Decomposition and analysis of refractory oceanic suspended materials

[1]  T. Krygowski,et al.  Complementary Lewis acid-base description of solvent effects. I. Ion-ion and ion-dipole interactions , 1975 .

[2]  E. Arnett,et al.  Basicity. Comparison of hydrogen bonding and proton transfer to some Lewis bases , 1974 .

[3]  V. Gutmann Empirical approach to ligand effects on the kinetics of substitution and redox reactions , 1974 .

[4]  O. W. Kolling,et al.  Solvatochromism of phenol blue in the ethyl acetate-acetic acid solvent system , 1974 .

[5]  P. Richardson,et al.  Bottom currents, nepheloid layers and sedimentary features under the Gulf Stream near Cape Hatteras , 1974 .

[6]  Glenn C. Vogel,et al.  Four-parameter equation for predicting enthalpies of adduct formation , 1971 .

[7]  J. Figueras,et al.  Synthesis and spectral properties of some N-substituted derivatives of phenol blue , 1971 .

[8]  R. Feely,et al.  Distribution of particulate aluminum in the Gulf of Mexico , 1971 .

[9]  J. Figueras Hydrogen bonding, solvent polarity, and the visible spectrum of phenol blue and its derivativatives , 1971 .

[10]  R. Cranston,et al.  Atomic absorption analyses of 18 elements from a single decomposition of aluminosilicate , 1971 .

[11]  R. H. Meade,et al.  Suspended Matter in Surface Waters of the Atlantic Continental Margin from Cape Cod to the Florida Keys , 1970, Science.

[12]  L. Atkinson,et al.  Particulate aluminum and iron in sea water off the southeastern coast of the United States , 1969 .

[13]  B. Bernas New method for decomposition and comprehensive analysis of silicates by atomic absorption spectrometry , 1968 .

[14]  O. W. Kolling Solvent Effects upon the Electronic Spectrum of Nile Blue A Oxazone. , 1966 .

[15]  M. M. Davis,et al.  Titrimetric and Equilibrium Studies Using Indicators Related to Nile Blue A. , 1966 .

[16]  L. Brooker,et al.  Color and Constitution. XIII.1 Merocyanines as Solvent Property Indicators2 , 1965 .

[17]  K. Dimroth,et al.  Über Pyridinium‐N‐phenol‐betaine und ihre Verwendung zur Charakterisierung der Polarität von Lösungsmitteln , 1963 .

[18]  W. Sackett,et al.  Distribution of aluminum species in the hydrosphere—I Aluminum in the ocean , 1962 .

[19]  E. Kosower The Effect of Solvent on Spectra. I. A New Empirical Measure of Solvent Polarity: Z-Values , 1958 .

[20]  K. Carder,et al.  LIGHT SCATTERING AND SUSPENDED PARTICULATE MATTER ON A TRANSECT OF THE ATLANTIC OCEAN AT 11° N , 1974 .

[21]  O. W. Kolling,et al.  Phenol Blue as a solvent polarity indicator for binary aprotic solvents , 1973 .

[22]  F. Manheim,et al.  SUSPENDED MATTER IN SURFACE WATERS OF THE NORTHERN GULF OF MEXICO1 , 1972 .

[23]  A. Katritzky,et al.  The correlation of solvent effects on physical and chemical properties , 1971 .

[24]  F. J. Langmyhr,et al.  The analysis of inorganic siliceous materials by atomic absorption spectrophotometry and the hydrofluoric acid decomposition technique : Part I. the analysis of silicate rocks , 1968 .

[25]  C. Reichardt Empirical Parameters of the Polarity of Solvents , 1965 .