ISPC-3 / Limoges, France / July 13 - July 19, 1977 / Edited by FAUCHAIS |
SESSION G1 Plasma chemical synthesis |
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G.1.0. | Ceramics and Plasma |
G.1.0. | P. FAUCHAIS, E. BOURDIN |
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G.1.1. | Theoritical and experimental study about CH4-N2 system in a glow discharge chemical reactor |
G.1.1. | J. AMOUROUX, D. RAPAKOULIAS |
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G.1.2. | Plasma eliminations of carbon dioxide as preparation method in organic |
G.1.2. | B. BEIJER, P. GANSKE, A. SZABO, H. SUHR |
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G.1.3. | Certain features of acetylene production from coal by the plasma route |
G.1.3. | J.K. TYLKO, H.W. JONES, C. HEANLEY |
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G.1.4. | Methane pyrolysis in a thermal R.F.plasma |
G.1.4. | V.J. IBBERSON, D. CHRISTOFIDES |
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G.1.5. | 3eme Symposium International de Chimie des Plasma organise par I.U.P.A.C. |
G.1.5. | J. AMOUROUX, D. RAPAKOULIAS, S. CAVADIAS |
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G.1.6. | On experimental study of synthesis of nitric oxides in micro wave plasma |
G.1.6. | A. CZERNICHOWSKI, R. BAJOREK, R. PAROSA, E. RESZKE |
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G.1.7. | NITROGEN OXIDES SYNTHESIS BY A D.C. PLASMA JET |
G.1.7. | J.F. COUDERT, J.M. BARONNET, P. FAUCHAIS |
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G.1.8. | The oxldations of methane traces, formation of ozone and formatin of NOx in RF glow and D.C. corona discharge. |
G.1.8. | D. FLAMM |
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G.1.9. | Les recherches sur la synthese d' oxyde d' azote darn le flux du plasma. |
G.1.9. | I. POLLO |
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G.1.10. | Experimental study of plasma-chemical synthesis in N2-H2 systems under non-self-sustained atmospheric discharge stimulated by high current electron beam. |
G.1.10. | A.K. VAKAR, V.P. DENISENKO, G.P. MAXIMOV, V.D. RUSANOV |
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G.1.11. | Gasification of coal in plasma reactors and its industrial and economical consequences |
G.1.11. | J.K. TYLKO, G.F. SKINNER |
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G.1.12. | Stationary plasma chemical reactor with plasma beam interaction. |
G.1.12. | V.M. ATAMANOV, A. ZHUZHUNASHVILI, A.A. IVANOV, G.B. LEVADNYI |
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G.1.13. | A non equilibrium plasma jet hydrogen atom source for chemical synthesis. |
G.1.13. | H.F. CALCOTE, W. FELDER |
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G.1.14. | Purification of arsenic and phosphorus by chemical transport in a low pressure hydrogen plasma. |
G.1.14. | R. WILD, H.R. OSWALD, S. VEPREK |
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G.1.15. | Effect of initial reaction temperature on the developments synthesis of acetylene argon plasma stream |
G.1.15. | WOJCIECH. PLOTCZYK. WINCENTY |
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G.1.16. | An energy criterion for the processes occurring in a chemical plasma reactor |
G.1.16. | SZYMANSKI. ANDRZEJ |
SESSION G2 Elementary Reactions |
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G.2.0. | Kinetics of Neutral-Neutral Reactions: An Overview |
G.2.0. | F. KAUFMAN |
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G.2.1. | Studies of ion plasma chemistry with drift tube mass spectrometers |
G.2.1. | DANIEL. E.M. MAC |
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G.2.2. | Energy dependances of ion-molecules reactions |
G.2.2. | D.L. ALBRITTON |
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G.2.3. | Atomic reactions in very high temperature plasmas |
G.2.3. | D.H. CRANDALL |
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G.2.4. | Electron swarm techniques for studying elementary reactions |
G.2.4. | R.W.C. RDMPTON |
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G.2.5. | Wall cleaning for fusion devices using chemical reactions of hydrogen atoms and ions |
G.2.5. | K.J. DIETZ, K. F. WAELBROEC, P. WIENHOLD |
