, chimical, etc.; and the pronunciation was conformed to the orthography.
Inorganic chemistry, that which treats of inorganic or mineral substances.
Organic chemistry, that which treats of the substances which form the structure of organized beings and their products, whether animal or vegetable; called also chemistry of the carbon compounds. There is no fundamental difference between organic and inorganic chemistry.
Physiological chemistry, the chemistry of the organs and tissues of the body, and of the various physiological processes incident to life.
Practical chemistry, or Applied chemistry, that which treats of the modes of manufacturing the products of chemistry that are useful in the arts, of their applications to economical purposes, and of the conditions essential to their best use.
Pure chemistry, the consideration of the facts and theories of chemistry in their purely scientific relations, without necessary reference to their practical applications or mere utility.



adjective
Organic  adj.  
1.
(Biol.) Of or pertaining to an organ or its functions, or to objects composed of organs; consisting of organs, or containing them; as, the organic structure of animals and plants; exhibiting characters peculiar to living organisms; as, organic bodies, organic life, organic remains. Cf. Inorganic.
2.
Produced by the organs; as, organic pleasure. (R.)
3.
Instrumental; acting as instruments of nature or of art to a certain destined function or end. (R.) "Those organic arts which enable men to discourse and write perspicuously."
4.
Forming a whole composed of organs. Hence: Of or pertaining to a system of organs; inherent in, or resulting from, a certain organization; as, an organic government; his love of truth was not inculcated, but organic.
5.
(Chem.) Of or pertaining to compounds which are derivatives of hydrocarbons; pertaining to, or denoting, any one of a large series of carbon-containing compounds which are related to the carbon compounds produced by biological processes (such as methane, oils, fats, sugars, alcohols, ethers, proteins, etc.) and include many substances of artificial production which may or may not occur in animals or plants; contrasted with inorganic. Note: Borderline cases exist which may be classified as either organic or inorganic, such as carbon terachloride (which may be viewed as a derivative of methane), but in general a compound must have a carbon with a hydrogen atom or another carbon atom attached to it to be viewed as truly organic, i.e. included in the subject matter of organic chemistry. Note: The principles of organic and inorganic chemistry are identical; but the enormous number and the completeness of related series of organic compounds, together with their remarkable facility of exchange and substitution, offer an illustration of chemical reaction and homology not to be paralleled in inorganic chemistry.
Organic analysis (Chem.), the analysis of organic compounds, concerned chiefly with the determination of carbon as carbon dioxide, hydrogen as water, oxygen as the difference between the sum of the others and 100 per cent, and nitrogen as free nitrogen, ammonia, or nitric oxide; formerly called ultimate analysis, in distinction from proximate analysis.
Organic chemistry. See under Chemistry.
Organic compounds. (Chem.) Chemical substances which are organic (5). See Carbon compounds, under Carbon.
Organic description of a curve (Geom.), the description of a curve on a plane by means of instruments.
Organic disease (Med.), a disease attended with morbid changes in the structure of the organs of the body or in the composition of its fluids; opposed to functional disease.
Organic electricity. See under Electricity.
Organic law or Organic laws, a law or system of laws, or declaration of principles fundamental to the existence and organization of a political or other association; a constitution.
Organic stricture (Med.), a contraction of one of the natural passages of the body produced by structural changes in its walls, as distinguished from a spasmodic stricture, which is due to muscular contraction.






Collaborative International Dictionary of English 0.48








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"Organic chemistry" Quotes from Famous Books



... introduction of this oil among compound ethers must necessarily direct the attention of perfumers[J] towards this important branch of compounds, the number of which is daily increasing by the labors of those who apply themselves to organic chemistry. The striking similarity of the smell of these ethers to that of fruit had not escaped the observation of chemistry; however, it was reserved to practical men to discover by which choice and combinations it ...
— The Art of Perfumery - And Methods of Obtaining the Odors of Plants • G. W. Septimus Piesse

... with each 20 degree increase of temperature. So, at 70 degree F decomposition is running at twice the rate it does at 50 degree, while at 90 degree four times as rapidly as at 50 degree and so on. However, when temperatures get to about 150 degree organic chemistry is not necessarily racing 32 times as fast as compared to 50 degree because many reactions engendered by living things decline in efficiency at temperatures much over 110 ...
— Organic Gardener's Composting • Steve Solomon

... water both bleach organic colouring matters. [v.04 p.0633] The use of bromine in the extraction of gold (q.v.) was proposed by R. Wagner (Dingler's Journal, 218, p. 253) and others, but its cost has restricted its general application. Bromine is used extensively in organic chemistry as a substituting and oxidizing agent and also for the preparation of addition compounds. Reactions in which it is used in the liquid form, in vapour, in solution, and in the presence of the so-called "bromine carriers," have been studied. Sunlight affects the action of bromine ...
— Encyclopaedia Britannica, 11th Edition, Volume 4, Part 3 - "Brescia" to "Bulgaria" • Various

... 6 Brande's Dictionary of Science, &c. 6 " Organic Chemistry 6 Chevreul on Colour 8 Cresy's Civil Engineering 8 Fairbairn's Information for Engineers 9 Gwilt's Encyclopaedia of Architecture 10 Harford's Plates from M. Angelo 10 Humphreys's Parables Illuminated 12 Jameson's Sacred ...
— First Impressions of the New World - On Two Travellers from the Old in the Autumn of 1858 • Isabella Strange Trotter

... follow in detail the frequent similar occurrences between Gassner's time and our own. We all know where we are to-day. The medical profession and the medical science with its bacteriology and serum therapy, its Roentgen rays and its organic chemistry is far away from the church and without concession to religious aspects. On the other hand there are the yearly processions of thousands and thousands who make their pilgrimage to the sacred waters of Lourdes, guided by the Catholic priests, half-hypnotized by the hope that the ...
— Psychotherapy • Hugo Muensterberg



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