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Results 1 to 25 of 2249

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Estimation of melting points of organic compoundsJAIN, Akash; GANG YANG; YALKOWSKY, Samuel H et al.Industrial & engineering chemistry research. 2004, Vol 43, Num 23, pp 7618-7621, issn 0888-5885, 4 p.Conference Paper

Molecular Geometry and Melting Point Related PropertiesBO LIAN; YALKOWSKY, Samuel H.Industrial & engineering chemistry research. 2012, Vol 51, Num 51, pp 16750-16754, issn 0888-5885, 5 p.Article

Hybrid Method to Predict Melting Points of Organic Compounds Using Group Contribution + Neural Network + Particle Swarm AlgorithmLAZZUS, Juan A.Industrial & engineering chemistry research. 2009, Vol 48, Num 18, pp 8760-8766, issn 0888-5885, 7 p.Article

Analysis of using gasification and incineration for thermal processing of wastesBEBAR, Ladislav; STEHLIK, Petr; HAVLEN, Leos et al.Applied thermal engineering. 2005, Vol 25, Num 7, pp 1045-1055, issn 1359-4311, 11 p.Conference Paper

Estimation of the differential molar heat capacities of organic compounds at their melting pointPAPPA, Georgia D; VOUTSAS, Epaminondas C; MAGOULAS, Kostis et al.Industrial & engineering chemistry research. 2005, Vol 44, Num 10, pp 3799-3806, issn 0888-5885, 8 p.Article

Prediction of Melting Points of Organic Compounds Using Extreme Learning MachinesBHAT, Akshay U; MERCHANT, Shamel S; BHAGWAT, Sunil S et al.Industrial & engineering chemistry research. 2008, Vol 47, Num 3, pp 920-925, issn 0888-5885, 6 p.Article

Toward Navigating Chemical Space of Ionic Liquids: Prediction of Melting Points Using Generative Topographic MapsKIREEVA, Natalia; KUZNETSOV, Sergey L; TSIVADZE, Aslan Yu et al.Industrial & engineering chemistry research. 2012, Vol 51, Num 44, pp 14337-14343, issn 0888-5885, 7 p.Article

Predicting melting temperature (Tm) of oligoribonucleotide duplex by neural networkLIXIN MA; CHANGMEI CHENG; MIYAJIMA, Hiromi et al.Journal of chemometrics. 2002, Vol 16, Num 2, pp 75-80, issn 0886-9383Article

A method for the temperature calibration of pushrod dilatometersHENDERSON, J. B; EMMERICH, W.-D; WASSMER, E et al.Journal of thermal analysis. 1987, Vol 32, Num 6, pp 1905-1913, issn 0368-4466Article

Melting-point models of alkanesBURCH, Kimberly Jordan; WHITEHEAD, Earl Glen.Journal of chemical and engineering data (Print). 2004, Vol 49, Num 4, pp 858-863, issn 0021-9568, 6 p.Article

New crystalline complexes composed of a fatty acid and nicotinamideYOKOYAMA, S; UEDA, F; FUJIE, T et al.Bulletin of the Chemical Society of Japan. 1991, Vol 64, Num 10, pp 3168-3170, issn 0009-2673Article

Crystal structures and melting points of saturated triacylglycerols in the β-3 phaseVAN SOEST, T. C; DE JONG, S; ROIJERS, E. C et al.Journal of the American Oil Chemists' Society. 1990, Vol 67, Num 7, pp 415-423, issn 0003-021XArticle

Compression dependence of the melting of elementsWALLACE, D. C.Proceedings - Royal Society. Mathematical and physical sciences. 1992, Vol 439, Num 1905, pp 177-187, issn 0962-8444Article

BGO crystalline fibresPAZZI, G. P; FABENI, P.Optics and laser technology. 1992, Vol 24, Num 4, pp 193-196, issn 0030-3992Article

On the validity of Wallach's rule : on the density and stability of racemic crystals compared with their chiral counterpartsBROCK, C. P; SCHWEIZER, W. B; DUNITZ, J. D et al.Journal of the American Chemical Society. 1991, Vol 113, Num 26, pp 9811-9820, issn 0002-7863Article

A new method to estimate the ability of forming amorphous solidsWU JINHUA; ZHANG FANGQING; CHEN GUANGHUA et al.Physica status solidi. A. Applied research. 1987, Vol 101, Num 1, pp K1-K3, issn 0031-8965Article

Melting Point Depression of Ionic Liquids with CO2 : Phase EquilibriaSCURTO, Aaron M; NEWTON, Elizabeth; WEIKEL, Ross R et al.Industrial & engineering chemistry research. 2008, Vol 47, Num 3, pp 493-501, issn 0888-5885, 9 p.Article

Supercritical reduction of lauric acid in palm kernel oil (PKO) to produce cocoa butter equivalent (CBE) fatNORULAINI, N. A; ZAIDUL, I. S; ANUAR, O et al.Journal of chemical engineering of Japan. 2004, Vol 37, Num 2, pp 194-203, issn 0021-9592, 10 p.Conference Paper

Development of a new type of low-temperature pattern waxZHANG JIANYU; YAN YONGJIE; BAI LUGANG et al.Petroleum science and technology. 2001, Vol 19, Num 9-10, pp 1119-1128, issn 1091-6466Article

Dicyanononasulfane S9(CN)2 : an unbranched chain of thirteen atomsSTEUDEL, R; BERGEMANN, K; BUSCHMANN, J et al.Angewandte Chemie. International edition in English. 1993, Vol 32, Num 12, pp 1702-1703, issn 0570-0833Article

Variable-temperature ultrahigh vacuum scanning tunneling microscope : mechanical and electronic instrumentationZÜGER, O; OTT, H. P; DÜRIG, U et al.Review of scientific instruments. 1992, Vol 63, Num 12, pp 5634-5643, issn 0034-6748Article

Radiance temperatures (in the wavelength range 522-906 nm) of niobium at its melting point by a pulse-heating techniqueCEZAIRLIYAN, A; MIILLER, A. P.International journal of thermophysics. 1992, Vol 13, Num 1, pp 39-55, issn 0195-928XConference Paper

How to distinguish the local structures of the meltsMICHALSKI, J; MITUS, A. C; PATASHINSKII, A. Z et al.Physics letters. A. 1987, Vol 123, Num 6, pp 293-296, issn 0375-9601Article

Derivation of potential model for LiAlO2 by simple and effective optimization of model parametersTSUCHIHIRA, H; ODA, T; TANAKA, S et al.Journal of nuclear materials. 2009, Vol 395, Num 1-3, pp 112-119, issn 0022-3115, 8 p.Article

Performance of a Modified Skapski Model for the Surface Tension of Liquid Metallic Elements at Their Melting-Point TemperaturesIIDA, Takamichi; GUTHRIE, Roderick.Metallurgical and materials transactions. B, Process metallurgy and materials processing science. 2009, Vol 40, Num 6, pp 967-978, issn 1073-5615, 12 p.Article

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