Not so long ago Roentgen-ray crystallography was a rather esoteric science reserved for a fairly small group of specialists. Perusal of the recent literature shows that the number of publ… Mehr…
Not so long ago Roentgen-ray crystallography was a rather esoteric science reserved for a fairly small group of specialists. Perusal of the recent literature shows that the number of publications per year con cerned with crystal structure analysis by x-ray diffraction has increased by a factor of ten in the last ten years. This great increase can be at tributed to a number of factors. An analysis of a molecule which may contain eighty atoms, excluding hydrogen atoms, involves the collection of about 6000 independent reflections. Before the advent of the automatic diffractometer, an instrument which records intensity data while the investigator is free to be occupied otherwise, the estimation of the intensities of the reflections by eye or by photometer was a formidable task. Even if such a large number of data were collected, processing these data was an impossible task until the development of high-speed computers. A third factor was the advancement made in the theory of structure analysis such as the use of isomorphous replacement, anomalous dispersion and direct methods for phase determination. As a result, at the present time it is possible to determine the structure of virtually every material which forms good single crystals, regardless of the number of atoms or whether or not heavy atoms are present. Bücher > Sachbücher > Naturwissenschaften & Technik > Chemie;Bücher > Fachbücher > Chemie > Organische Chemie 23.5 cm x 15.5 cm x 1.6 cm mm , Springer Berlin, Taschenbuch, Springer Berlin<
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Not so long ago Roentgen-ray crystallography was a rather esoteric science reserved for a fairly small group of specialists. Perusal of the recent literature shows that the number of publ… Mehr…
Not so long ago Roentgen-ray crystallography was a rather esoteric science reserved for a fairly small group of specialists. Perusal of the recent literature shows that the number of publications per year con cerned with crystal structure analysis by x-ray diffraction has increased by a factor of ten in the last ten years. This great increase can be at tributed to a number of factors. An analysis of a molecule which may contain eighty atoms, excluding hydrogen atoms, involves the collection of about 6000 independent reflections. Before the advent of the automatic diffractometer, an instrument which records intensity data while the investigator is free to be occupied otherwise, the estimation of the intensities of the reflections by eye or by photometer was a formidable task. Even if such a large number of data were collected, processing these data was an impossible task until the development of high-speed computers. A third factor was the advancement made in the theory of structure analysis such as the use of isomorphous replacement, anomalous dispersion and direct methods for phase determination. As a result, at the present time it is possible to determine the structure of virtually every material which forms good single crystals, regardless of the number of atoms or whether or not heavy atoms are present. Buch 23.5 x 15.5 x 1.6 cm , Springer Berlin, G. Habermehl , S. Göttlicher , E. Klingbeil, Springer Berlin, erme<
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Not so long ago Roentgen-ray crystallography was a rather esoteric science reserved for a fairly small group of specialists. Perusal of the recent literature shows that the number of publ… Mehr…
Not so long ago Roentgen-ray crystallography was a rather esoteric science reserved for a fairly small group of specialists. Perusal of the recent literature shows that the number of publications per year con cerned with crystal structure analysis by x-ray diffraction has increased by a factor of ten in the last ten years. This great increase can be at tributed to a number of factors. An analysis of a molecule which may contain eighty atoms, excluding hydrogen atoms, involves the collection of about 6000 independent reflections. Before the advent of the automatic diffractometer, an instrument which records intensity data while the investigator is free to be occupied otherwise, the estimation of the intensities of the reflections by eye or by photometer was a formidable task. Even if such a large number of data were collected, processing these data was an impossible task until the development of high-speed computers. A third factor was the advancement made in the theory of structure analysis such as the use of isomorphous replacement, anomalous dispersion and direct methods for phase determination. As a result, at the present time it is possible to determine the structure of virtually every material which forms good single crystals, regardless of the number of atoms or whether or not heavy atoms are present. Buch 23.5 x 15.5 x 1.6 cm , Springer Berlin, G. Habermehl,S. Göttlicher,E. Klingbeil, Springer Berlin, erme<
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Softcover reprint of the original 1st ed. 1973 Kartoniert / Broschiert OrganischeVerbindung, mit Schutzumschlag 11, [PU:Springer Berlin Heidelberg; Springer Berlin]
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[ED: Taschenbuch], [PU: Springer Berlin], DE, [SC: 0.00], Neuware, gewerbliches Angebot, 235x155 mm, 270, [GW: 441g], Softcover reprint of the original 1st ed. 1973
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Not so long ago Roentgen-ray crystallography was a rather esoteric science reserved for a fairly small group of specialists. Perusal of the recent literature shows that the number of publ… Mehr…
Not so long ago Roentgen-ray crystallography was a rather esoteric science reserved for a fairly small group of specialists. Perusal of the recent literature shows that the number of publications per year con cerned with crystal structure analysis by x-ray diffraction has increased by a factor of ten in the last ten years. This great increase can be at tributed to a number of factors. An analysis of a molecule which may contain eighty atoms, excluding hydrogen atoms, involves the collection of about 6000 independent reflections. Before the advent of the automatic diffractometer, an instrument which records intensity data while the investigator is free to be occupied otherwise, the estimation of the intensities of the reflections by eye or by photometer was a formidable task. Even if such a large number of data were collected, processing these data was an impossible task until the development of high-speed computers. A third factor was the advancement made in the theory of structure analysis such as the use of isomorphous replacement, anomalous dispersion and direct methods for phase determination. As a result, at the present time it is possible to determine the structure of virtually every material which forms good single crystals, regardless of the number of atoms or whether or not heavy atoms are present. Bücher > Sachbücher > Naturwissenschaften & Technik > Chemie;Bücher > Fachbücher > Chemie > Organische Chemie 23.5 cm x 15.5 cm x 1.6 cm mm , Springer Berlin, Taschenbuch, Springer Berlin<
