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Critically evaluated rate coefficients for free-radical polymerization Part 6: Propagation rate coefficient of methacrylic acid in aqueous solution (IUPAC Technical Report)
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Sabine Beuermann
Veröffentlicht/Copyright:
1. Januar 2009
Published Online: 2009-01-01
Published in Print: 2007-01-01
© 2013 Walter de Gruyter GmbH, Berlin/Boston
Artikel in diesem Heft
- Preface
- Computational quantum mechanics: An underutilized tool in thermodynamics
- Verification of time-reversibility requirementfor systems satisfying the Evans-Searles fluctuation theorem
- Bond-dissociation enthalpies in the gas phase and in organic solvents: Making ends meet
- Structure, magnetism, and thermodynamics of the novel rare earth-based R5T4 intermetallics
- Life, data, and everything
- Controlling structure in associating polymer-surfactant mixtures
- Three frontiers in the thermodynamics of protein solutions
- Thermodynamic problems in structural molecular biology
- Critically evaluated rate coefficients for free-radical polymerization Part 6: Propagation rate coefficient of methacrylic acid in aqueous solution (IUPAC Technical Report)
Schlagwörter für diesen Artikel
free-radical polymerization;
IUPAC Polymer Division;
kinetics;
methacrylic acid;
pulsed-laser polymerization;
size-exclusion chromatography
Artikel in diesem Heft
- Preface
- Computational quantum mechanics: An underutilized tool in thermodynamics
- Verification of time-reversibility requirementfor systems satisfying the Evans-Searles fluctuation theorem
- Bond-dissociation enthalpies in the gas phase and in organic solvents: Making ends meet
- Structure, magnetism, and thermodynamics of the novel rare earth-based R5T4 intermetallics
- Life, data, and everything
- Controlling structure in associating polymer-surfactant mixtures
- Three frontiers in the thermodynamics of protein solutions
- Thermodynamic problems in structural molecular biology
- Critically evaluated rate coefficients for free-radical polymerization Part 6: Propagation rate coefficient of methacrylic acid in aqueous solution (IUPAC Technical Report)