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Results 1 to 25 of 354

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Startup of homogeneous azeotropic distillation sequences with multiple steady statesSCENNA, Nicolas J; BENZ, Sonia J; RODRIGUEZ, Néstor H et al.Industrial & engineering chemistry research. 2005, Vol 44, Num 24, pp 9208-9220, issn 0888-5885, 13 p.Article

Steady-state multiplicity and bifurcation analysis via the Newton polyhedron approachLYBERATOS, G; KUSZTA, B; BAILEY, J. E et al.Chemical engineering science. 1984, Vol 39, Num 6, pp 947-960, issn 0009-2509Article

Steady-State Multiplicity in Catalytic MicrocombustorsDI BENEDETTO, Almerinda; DI SARLI, Valeria.Industrial & engineering chemistry research. 2010, Vol 49, Num 5, pp 2130-2134, issn 0888-5885, 5 p.Article

Multiple-steady-states identification in homogeneous azeotropic distillation using a process simulatorKANNAN, A; JOSHI, Manish R; RAMALINGA REDDY, G et al.Industrial & engineering chemistry research. 2005, Vol 44, Num 12, pp 4386-4399, issn 0888-5885, 14 p.Article

Multiplicity criteria for multireaction networksVEMURI BALAKOTAIAH; LUSS, D.AIChE journal. 1983, Vol 29, Num 4, pp 552-560, issn 0001-1541Article

Tubular reactor stability revisited without the Danckwerts boundary conditionsPARULEKAR, S. J; RAMKRISHNA, D.Chemical engineering science. 1984, Vol 39, Num 3, pp 455-469, issn 0009-2509Article

Search for all steady-states of chemical kinetic equations with the modified method of elimination. I: AlgorithmAIZENBERG, L. A; BYKOV, V. I; KYTMANOV, A. M et al.Chemical engineering science. 1983, Vol 38, Num 9, pp 1555-1560, issn 0009-2509Article

Observable multiplicity features of inhomogeneous solutions measured by the thermochemic method: theory and experimentsSHEINTUCH, M; SCHMIDT, J.Chemical engineering communications (Print). 1986, Vol 44, Num 1-6, pp 33-52, issn 0098-6445Article

On the steady state solutions of chemically reacting systems. I: Applications to single species surface reactionsPOLIZOPOULOS, I; TAKOUDIS, C. G.Chemical engineering science. 1986, Vol 41, Num 5, pp 1221-1232, issn 0009-2509Article

Multiplicity features of porous catalytic pellets. II: Influence of reaction order and pellet geometryHU, R; VEMURI BALAKOTAIAH; LUSS, D et al.Chemical engineering science. 1985, Vol 40, Num 4, pp 599-610, issn 0009-2509Article

Absorption with exothermic reactions in a falling film columnNIELSEN, P. H; VILLADSEN, J.Chemical engineering science. 1983, Vol 38, Num 9, pp 1439-1454, issn 0009-2509Article

Multiple steady-state solutions for interlinked separation systemsCHAVEZ C., R; SEADER, J. D; WAYBURN, T. L et al.Industrial & engineering chemistry fundamentals. 1986, Vol 25, Num 4, pp 566-576, issn 0196-4313Article

Multiplicity features of porous catalytic pellets. I: Single zeroth-order reaction caseHU, R; VEMURI BALAKOTAIAH; LUSS, D et al.Chemical engineering science. 1985, Vol 40, Num 4, pp 589-598, issn 0009-2509Article

Steady-state multiplicity behavior analysis of a high-impact polystyrene continuous stirred tank reactor using a bifunctional initiatorLOPEZ-NEGRETE DE LA FUENTE, Rodrigo; LOPEZ-RUBIO, Javier; FLORES-TLACUAHUAC, Antonio et al.Industrial & engineering chemistry research. 2006, Vol 45, Num 5, pp 1689-1707, issn 0888-5885, 19 p.Article

Multiplicity in continuous MSMPR crystallizers. II: Temperature multiplicity in a cooling crystallizerTAVARE, N. S; GARSIDE, J; AKOGLU, K et al.AIChE journal. 1985, Vol 31, Num 7, pp 1128-1135, issn 0001-1541Article

Steady state stability for a surface reaction with external heat and mass transfer resistancePEARLSTEIN, A. J.Chemical engineering science. 1985, Vol 40, Num 5, pp 865-868, issn 0009-2509Article

Global analysis of the multiplicity features of multi-reaction lumped-parameter systemsVEMURI BALAKOTAIAH; LUSS, D.Chemical engineering science. 1984, Vol 39, Num 5, pp 865-881, issn 0009-2509Article

Search for all steady-states of chemical kinetic equations with the modified method of elimination. II. ApplicationAIZENBERG, L. A; BYKOV, V. I; KYTMANOV, A. M et al.Chemical engineering science. 1983, Vol 38, Num 9, pp 1561-1567, issn 0009-2509Article

Multistage standard specificationSRIDHAR, L. N.AIChE journal. 1997, Vol 43, Num 5, pp 1369-1371, issn 0001-1541Article

The influence of different models in obtaining multiple solutions in distillation columnsBENZ, S. J; SCENNA, N. J.Canadian journal of chemical engineering. 1997, Vol 75, Num 6, pp 1142-1152, issn 0008-4034Article

Numerical investigation of the multiplicity of the steady-state regimes in a tubular reactor with reaction of the Langmuir-Hinshelwood typeSCHEVTSOVA, V. M; RYAZANTSEV, YU. S.Computers & chemical engineering. 1988, Vol 12, Num 2-3, pp 243-246, issn 0098-1354Conference Paper

Detecting changes of steady states using the mathematical theory of evidenceNARASIMHAN, S; CHEN SHAN KAO; MAH, R. S. H et al.AIChE journal. 1987, Vol 33, Num 11, pp 1930-1932, issn 0001-1541Article

An experimental study of steady-state multiplicity features of two parallel catalytic reactionsHAROLD, M. P; LUSS, D.Chemical engineering science. 1985, Vol 40, Num 1, pp 39-52, issn 0009-2509Article

Steady state multiplicity analysis of lumped-parameter systems described by a set of algebraic equationsBALAKOTAIAH, V; LUSS, D; KEYFITZ, B. L et al.Chemical engineering communications (Print). 1985, Vol 36, Num 1-6, pp 121-147, issn 0098-6445Article

A further study of the exact uniqueness and multiplicity criteria for a class of lumped reaction systemsBROWN, J. R; SCHMITZ, R. A.Chemical engineering science. 1984, Vol 39, Num 12, pp 1821-1823, issn 0009-2509Article

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