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Flynn

Cyr D M, Venkataraman B and Flynn G W 1996 STM investigations of organic molecules physisorbed at the liquid-solid interface Chem. Mater. 8 1600... [Pg.320]

Giancarlo L C and Flynn G W 1988 Scanning tunneling and atomic force microscopy probes of self-assembled, physisorbed monolayers A/ / . Rev. Phys. Chem. 49 297... [Pg.320]

Weitz E and Flynn G W 1981 Vibrational energy flow in the ground electronic states of polyatomic molecules Adv. Chem. Rhys. 47 185-235... [Pg.1084]

Weston R E and Flynn G W 1992 Relaxation of molecules with chemically significant amounts of vibrational energy the dawn of the quantum state resolved era Ann. Rev. Rhys. Chem. 43 559-89... [Pg.1084]

Flynn G W, Parmenter C S and Wodtke A M 1996 Vibrational energy transfer J. Rhys. Chem. 100 12 817-38... [Pg.1084]

Wang J, Sorensen P G and Flynne F 1994 Transient period doublings, torus osoillations and ohaos in a olosed ohemioal system J. Phys. Chem. 98 725-7... [Pg.1116]

Sedlacek A J, Weston R E Jr and Flynn G W 1991 Interrogating the vibrational relaxation of higly exoited polyatomios with time-resolved diode laser speotrosoopy CgHg, CgDg, and CgFg + COj J. Chem. Rhys. 94 6483-90... [Pg.3014]

Mullin A S, Park J, Chou J Z, Flynn G W and Weston R E Jr 1993 Some rotations like it hot seleotive energy partitioning in the state resolved dynamios of oollisions between COj and highly vibrationally exoited pyrazine Chem. Phys. 175 53-70... [Pg.3014]

Flynn G W and Weston R E Jr 1995 Glimpses of a meohanism for quenohing unimoleoular reaotions a quantum state resolved pioture Advances in Chemicai Kinetics and Dynamics vol 2B, ed J Barker (Greenwioh, CT JAI Press) pp 359-91... [Pg.3014]

Mullin A S, Miohaels C A and Flynn G W 1995 Moleoular superoollisions evidenoe for large energy transfer in the oollisional relaxation of highly vibrationally exoited pyrazine by COj J. Chem. Phys. 102 6032-45... [Pg.3014]

Miohaels C A, Tapalian C, Lin Z, Sevy E and Flynn G W 1995 Superoollisions, photofragmentation and energy transfer in mixtures of pyrazine and oarbon dioxide Faraday Discuss. 102 405-22... [Pg.3014]

Miohaels C A and Flynn G W 1997 Conneoting soattering data direotly to ohemioal kinetios energy transfer... [Pg.3014]

Michaels C A, Lin Z, Mullin A S, Tapalian H C and Flynn G W 1997 Translational and rotational excitation of the C02(00°0) vibrationless state in the collisional quenching of highly vibrationally excited perfluorobenzene evidence for impulsive collisions accompanied by large energy transfers J. Chem. Phys. 106 7055-71... [Pg.3015]

Michaels C A, Mullin A S, Park J, Chou J Z and Flynn G W 1998 The collisional deactivation of highly vibrationally excited pyrazine by a bath of carbon dioxide excitation of the infrared inactive (10°0), (02°0), and (02 0) bath vibrational modes J. Chem. Phys. 108 2744-55... [Pg.3015]

Kreutz T G and Flynn G W 1990 Analysis of translational, rotational, and vibrational energy transfer in collisions between COj and hot hydrogen atoms the three dimensional breathing ellipse model J. Chem. Phys. 93 452-65... [Pg.3015]

Grabiner F R, Flynn G W and Ronn A M 1973 Vibration-vibration equilibration in laser excited CH3F and CH3F-X mixtures J. Chem. Phys. 59 2330-4... [Pg.3015]

Flynn G W 1981 Collision induoed energy flow between vibrational modes of small polyatomio moleoules Accou/rfs Chem. Res. 14 334-41... [Pg.3016]

R. M. Flynn, T. A. Kestner, and G. G. 1. Moore, "Stereochemistry of the Direct Fluorination Process," Tenth Winter Fluorine Conference, St. Petersburg, Fla., 1991. [Pg.312]

K. D. Timmeibaus and T. M. Flynn, Cryogenic Process Engineerings Plenum Piess, New Yoik, 1989. [Pg.460]

E. H. Flynn, ed.. Cephalosporins and Penicillins, Chemistry andBiolog, Press, Inc., New York, 1972. [Pg.85]

Types of Computers. Computers can be classified by Flynn s taxonomy (19). The three important classes are SISD single instmction, single data SIMD single instmction, multiple data and MIMD multiple instmctions, multiple data. [Pg.95]

Unfortunately, Flynn s classification, although commonly used, is quite restrictive when discussing parallel-architecture computers. There have been several attempts to formulate more detailed classification schemes for the great variety of parallel computers now available. None of these efforts have been entirely successful, and none appear to be in general use. A discussion of representative machines from some of the more common classes follows. [Pg.95]


See other pages where Flynn is mentioned: [Pg.2996]    [Pg.3014]    [Pg.375]    [Pg.379]    [Pg.416]    [Pg.266]    [Pg.310]    [Pg.351]    [Pg.84]    [Pg.299]    [Pg.299]    [Pg.102]    [Pg.199]    [Pg.289]    [Pg.356]    [Pg.40]    [Pg.40]    [Pg.42]    [Pg.42]    [Pg.137]    [Pg.98]    [Pg.150]   
See also in sourсe #XX -- [ Pg.412 ]

See also in sourсe #XX -- [ Pg.32 ]

See also in sourсe #XX -- [ Pg.12 , Pg.83 , Pg.84 , Pg.99 ]




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Algar-Flynn oxidation

Algar-Flynn-Oyamada Reaction

Flynn and Wall method

Flynn effect

Flynn s taxonomy

Flynn studies

Flynn, George

Flynn-Wall equation

Flynn-Wall method

Flynn-Wall-Ozawa

Flynn-Wall-Ozawa kinetic method

Flynn-Wall-Ozawa method

Flynn. James

Flynns Classification Scheme

Kinetic analysis, Flynn method

Kinetics according to Flynn and Wall

Method according to Flynn and Wall

Ozawa-Flynn-Wall kinetic analysis

Ozawa-Flynn-Wall model

O’Flynn

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