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MECANISME DES REACTIONS DE CYCLOADDITION DIPOLAIRE-1,3STEPHAN E.1975; TETRAHEDRON; G.B.; DA. 1975; VOL. 31; NO 13-14; PP. 1623-1629; ABS. ANGL.; BIBL. 28 REF.Article

PERTUBATION THEORY OF SUBSTITUENT EFFECT - MECHANISTIC INTERPRETATION OF THE HAMMETT RHO CONSTANTSPONEC R.1980; CHEM. SCR.; ISSN 0004-2056; SWE; DA. 1980; VOL. 15; NO 3; PP. 117-120; BIBL. 13 REF.Article

A CRITICAL ANALYSIS OF THE HAMMETT ACTIVITY COEFFICIENT POSTULATEPASSERINI R; MARZIANO NC; TRAVERSO P et al.1975; GAZZ. CHIM. ITAL.; ITAL.; DA. 1975; VOL. 105; NO 7-8; PP. 901-906; ABS. ITAL.; BIBL. 20 REF.Article

Concerning the problem of the isokinetic relationship. III: The temperature-dependence of the Hammett equationLINERT, W; SCHMIDT, R; KUDRJAWTSEV, A. B et al.Australian journal of chemistry. 1985, Vol 38, Num 5, pp 677-688, issn 0004-9425Article

ENOLATE ANIONS. II: SUBSTITUENT EFFECTS OF SODIUM ETHYL PHENYLACETATES IN DMSOKIYOOKA SI; UEDA Y; SUZUKI K et al.1980; BULL. CHEM. SOC. JAP.; JPN; DA. 1980; VOL. 53; NO 6; PP. 1656-1660; BIBL. 23 REF.Article

NEW EXTENDED HAMMETT EQUATION WITH DONOR AND ACCEPTOR RESONANCE CONTRIBUTIONSWEEKS G; HORAK V.1980; J. ORG. CHEM.; USA; DA. 1980; VOL. 45; NO 11; PP. 2068-2071; BIBL. 17 REF.Article

STATISTICAL ANALYSIS OF THE HAMMETT EQUATION. IV. AN EXPANDED SIGMA ZERO SCALE.SJOSTROM M; WOLD S.1976; CHEM. SCRIPTA; SUEDE; DA. 1976; VOL. 9; NO 5; PP. 200-210; BIBL. 1 P.Article

DIRECTIVE EFFECTS IN BENZYLIC HYDROGEN ATOM ABSTRACTION. VI. HALOGENATION OF ARETHYL FLUORIDESLEE KH; LOKE SE; YEOH GH et al.1975; J. CHEM. SOC., PERKIN. TRANS., 2; G.B.; DA. 1975; NO 1; PP. 10-12; BIBL. 13 REF.Article

KINETICS OF THE FORMATION OF CHALKONE-LINEAR FREE ENERGY RELATIONSHIPSNAYAK PL; ROUT MK.1975; J. INDIAN CHEM. SOC.; INDIA; DA. 1975; VOL. 52; NO NO 9; PP. 809-811; BIBL. 20 REF.Article

SUBSTITUENT EFFECTS ON THE PHOTOCHEMICAL ALPHA CLEAVAGE OF DEOXYBENZOINLEWIS FD; HOYLE CH; MAGYAR JG et al.1975; J. ORG. CHEM.; U.S.A.; DA. 1975; VOL. 40; NO 4; PP. 488-492; BIBL. 35 REF.Article

SUR LA REACTION DU DIPHENYLMETHYLSILANE AVEC LES ALCOOLS EN PRESENCE DE FLUORURE DE TETRAMETHYLAMMONIUMANDRIANOV KA; TARTAKOVSKAYA LM; KOPYLOV VM et al.1975; ZH. OBSHCH. KHIM.; S.S.S.R.; DA. 1975; VOL. 45; NO 1; PP. 112-116; BIBL. 6 REF.Article

VALIDITY OF THE HAMMETT POSTULATE. II: A NEW AND ACCURATE DETERMINATION OF THE ACIDITY FUNCTION HO', HC, HR, AND HOIII IN SULPHURIC ACID (0-30 WT%) AND ITS CONSEQUENCESDOMINIQUE P; CARPENTIER JM.1979; J. CHEM. RES., SYNOPSIS; GBR; DA. 1979; NO 2; PP. 58-59; BIBL. 9 REF.; SYNOPSIS;[J. CHEM. RES., M; GBR; DA. 1979; 0729-0756; BIBL. 49 REF.; IN EXTENSO FRE]Article

PHOTOLYSIS OF ARYL GLYCOSIDES WITH ULTRAVIOLET IRRADIATIONYAMADA T; SAWADA M; TAKI M et al.1975; AGRIC. BIOL. CHEM.; JAP.; DA. 1975; VOL. 39; NO NO 4; PP. 909-910; BIBL. 4 REF.Article

