The Birth of the 3rd Dimension in Chemistry [electronic resource] / edited by Arthur Greenberg, David E. Lewis.
Erişim Adresi
ISBN
9783031977435
Dil Kodu
İngilizce
Yer Numarası
DK/6477
Basım Bildirimi
1st ed. 2025.
Yayın Bilgisi
Cham : Springer Nature Switzerland : Imprint: Springer, 2025.
Fiziksel Niteleme
XII, 339 p. 197 illus., 72 illus. in color. online resource.
Dizi
Perspectives on the History of Chemistry, 2662-4605
İçindekiler Notu
Part I: Introductory Chapters -- Stamps are Planar, Carbon is Not: A Philatelic History of Chemistry -- The History of Stereochemistry: Progress and Prospects -- Part II: Stereochemical Pioneers -- Joseph-Achille Le Bel: Polymath Extraordinary -- Alfred Werner: Coordination Theory and the Stereochemistry of Metal Complexes -- Studies of Chiral Centers Other than Carbon. William Jackson Pope and Kurt Mislow: Pioneers of Stereochemistry -- Missed It by That Much! How Butlerov Almost Proposed the Tetrahedral Carbon -- Rene Just Hauy and the Contribution of Crystallography to 3-Dimensional Chemistry -- Part III: Using Stereochemistry to Study Reactions and Structure -- L'Inversione di Walden: The Undergraduate Thesis of Primo Levi, Chemist and Writer -- ''How Sweet It Is!” Emil Fischer’s Stereochemical Studies of Glucose -- Part IV: Exploring the Limits of Organic Structure -- Historical Evolution, Stereochemistry, and Structural Limitations for the C=C Bond -- Exploring Variation in Bonding and Structure for Tetrahedral Carbon: [1.1.1]Propellane and Inverted Carbons -- Expansion of the Definition of “Stereochemistry” to Include Quantum Chemistry. When ‘Funny’ is Fun but not Funny -- Although sp3 Hybridization is Not Found for The Carbon in Methane Nor in Isoelectronically Related Species. The Concept of Hybridization is Still Useful and Powerful.
Özet, vb.
This contributed volume is based on presentations made at the 2024 Symposium on the sesquicentennial of the independent proposals of the tetrahedral carbon by van 't Hoff and Le Bel (1874), presented to the Division of the History of Chemistry of the American Chemical Society in March 2024. In 1874, the Dutch chemist, Jacobus Henricus van 't Hoff (1852-1911), and the French chemist, Joseph-Achille Le Bel (1847-1930), independently proposed that the phenomenon of optical activity could be rationalized on the basis of non-superimposable mirror image molecules—in particular, the tetrahedral carbon atom. The book features chapters dedicated to the life and work of Le Bel and the history of stereochemistry. The expansion of the van 't Hoff-Le Bel theory to elements beyond carbon, such as metals and chiral centers based on sulfur and selenium, is also explored. Additionally, the book discusses the visualization of organic molecules in three dimensions, the limits of bonding and stereochemistry in organic molecules, and the role of crystallography in stereochemistry development. Specific topics include hydrocarbons with severely distorted geometry, the quantum chemical revolution, the effects of substituents on tetrahedral carbons, the Walden inversion, and the Fischer elucidation of monosaccharide configurations. It also contains a chapter featuring the only English translation of the undergraduate thesis of the world-renowned author Primo Levi, a Jewish, Italian-born chemist and Holocaust survivor, and provides historical and scientific context. The book examines the public celebration of stereochemistry through postage stamps. This volume offers a comprehensive overview of the evolution and significance of stereochemistry in both chemistry and scientific thought, serving as a valuable resource for students and researchers interested in history of chemistry topics. .
Konu
Chemistry __ History.
Chemistry, Organic.
Science __ History.
History of Chemistry.
Organic Chemistry.
History of Science.
Chemistry, Organic.