Nr. A1024598935. Versandkosten:Lieferzeiten außerhalb der Schweiz 3 bis 21 Werktage, , in stock, zzgl. Versandkosten. (EUR 18.71)
Not so long ago Roentgen-ray crystallography was a rather esoteric science reserved for a fairly small group of specialists. Perusal of the recent literature shows that the number of publ… Mehr…
Not so long ago Roentgen-ray crystallography was a rather esoteric science reserved for a fairly small group of specialists. Perusal of the recent literature shows that the number of publications per year con cerned with crystal structure analysis by x-ray diffraction has increased by a factor of ten in the last ten years. This great increase can be at tributed to a number of factors. An analysis of a molecule which may contain eighty atoms, excluding hydrogen atoms, involves the collection of about 6000 independent reflections. Before the advent of the automatic diffractometer, an instrument which records intensity data while the investigator is free to be occupied otherwise, the estimation of the intensities of the reflections by eye or by photometer was a formidable task. Even if such a large number of data were collected, processing these data was an impossible task until the development of high-speed computers. A third factor was the advancement made in the theory of structure analysis such as the use of isomorphous replacement, anomalous dispersion and direct methods for phase determination. As a result, at the present time it is possible to determine the structure of virtually every material which forms good single crystals, regardless of the number of atoms or whether or not heavy atoms are present. Buch 23.5 x 15.5 x 1.6 cm , Springer Berlin, G. Habermehl , S. Göttlicher , E. Klingbeil, Springer Berlin, erme<
Not so long ago Roentgen-ray crystallography was a rather esoteric science reserved for a fairly small group of specialists. Perusal of the recent literature shows that the number of publ… Mehr…
Not so long ago Roentgen-ray crystallography was a rather esoteric science reserved for a fairly small group of specialists. Perusal of the recent literature shows that the number of publications per year con cerned with crystal structure analysis by x-ray diffraction has increased by a factor of ten in the last ten years. This great increase can be at tributed to a number of factors. An analysis of a molecule which may contain eighty atoms, excluding hydrogen atoms, involves the collection of about 6000 independent reflections. Before the advent of the automatic diffractometer, an instrument which records intensity data while the investigator is free to be occupied otherwise, the estimation of the intensities of the reflections by eye or by photometer was a formidable task. Even if such a large number of data were collected, processing these data was an impossible task until the development of high-speed computers. A third factor was the advancement made in the theory of structure analysis such as the use of isomorphous replacement, anomalous dispersion and direct methods for phase determination. As a result, at the present time it is possible to determine the structure of virtually every material which forms good single crystals, regardless of the number of atoms or whether or not heavy atoms are present. Buch 23.5 x 15.5 x 1.6 cm , Springer Berlin, G. Habermehl,S. Göttlicher,E. Klingbeil, Springer Berlin, erme<
Softcover reprint of the original 1st ed. 1973 Kartoniert / Broschiert OrganischeVerbindung, mit Schutzumschlag 11, [PU:Springer Berlin Heidelberg; Springer Berlin]
Versandkosten:Versandkostenfrei innerhalb der BRD. (EUR 0.00) MARZIES.de Buch- und Medienhandel, 14621 Schönwalde-Glien
[ED: Taschenbuch], [PU: Springer Berlin], DE, [SC: 0.00], Neuware, gewerbliches Angebot, 235x155 mm, 270, [GW: 441g], Softcover reprint of the original 1st ed. 1973
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Not so long ago Roentgen-ray crystallography was a rather esoteric science reserved for a fairly small group of specialists. Perusal of the recent literature shows that the number of publications per year con cerned with crystal structure analysis by x-ray diffraction has increased by a factor of ten in the last ten years. This great increase can be at tributed to a number of factors. An analysis of a molecule which may contain eighty atoms, excluding hydrogen atoms, involves the collection of about 6000 independent reflections. Before the advent of the automatic diffractometer, an instrument which records intensity data while the investigator is free to be occupied otherwise, the estimation of the intensities of the reflections by eye or by photometer was a formidable task. Even if such a large number of data were collected, processing these data was an impossible task until the development of high-speed computers. A third factor was the advancement made in the theory of structure analysis such as the use of isomorphous replacement, anomalous dispersion and direct methods for phase determination. As a result, at the present time it is possible to determine the structure of virtually every material which forms good single crystals, regardless of the number of atoms or whether or not heavy atoms are present.
Detailangaben zum Buch - Röntgenstrukturanalyse organischer Verbindungen
EAN (ISBN-13): 9783642655128 ISBN (ISBN-10): 3642655122 Gebundene Ausgabe Taschenbuch Erscheinungsjahr: 2013 Herausgeber: Springer Berlin Heidelberg
Buch in der Datenbank seit 2013-08-11T17:31:58+02:00 (Berlin) Detailseite zuletzt geändert am 2024-03-29T21:34:44+01:00 (Berlin) ISBN/EAN: 9783642655128
ISBN - alternative Schreibweisen: 3-642-65512-2, 978-3-642-65512-8 Alternative Schreibweisen und verwandte Suchbegriffe: Autor des Buches: got, habermehl, jäger gerhard, haber, kling, habe, gott, klingbeil, verbindungen, göttlicher Titel des Buches: röntgen, röntgenstrukturanalyse organischer verbindungen, einführung die organische, eine einführung, einführung die chemische laboratoriumspraxis
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