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G.2.6. | The ionization and excitation of ions by electron impact |
G.2.6. | DER. K.T. DOL |
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G.2.7. | Mass spectrometric investigations of sensitizing ionic reactions in a glow discharge of methane by atomic and molecular additions |
G.2.7. | H. DROST, H.D. KLOTZ |
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G.2.8. | Three body ionic recombinations in rare gas-halide lasers |
G.2.8. | M..R. FLANNERY |
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G.2.9. | High temperature fast-flow reactor studies of elementary reactions |
G.2.9. | A. FONTIJN |
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G.2.10. | Singlet oxygen and ozone generation by an electron-bean-controlled discharge in pure oxygen |
G.2.10. | G. FOURNIER, R. LUCAS, P. PIGACHE, M. LECUILLER |
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G.2.11. | Resonan ces in de-excitation of metastables by simple moleoules |
G.2.11. | A. B. GRZET, Z.W. STERNBERG |
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G.2.12. | Study of equilibrium reactions with the stationary afterglow method |
G.2.12. | M. GROSSL, M. LANGENWALTER, T.D. MARK, W. LINDINGER, H. HELM |
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G.2.13. | Reacting and transport properties of atomic rare gas ions in their parent gases |
G.2.13. | H. HELM, E. ELFORD |
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G.2.14. | Reactions of Ar++with various neutrals |
G.2.14. | W. LINDINGER, E. ALGE |
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G.2.15. | Negative ion spectroscopy |
G.2.15. | W.C. LINEBERGER |
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G.2.16. | Elementary reactions of potassium atoms in long lived excited states |
G.2.16. | S.E. KUPRIYANOV, A.A. PEROV |
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G.2.17. | Photon interactions wit h molecular ions |
G.2.17. | J. MOSELEY |
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G.2.18. | Dissociation or C02 in HF discharge in a magnetic field |
G.2.18. | B.I. PATRUSHEV, G.V. RYCKUNOV |
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G.2.19. | Penning ionization in binary mixtures of metastables K and He atoms with NH3,H2S and N2O molecules |
G.2.19. | A.A. PEROV, V.N. SLAVIK, A.N. STEPANOV, S.P. KABANOV, S.E. KUPRIANOV |
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G.2.20. | The atomic nitrogen production in a flowing V.H.F. discharge |
G.2.20. | A. RICARD, E. BLOYET, L. HOCHARD, P. LEPRINCE, J. MAREC |
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G.2.21. | Section ef'ficace de transfert d'excitation vibrationnelle et rotationnelle dans un melange argonazote. |
G.2.21. | N. SADEGHI, T.D. NGUYEN |
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G.2.22. | Collisional ionization of highly excited xenon atoms |
G.2.22. | R.F. STEBBINGS |
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G.2.23. | Etude de reactiors d'interet astrochimique a l'aide d'un tube a derive a introduction selective |
G.2.23. | R. THOMAS, A. BARASSIN, R. BURKE |
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G.2.24. | Chemical changes in O2 emerging from a microwave discharge cavity |
G.2.24. | M. YARON, A. VON ENGE |
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G.2.25. | Clusters in dense non-idea plasmas |
G.2.25. | B.M. KOVALIOV, P.F. KULIK |
SESSION G3 Low Pressure Diagnostics and Techniques of Measurement |
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G.3.0. | Non Equilibrium Plasma and Their Diagnostics |
G.3.0. | K.G. MULLER |
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G.3.00. | Spectroscopic and laser methods for dense plasma diagnostics |
G.3.00. | M.A. JELYASHEVICH, V. KISELEVSKII, SHIMANOVICH |
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G.3.1. | Enthalpy probes ; A contribution to the theory of operation |
G.3.1. | A.L. HARE |
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G.3.2. | Velocity measurements it plasma flows using cooled picot tubes : are unsoleved problem |
G.3.2. | A.L. HARE |
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G.3.3. | Rayonnement continu emir par un plas ma d'azote hors ETL a ? - 4955 A |