Science __ History.
History of Chemistry.
Organic Chemistry.
History of Science.
Diğer Yazarlar
Kurum Adı
Eseri Alıntıla
Referansları kullanmadan önce gözden geçirmeniz ve varsa gerekli düzeltmeleri yapmanız önerilir.
Dijital Kaynak
MARC Görünümü
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520 |aThis contributed volume is based on presentations made at the 2024 Symposium on the sesquicentennial of the independent proposals of the tetrahedral carbon by van 't Hoff and Le Bel (1874), presented to the Division of the History of Chemistry of the American Chemical Society in March 2024. In 1874, the Dutch chemist, Jacobus Henricus van 't Hoff (1852-1911), and the French chemist, Joseph-Achille Le Bel (1847-1930), independently proposed that the phenomenon of optical activity could be rationalized on the basis of non-superimposable mirror image molecules—in particular, the tetrahedral carbon atom. The book features chapters dedicated to the life and work of Le Bel and the history of stereochemistry. The expansion of the van 't Hoff-Le Bel theory to elements beyond carbon, such as metals and chiral centers based on sulfur and selenium, is also explored. Additionally, the book discusses the visualization of organic molecules in three dimensions, the limits of bonding and stereochemistry in organic molecules, and the role of crystallography in stereochemistry development. Specific topics include hydrocarbons with severely distorted geometry, the quantum chemical revolution, the effects of substituents on tetrahedral carbons, the Walden inversion, and the Fischer elucidation of monosaccharide configurations. It also contains a chapter featuring the only English translation of the undergraduate thesis of the world-renowned author Primo Levi, a Jewish, Italian-born chemist and Holocaust survivor, and provides historical and scientific context. The book examines the public celebration of stereochemistry through postage stamps. This volume offers a comprehensive overview of the evolution and significance of stereochemistry in both chemistry and scientific thought, serving as a valuable resource for students and researchers interested in history of chemistry topics. .
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245 14|aThe Birth of the 3rd Dimension in Chemistry|h[electronic resource] /|cedited by Arthur Greenberg, David E. Lewis.
250 |a1st ed. 2025.
264 1|aCham :|bSpringer Nature Switzerland :|bImprint: Springer,|c2025.
300 |aXII, 339 p. 197 illus., 72 illus. in color.|bonline resource.
336 |atext|btxt|2rdacontent
337 |acomputer|bc|2rdamedia
338 |aonline resource|bcr|2rdacarrier
341 0 |bPDF/UA-1|2onix
341 0 |bTable of contents navigation|2onix
341 0 |bSingle logical reading order|2onix
341 0 |bShort alternative textual descriptions|2onix
341 0 |bUse of color is not sole means of conveying information|2onix
341 0 |bUse of high contrast between text and background color|2onix
341 0 |bNext / Previous structural navigation|2onix
341 0 |bAll non-decorative content supports reading without sight|2onix
347 |atext file|bPDF|2rda
490 1 |aPerspectives on the History of Chemistry,|x2662-4605
505 0 |aPart I: Introductory Chapters -- Stamps are Planar, Carbon is Not: A Philatelic History of Chemistry -- The History of Stereochemistry: Progress and Prospects -- Part II: Stereochemical Pioneers -- Joseph-Achille Le Bel: Polymath Extraordinary -- Alfred Werner: Coordination Theory and the Stereochemistry of Metal Complexes -- Studies of Chiral Centers Other than Carbon. William Jackson Pope and Kurt Mislow: Pioneers of Stereochemistry -- Missed It by That Much! How Butlerov Almost Proposed the Tetrahedral Carbon -- Rene Just Hauy and the Contribution of Crystallography to 3-Dimensional Chemistry -- Part III: Using Stereochemistry to Study Reactions and Structure -- L'Inversione di Walden: The Undergraduate Thesis of Primo Levi, Chemist and Writer -- ''How Sweet It Is!” Emil Fischer’s Stereochemical Studies of Glucose -- Part IV: Exploring the Limits of Organic Structure -- Historical Evolution, Stereochemistry, and Structural Limitations for the C=C Bond -- Exploring Variation in Bonding and Structure for Tetrahedral Carbon: [1.1.1]Propellane and Inverted Carbons -- Expansion of the Definition of “Stereochemistry” to Include Quantum Chemistry. When ‘Funny’ is Fun but not Funny -- Although sp3 Hybridization is Not Found for The Carbon in Methane Nor in Isoelectronically Related Species. The Concept of Hybridization is Still Useful and Powerful.
