By C.E.R. Jones (Eds.)
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H. A. Bryce, Chem. , (1967)1215. Wipf, P. Irving, M. McCamish, R. Venkataraghavan, and McLafferty, J. Am. Chem. S o c . , 95(1973)3369. Smith, C . H. Maurer, and U. Rapp, J. Am. Chem. 96 (1974)3482. 8 J . H . Beynon, D . F . G. C o o k s , Anal. C h e m . , 46(1974) 1299. G. C o o k s , J . H . Beynon, R . M . R. Lester, 11 Metastable I o n s " , Elsevier, Amsterdam, 1973. 10 F . W . McLafferty, P . F . Bente, III, R. Kornfeld, S . - C . T s a i , and I . Howe, J. Am. Chem. S o c , 95(1973)2120.
Note that the precursor ions can a l s o be limited to a very narrow range of kinetic energies through narrowing of the b e t a - s l i t of MS-I. The range of precursor ion kinetic energies has been the source of ambiguity, especially in previous MI s t u d i e s , and methods to correct for the energy spread had been proposed [28, 2 9 ] . With the narrow b e t a - and e x i t - s l i t MS-I, a metastable decomposition involving a unique energy r e l e a s e should give a pair of relatively narrow peaks centered around the calculated mass p o s i t i o n .
Sanguis, S. mitior). Streptococci of intermediate properties were classified in relation to these species by numerical taxonomic procedures based on the 16 most informative pyrogram peaks. processed into similarity coefficients. The data were Over 1500 analyses were completed on one Chromatographie column containing polyethylene glycol (Carbowax 20M). Similarities calculated for several s. mutans strains were within 5% of those calculated after combining analytical data for constituents of cell walls and lipids from the same strains studied by other workers.