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1 Standing, K.G Methods and Mechanisms for Producing Ions from Large Molecules I04905 1991 eBook  
2 Ens, W New Methods for the Study of Biomolecular Complexes I03367 1998 eBook  
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TitleMethods and Mechanisms for Producing Ions from Large Molecules
Author(s)Standing, K.G;Ens, W
PublicationNew York, NY, Springer US, 1991.
DescriptionX, 344 p. 126 illus : online resource
Abstract NoteA NATO Advanced Research Workshop on Methods and Mechanisms for Producing Ions from Large Molecules was held at Minaki Lodge, Minaki, Ontario, Canada, from 24 to 28 June 1990. The workshop was hosted by the time-of-flight group of the Department of Physics at the University of Manitoba, and was attended by 64 invited participants from around the world. Twenty-nine invited talks were given and 19 papers were presented as posters. Of the 48 contributions, 38 are included in these proceedings. The conference was organized to study the rapidly changing field of mass spectrometry of biomolecules. Particle-induced desorption (especially with MeV particles) has been the most effective method of producing molecular ions from biomolecules. An important part of the workshop was devoted to recent developments in this field, particularly to progress in understanding the fundamentals of the desorption process. In this respect, the meeting was similar to previous conferences in Marburg, FRG (1978); Paris, F (1980); Uppsala, S (1981); College Station, USA (1983,1984); Wangerooge, FRG (1986); Orsay, F (1988); Spiekeroog, FRG (1989); and to the IFOS series of meetings at Munster, FRG (1981,1983,1985,1987) and L6vAnger, S (1989). As in the most recent of these meetings, there was some emphasis on new developments, particularly cluster bombardment. A departure from the concentration on particle bombardment processes at this conference was inspired by the dramatic results obtained with two new methods for producing molecular ions from large molecules: matrix-assisted laser desorption and electrospray
ISBN,Price9781468479263
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. Heavy ions 4. NUCLEAR PHYSICS 5. Nuclear Physics, Heavy Ions, Hadrons
Item TypeeBook
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I04905     On Shelf    

2.    
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TitleNew Methods for the Study of Biomolecular Complexes
Author(s)Ens, W;Standing, K.G;Chernushevich, I
PublicationDordrecht, Springer Netherlands, 1998.
DescriptionXI, 354 p. 18 illus : online resource
Abstract NoteA NATO Advanced Research Workshop entitled New Methods for the Study of Molecular Aggregates was held at Tbe Lodge at Kananaskis Village, Alberta, Canada from 16 -20 June 1996. In fact the meeting was entirely concerned with the problem of analyzing biomolecular complexes, so the title of these proceedings has been altered to give a more precise description of the content. Tbe workshop was hosted by the time-of-flight group of the Department of Physics at the University of Manitoba, and was attended by 64 participants from around the world. '!\venty-one invited talks were given and 27 papers were presented as posters. Of the 48 contributions, 22 papers (12 orals, 10 posters) are included in these proceedings. Tbe subject of the conference was the investigation of noncovalent biomolecular complexes, with particular focus on the application of mass spectrometry to their characterization. '!\vo new ionization techniques introduced in the late 1980s, electrospray ionization (ES I) and matrix-assisted laser desorptionlionization (MALDI), resulted in a breakthrough in mass spectrometry, enabling its use in molecular weight and primary structure determination of biopolymers larger than 100 kDa. Recently it has been discovered that ESI mass spectrometry mayaiso be used to characterize complexes containing noncovalent interactions, thus opening new perspectives for supramolecular chemistry. ESI mass spectrometry has the advantage that the sampie is introduced from a homogenous solution which can be maintained at near physiological conditions of pR, concentration, and temperature
ISBN,Price9789401590464
Keyword(s)1. Analytical chemistry 2. BIOCHEMISTRY 3. Biochemistry, general 4. EBOOK 5. EBOOK - SPRINGER
Item TypeeBook
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Accession#  Call#StatusIssued ToReturn Due On Physical Location
I03367     On Shelf    

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