520 |aThis contributed volume is based on presentations made at the 2024 Symposium on the sesquicentennial of the independent proposals of the tetrahedral carbon by van 't Hoff and Le Bel (1874), presented to the Division of the History of Chemistry of the American Chemical Society in March 2024. In 1874, the Dutch chemist, Jacobus Henricus van 't Hoff (1852-1911), and the French chemist, Joseph-Achille Le Bel (1847-1930), independently proposed that the phenomenon of optical activity could be rationalized on the basis of non-superimposable mirror image molecules—in particular, the tetrahedral carbon atom. The book features chapters dedicated to the life and work of Le Bel and the history of stereochemistry. The expansion of the van 't Hoff-Le Bel theory to elements beyond carbon, such as metals and chiral centers based on sulfur and selenium, is also explored. Additionally, the book discusses the visualization of organic molecules in three dimensions, the limits of bonding and stereochemistry in organic molecules, and the role of crystallography in stereochemistry development. Specific topics include hydrocarbons with severely distorted geometry, the quantum chemical revolution, the effects of substituents on tetrahedral carbons, the Walden inversion, and the Fischer elucidation of monosaccharide configurations. It also contains a chapter featuring the only English translation of the undergraduate thesis of the world-renowned author Primo Levi, a Jewish, Italian-born chemist and Holocaust survivor, and provides historical and scientific context. The book examines the public celebration of stereochemistry through postage stamps. This volume offers a comprehensive overview of the evolution and significance of stereochemistry in both chemistry and scientific thought, serving as a valuable resource for students and researchers interested in history of chemistry topics. .
532 8 |aAccessibility summary: This PDF has been created in accordance with the PDF/UA-1 standard to enhance accessibility, including screen reader support, described non-text content (images, graphs), bookmarks for easy navigation, keyboard-friendly links and forms and searchable, selectable text. We recognize the importance of accessibility, and we welcome queries about accessibility for any of our products. If you have a question or an access need, please get in touch with us at accessibilitysupport@springernature.com. Please note that a more accessible version of this eBook is available as ePub.
532 8 |aNo reading system accessibility options actively disabled
532 8 |aPublisher contact for further accessibility information: accessibilitysupport@springernature.com
650 0|aChemistry|xHistory.
650 0|aChemistry, Organic.
650 0|aScience|xHistory.
650 14|aHistory of Chemistry.
650 24|aOrganic Chemistry.
650 24|aHistory of Science.
700 1 |aGreenberg, Arthur.|eeditor.|4edt|4http://id.loc.gov/vocabulary/relators/edt
700 1 |aLewis, David E.|eeditor.|4edt|4http://id.loc.gov/vocabulary/relators/edt
710 2 |aSpringerLink (Online service)
773 0 |tSpringer Nature eBook
776 08|iPrinted edition:|z9783031977428
776 08|iPrinted edition:|z9783031977442
776 08|iPrinted edition:|z9783031977459
830 0|aPerspectives on the History of Chemistry,|x2662-4605
856 40|uhttps://doi.org/10.1007/978-3-031-97743-5
912 |aZDB-2-HTY
912 |aZDB-2-SXH
950 |aHistory (SpringerNature-41172)
950 |aHistory (R0) (SpringerNature-43722)
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