G.3.3. | D. CASSEAU, A. CATHERINOT, A. SY |
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G.3.4. | Studies of levitation technique : data for transport processes between particles and plasma. |
G.3.4. | G.A. FARNELL, B. WALDIE |
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G.3.5. | Aspects of DC plasma operation at elevated pressures. |
G.3.5. | B. WALDIE |
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G.3.6. | The nitrogen excitation in high pressures UHF discharges |
G.3.6. | M. LOCQUENEUX, A. RICARD |
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G.3.7. | Optical studies of plasma jets. |
G.3.7. | I.J. JAGODA, F.J. WEINBERG |
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G.3.8. | Mass spectrometry of CO2 discharges |
G.3.8. | M. BACAL, K.G. LERGON, K.G. MULLER |
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G.3.9. | Mesure de vitesse dans les jets de plasmas comportant des gradients axiaux. |
G.3.9. | P. CAMBRAY |
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G.3.10. | Application of optical anemometry to the flow in a high temperature reactor model |
G.3.10. | I.H. HO, J.R. GRACE |
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G.3.11. | Thermodynamic instability of three component nonideal plasma. |
G.3.11. | M. GITTERMAN, V. STEINBERG |
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G.3.12. | Investigation of a non thermal plasma with negat.ive ions. |
G.3.12. | K.G. LERGON, K.G. MULLER |
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G.3.13. | Chemi ionization in flances. The role of the premixed character of the fresh gases mixture. |
G.3.13. | DE. OLDENHOVE, L. GUERTECHIN |
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G.3.14. | A simple method for determining electron densities in glow discharges. |
G.3.14. | G. KRUPPA, H. SUHR |
SESSION G4 Engineering |
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G.4.0. | Development Trend in The Application of Plasma for Chemical Processes |
G.4.0. | T. KUGLER |
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G.4.1. | Modeling and measurement of local Heat fluxes in high intensity pulsed arcs |
G.4.1. | C. Dean, E. JOHNSON, PFENDER |
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G.4.2. | Equilibrium composition and thermodynamical properties of C-H2,CH4 and CH3-H2 plasmas, computation of their reducing action on iron oxyde Fe2O3. |
G.4.2. | E. BOURDIN, J. AUBRETON, P. FAUCHAIS |
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G.4.3. | The need for a systematic study of physical processes within the seeded D.C. transferred Arc. |
G.4.3. | H. MERCURE, K. DIMOFF, B. JEAN |
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G.4.4. | Reduction of transition metal oxides in a hydrogen plasma. |
G.4.4. | M.R. WERTHEIMER, J.P. BAILON |
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G.4.5. | Investigation of a cascaded arc system cooled by a chemically reacting gas |
G.4.5. | H. KRUGER |
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G.4.6. | Mechanism and kinetics of the reac tions "liquid ? solid + gas" in plasma heat carrier |
G.4.6. | Y.N. TUMANOV, GRAPCHEV, Y.P. Butikin |
SESSION G5 Non equilibrium plasma chemistry-Theory and applications |
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G.5.0. | Problemes fondamentaux de la theorie et des applications de la chimie des plasmas et l'etat de non-equilibre et perspectives de son developpement |
G.5.0. | L.S. POLAK |
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G.5.1. | Non equilibrium processes in the plasma chemical U.H.F. reactor with magnetic field. |
G.5.1. | R.I. AZIZOV, V.K. ZHIVOTOV, M.F. KROTOV, V.K. RUSANOV, Yu.V. TARASO |
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G.5.2. | Stationary plasma chemical reactor with crossed electric and magnetic fields |
G.5.2. | A.I. BABARITDKY, A.I. ZUZUNASHVILI, A.A. IVANOV, V.G. LEHMAN, B.B. SEVERNY, E.K. TOHERKASOVA, V.V. SHAPKIN |
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G.5.3. | On nitrogen vibrational relaxation in the gloe discharge |
G.5.3. | L.S. POLAK, D.I. SLOVETSKY, A.D. URBAS |
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G.5.4. | Metastable particles collisions in N2 and N2 excitation in glow discharge. |
