Comprehensive analytical chemistry /

Bibliographic Details
Other Authors: Wilson, Cecil L. (Cecil Leeburn), Wilson, David W. (David Woodburn), 1917-, Svehla, G.
Format: Book
Language:English
Published: Amsterdam ; New York : Elsevier Publishing Company, 1959-<2019>
Subjects:
Table of Contents:
  • Contents.
  • v. 1A, B, C. Classical analysis
  • v. 2A, B, C, D. Electrical methods, physical separation methods
  • v. 28. Kinetic methods in chemical analysis, application of computers in analytical chemistry
  • v. 13. Analytical and biomedical applications of ion-selective field-effect transistors
  • v. 3. Elemental analysis with minute samples, standards and standardization, separations by liquid amalgams, vacuum fusion analysis of gases in metals, electroanalysis in molten salts
  • v. 4. Instrumentation for spectroscopy, analytical atomic absorption and fluorescence spectroscopy, diffuse reflectance spectroscopy
  • v. 5. Emission spectroscopy, analytical microwave spectroscopy, analytical application of electron microscopy
  • v. 6. Analytical infrared spectroscopy
  • v. 7. Thermal methods in analytical chemistry, substoichiometric analytical methods.
  • v. 8. Enzyme electrodes in analytical chemistry, molecular fluorescence spectroscopy, photometric titrations, analytical applications of interferometry
  • v. 9. Ultraviolet photoelectron and photoion spectroscopy, auger electron spectroscopy, plasma excitation in spectrochemical analysis
  • v. 10. Organic spot test analysis, the history of analytical chemistry
  • v. 11. The application of mathematical statistics in analytical chemistry, mass spectrometry, ion selective electrodes
  • v. 12. Thermal analysis. pt. A. Simultaneous thermoanalytical examinations by means of the derivatograph.
  • v. 12. pt. B. Biochemical and clinical applications of thermometric and thermal analysis.
  • v. 12. pt. C. Emanation thermal analysis and other radiometric emanation methods
  • v. 12. pt. D. Thermophysical properties of solids their measurements and theoretical thermal analysis
  • v. 13. Analysis of complex hydrocarbon mixtures
  • pt. A. Separation methods
  • v. 13. pt. B. Group analysis and detailed analysis.
  • v. 14. Ion exchangers in analytical chemistry. Their properties and use in inorganic chemistry
  • v. 15. Methods of organic analysis
  • v. 16. Chemical Microscopy. Thermomicroscopy of organic compounds
  • v. 17. Gas and liquid analyzers
  • v. 19. Analytical visible and ultraviolet spectrometry
  • v. 20. Photometric methods in inorganic trace analysis
  • v. 21. New developments in conductimetric and oscillometric analysis
  • v. 22. Titrimetric analysis in organic solvents
  • v. 42. Non-destructive microanalysis of cultural heritage materials
  • v. 55. Comprehensive two dimensional gas chromatography
  • v. 71. Applications of Time-of-flight and orbitrap mass spectrometry in environmental, food, doping, and forensic analysis
  • v. 72. Rapid Immunotests for clinical, food and environmental applications
  • v. 73. The Quality of air
  • v. 74. Biosensors for sustainable food, new opportunities and technical challenges
  • v. 75. CHaracterization and analysis of microplastics
  • v. 76. Green extraction techniques: principles, advances and applications
  • v. 77. Past, present and future challenges of biosensors and bioanalytical tools in analytical chemistry: a tribute to Professor Marco Mascini
  • v. 78. Recent advaces in the analysis of marine toxins
  • v. 79. Advances in the use of liquid chromatography mass spectrometry (LC-MS): Instruction developments and applications
  • v. 80. Vibrational spectroscopy for plant varieties and cultivars characterization
  • v. 81. Fundamentals of quorum sensing, analytical methods and applications in membrane bioreactors
  • v. 82. Data analysis for omic sciences: methods and applications
  • v. 83. Advances in ion mobility-mass spectrometry: fundamentals, instrumentation and applications
  • v. 84. Analysis, fate, and toxicity of engineered nanomaterials in plants
  • v. 85. Arsenic speciation in algae
  • v. 86. Mip synthesis characteristics and analytical application
  • v. 87. Engineered nanomaterials and phytonanotechnology: Challenges for plant sustainability
  • v. 88. Emerging halogenated flame retardants in the environment
  • v. 92. Analysis and formation of disinfection byproducts in drinking water.