Citation: M. Treiber et L. Kramer, COUPLED COMPLEX GINZBURG-LANDAU EQUATIONS FOR THE WEAK ELECTROLYTE MODEL OF ELECTROCONVECTION, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics, 58(2), 1998, pp. 1973-1982
Authors:
FOLTIN GL
PON S
TUNIK M
FIERMAN A
DREYER B
COOPER A
WELBORNE C
TREIBER M
Citation: Gl. Foltin et al., PEDIATRIC AMBULANCE UTILIZATION IN A LARGE AMERICAN CITY - A SYSTEMS-ANALYSIS APPROACH, Pediatric emergency care, 14(4), 1998, pp. 254-258
Authors:
GAUSCHE M
HENDERSON DP
BROWNSTEIN D
FOLTIN GL
ATHEY J
BRYSON D
ANDERSON P
BAILEY R
COOPER A
DIECKMANN RA
DUBS G
GLAESER P
GOODRICH SM
GRAVES JR
MARKENSON D
MULLIGANSMITH D
POORE PD
PULLUM J
ROMIG L
SCHAFERMEYER RW
SMITH AW
SU E
STOY WA
TRAVIS FB
TREIBER M
TRELOAR D
TUNIK M
Citation: M. Gausche et al., EDUCATION OF OUT-OF-HOSPITAL EMERGENCY MEDICAL PERSONNEL IN PEDIATRICS - REPORT OF A NATIONAL TASK-FORCE, Annals of emergency medicine, 31(1), 1998, pp. 58-64
Citation: D. Helbing et M. Treiber, GAS-KINETIC-BASED TRAFFIC MODEL EXPLAINING OBSERVED HYSTERETIC PHASE-TRANSITION, Physical review letters, 81(14), 1998, pp. 3042-3045
Citation: M. Treiber et al., TRAVELING WAVES IN ELECTROCONVECTION OF THE NEMATIC PHASE-5 - A TEST OF THE WEAK ELECTROLYTE MODEL, Journal de physique. II, 7(4), 1997, pp. 649-661
Authors:
MARKENSON D
FOLTIN G
TUNIK M
COOPER A
TREIBER M
WELBORN C
CLAPPIN J
FITTON A
GIORDANO L
Citation: D. Markenson et al., CERTIFIED FIRST RESPONDER - A COMPREHENSIVE MODEL FOR PEDIATRIC TRAINING, Pediatric emergency care, 13(2), 1997, pp. 134-146
Citation: M. Treiber, ANALYTIC EXPRESSIONS FOR THE STOCHASTIC AMPLITUDE EQUATION FOR TAYLOR-COUETTE FLOW, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics, 53(1), 1996, pp. 577-585
Authors:
DENNIN M
TREIBER M
KRAMER L
AHLERS G
CANNELL DS
Citation: M. Dennin et al., ORIGIN OF TRAVELING ROLLS IN ELECTROCONVECTION OF NEMATIC LIQUID-CRYSTALS, Physical review letters, 76(2), 1996, pp. 319-322
Citation: M. Treiber et L. Kramer, BIPOLAR ELECTRODIFFUSION MODEL FOR ELECTROCONVECTION IN NEMATICS, Molecular crystals and liquid crystals science and technology. Section A, Molecular crystals and liquid crystals, 261, 1995, pp. 311-326
Citation: M. Treiber et L. Kramer, STOCHASTIC ENVELOPE EQUATIONS FOR NONEQUILIBRIUM TRANSITIONS AND APPLICATION TO THERMAL FLUCTUATIONS IN ELECTROCONVECTION IN NEMATIC LIQUID-CRYSTALS, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics, 49(4), 1994, pp. 3184-3198