G.5.4. | L.S. POLAK, D.I. SLOVETSKY, A.S. SOKOLOV |
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G.5.5. | Cross sections and levels rate constants of plasmachemical reactions Monte Carlo calculation |
G.5.5. | A.A. LEVITSKYI, L.S. POLAK |
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G.5.6. | On so-called "Statistical theory of chemical processes in non equilibrium plasma. |
G.5.6. | L.S. POLAK, D.I. SLOVETSKY |
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G.5.7. | The plasma "Chemical activities" as a function of plasma producing field frequency |
G.5.7. | Yu. IVANOV, Yu. LEBEDEV, LS. POLAK |
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G.5.8. | Fluctuations of the plasma stream influence of the chemical reactions rate. |
G.5.8. | V.Z. KOMPANIETZ, LS. POLAK, J.L. EPSHTEIN |
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G.5.9. | Ammonia decomposition in an arc heated argon flow reactor |
G.5.9. | A.A. LEVITSKYI, A.A. OVSYANNIKOV, LS. POLAK |
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G.5.10. | Oxygen dissociation rate in R.F. discharges of moderate pressure |
G.5.10. | P. CAPEZZUTO, R. D'AGOSTINO, F. CRAMAROSSA, E. MOLINARI |
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G.5.11. | The oxidation of methane with carbon dioxide. water vapor. and oxygen in R.F. discharges. |
G.5.11. | P. CAPEZZUTO, R. D'AGOSTINO, F. CRAMAROSSA, E. MOLINARI |
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G.5.12. | The dissociation of molecular oxygen in electrical discharges. |
G.5.12. | M. CAPITELLI, M. DILONARDO |
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G.5.13. | The decomposition of NH3 under nonequilibrium plasma of moderate pressure. |
G.5.13. | R. D'AGOSTINO, G. FERRARO, V. COLAPRICO, F. CRAMAROSSA, E. MOLINARI |
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G.5.14. | Rate constants for T.V. energy transfers in high temperature gas |
G.5.14. | E.F. VARRACHIO |
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G.5.15. | Review of the experimental results of application of a strongly nonequilibrium plasma in plasma chemistry and further
prospects for plasma chemistry. |
G.5.15. | A.A. IVANOV, V.A. LEGASOV |
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G.5.16. | Theory of the development of the bean-plasma discharge in a molecular gas |
G.5.16. | A.A. IVANOV, S.I. KRASHEMINNIKOV, TK. SOBOLEVA, V.V. STARYK |
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G.5.17. | Sensitivity to variations of kinetic parameters as a method of analysis of plasma processes. |
G.5.17. | Y. KHAIT |
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G.5.18. | Non equilibrium plasma chemical reactions in high pressure systems provided by vibrationnally excited reagents. |
G.5.18. | V.A. LEGASOV, V.D. RUSANOV, A.A. FRIDMAN, G.V. SHOLIN |
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G.5.19. | Convection in the surroundings of the arcs burning in the atmosphere of nitrogen with addition of Li2CO3. |
G.5.19. | M. REKALIC, V. VUKANOVIC |
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G.5.20. | Plasma devices as mimics of existing technologies and as an independant new technology. |
G.5.20. | J.K. TYLKO, G. HAYAT |
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G.5.21. | Plasma chemistry of solid surfaces in controlled nuclear fusion devices |
G.5.21. | S. VEPREK, A.P. WEBB, M.R. HAQUE, H.R. OSWALD, H. STUESSI, KINGCADE |
SESSION S1 Standards and Measurements |
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S.1.0 | Standards and Measurements of High Temperatures at The National Physical Laboratory U.K. |
S.1.0 | K.C. LAPWORTH, R.C. PRESTON |
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S.1.1. | Status report : I.C.P. spectrochemical analysis. |
S.1.1. | R.M. BARNES |
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S.1.2. | Measurement of particles and gas velocities in a transfered arc heater using laser doppler anemonutry. |
S.1.2. | R.K. BAYLISS, I.G. SAYCE, D. DURAO, A. MELLING |
SESSION S2 Chemi-Ionization |
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S.2.0. | Chemi-ionization in Reactions of Species in The Electronic Ground State |