SUBSTITUTION NUCLEOPHILE DANS LA SERIE AROMATIQUE. XLIX. CINETIQUE DES REACTIONS DES CHLOROBENZENES PARASUBSTITUES AVEC LE THIOPHENOLATE DE NA DANS CH3OHSOLODOVA KV; KOZHEVNIKOVA NV; SHEJN SM et al.1974; ZH. ORG. KHIM.; S.S.S.R.; DA. 1974; VOL. 10; NO 10; PP. 2141-2145; BIBL. 15 REF.Article

CATIONIC INDICATOR BASES FOR THE H+ SCALE IN CONCENTRATED SULFURICLOVELL MW; SCHULMAN SG.1983; ANALYTICAL CHEMISTRY (WASHINGTON); ISSN 0003-2700; USA; DA. 1983; VOL. 55; NO 6; PP. 963-965; BIBL. 13 REF.Article

BESTIMMUNG DER ACIDITAERSFUNKTION H0 IN KONZENTRIERTEN WAESSRIGEN LOESUNGEN DER 1,3,5-TRIFLUORBENZOL-2,4-DISULFONSAERE = MESURE DE LA FONCTION D'ACIDITE H0 EN SOLUTION AQUEUSE CONCENTREE D'ACIDE TRIFLUORO-1,3,5 BENZENEDISULFONIQUE-2,4HABEL W; SARTORI P.1982; J. FLUORINE CHEM.; ISSN 0022-1139; CHE; DA. 1982; VOL. 21; NO 3; PP. 351-357; ABS. ENG; BIBL. 5 REF.Article

MICROSCOPIC REVERSIBILITY PREVENTS A NON-TRADITIONAL INTERPRETATION OF NON-LINEAR HAMMETT PLOTSJIK CHIN.1980; J. CHEM. SOC., CHEM. COMMUN.; ISSN 0022-4936; GBR; DA. 1980; NO 24; PP. 1269-1270; BIBL. 2 REF.Article

ACIDITY OF HYPERCONCENTRATED ELECTROLYTE SOLUTIONS. HAMMETT ACIDITY FUNCTION MEASUREMENTS FOR AQUEOUS ZNCL2+LICL SOLUTIONSCRANE SG; EASTEL AJ.1980; AUST. J. CHEM.; ISSN 0004-9425; AUS; DA. 1980; VOL. 33; NO 10; PP. 2325-2329; BIBL. 20 REF.Article

KINETICS OF THE INTERACTION OF NITROSOBENZENES WITH SUBSTITUTED BENZALDEHYDE PHENYLHYDRAZONES.DELLA COLETTA BA; FRYE JG; YOUNGLESS TL et al.1977; J. ORG. CHEM.; U.S.A.; DA. 1977; VOL. 42; NO 18; PP. 3057-3059; BIBL. 16 REF.Article

A REPRESENTATIVE PARAMETER, H0,MAX), OF ACID-BASE STRENGTH ON SOLID METAL-OXYGEN COMPOUNDS.YAMANAKA T; TANABE K.1976; J. PHYS. CHEM.; U.S.A.; DA. 1976; VOL. 80; NO 15; PP. 1723-1727; BIBL. 12 REF.Article

CARACTERE LIMITE DU ROLE DE LA FONCTION D'ACIDITE DE HAMMETTTARKHANYAN AS.1982; Z. FIZ. HIM.; ISSN 0044-4537; SUN; DA. 1982; VOL. 56; NO 4; PP. 984-985; BIBL. 13 REF.Article

ACIDITY OF ZINC CHLORIDE SOLUTIONSMCDANIEL DH.1979; INORG. CHEM.; USA; DA. 1979; VOL. 18; NO 5; PP. 1412; BIBL. 12 REF.Article

STATISTICAL ANALYSIS OF THE HAMMETT EQUATION. III. EVIDENCE AGAINST PARA THROUGH-RESONANCE FOR-M SUBSTITUENTS IN PHENYLACETIC ACIDS AND PHENYLPROPIONIC ACIDSSJOSTROM M; WOLD S.1976; ACTA CHEM. SCAND., B; DANEM.; DA. 1976; VOL. 30; NO 2; PP. 167-171; BIBL. 7 REF.Article

GESCHWINDIGKEIT DER SAEUREBILDUNG AUS PHENYLKETENEN IN WAESSRIGER LOESUNG = VITESSE DE FORMATION D'ACIDES A PARTIR DE PHENYLCETENES EN SOLUTION AQUEUSEBOTHE E; MEIER H; SCHULTE FROHLINDE D et al.1976; ANGEW. CHEM.; DTSCH.; DA. 1976; VOL. 88; NO 12; PP. 413; BIBL. 4 REF.Article

THE RELATIONSHIP BETWEEN HR AND H0 IN MODERATELY CONCENTRATED AQUEOUS PERCHLORIC AND HYDROCHLORIC ACIDSKRESGE AJ; CHEN HJ; CHIANG Y et al.1972; J. CHEM. SOC., CHEM. COMMUNIC.; G.B.; DA. 1972; NO 17; PP. 969-970; BIBL. 6 REF.Serial Issue

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