S.2.0. | W.L. FITE |
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S.2.1. | Ionization in flames |
S.2.1. | T.M. SUGDEN |
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S.2.2. | Chemi-ionization in reactions noble gas atoms |
S.2.2. | R.F. STEBBINGS |
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S.2.3. | Mass spectrometric study of associative ionization processes |
S.2.3. | S.E. KUPRIYANOV |
SESSION S3 Thermodynamic and transport properties |
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S.3.1. | Analysis of kinetics and thermodynamics of interaction between solid particles and high temperature gas stream during rapid develatilisation of pulverised coal in the stream of combustion |
S.3.1. | B. KRUSZEWSKA, J. LESINSKI |
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S.3.2. | Treatment of fine powders in an R.F, plasma discharge |
S.3.2. | M.I. BOULOS |
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S.3.3. | PREPARATION OF ULTRAFINE IRON PARTICLES USING AN RF ARGON PLASMA |
S.3.3. | T. YOSHIDA, K. AKASHI |
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S.3.4. | Mesures de la repartition des vitesses des particules dans un jet de plasma. |
S.3.4. | F. BARNAY, A. GARREL, R. MAS, J.L. VERDIER |
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S.3.5. | HEAT TRANSFER TO SPHERICAL PARTICLES EXPOSED TO PLASMA FLAMES |
S.3.5. | N.N.. SAYEGH, W.H. GAUVIN |
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S.3.6. | Transfert de chaleur entre un arc a L'argon et une paroi refroidie en rotation |
S.3.6. | J.C. MONSARRAT, C. BONET, DAGUENET |
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S.3.7. | Arc plasma reactions for ceramics |
S.3.7. | G. PERUGINI |
SESSION S4 Ceramics and plasma |
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S.4.1. | Etude de la reduction des bioxydes de titane et de zirconium dane le plasma contenant l`hydrogene |
S.4.1. | A. CZERNICHOWSKI, J. JUREWICZ, W. KUKIELKO |
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S.4.2. | Formation of cubic molybdenum carbide with thermal plasma. |
S.4.2. | O. MATSUMOTO, Y. YAGUCHI |
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S.4.3. | Mechanism of formation of boron and boron-carbide by reduction of trichloride in an R.F. plasma |
S.4.3. | I.M. MACKINNON, S.M.L. HAMBLYN, B.G. REUBEN |
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S.4.4. | Arc-plasma reactions for ceramics: II - General thermodynamic considerations and particular observations for obtaining submicronic TiC from TiCl4 and CH4 |
S.4.4. | G. PERUGINI |
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S.4.5. | Arc-plasma reactions for ceramics: III - comparaison of teh efficiency of the standard reactor with reterence to a new one. in the from TiCl4 and CH4 |
S.4.5. | G. PERUGINI |
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S.4.6. | A few cheracteristics of titanium microcrystale formed from titanium tetrachloride introduced into an argon plasma jet. |
S.4.6. | K. AKASHI, S. OHNO |
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S.4.7. | Preparation of submicronic ?silicon carbide powder from methylchlorosilane in a plasma torch |
S.4.7. | O. DE POUS |
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S.4.8. | The electrophysical characteristics of obtaining refractory materials using plasma of the arc |
S.4.8. | A. BOLOTOV, U. ASHIMOV |
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S.4.9. | Sintering characteristics of plasma prepared powders |
S.4.9. | LEE. DONG-HI, R. MACPHERSON |
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S.4.10. | Development of cementitious and pozzolanic properties in plasmas |
S.4.10. | J.K. TYLKO, P.M. HASKINS |
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S.4.11. | Behaviour of clays in plasmas |
S.4.11. | J.K. TYLKO, P.M. HASKINS |
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S.4.12. | Utilisation d'un jet de plasma d'azote sous vide pour la realisation de couches minces de nitrure de silicium. |
S.4.12. | J. GODET, G. LASSAU |
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S.4.13. | Studies of silicon nitrides obtained in a low-temperature plasma |
S.4.13. | SZYMANSKI, PODGORSKI, HUCZKO |