Fundamentals of Analytical ChemistryHolt, Rinehart, and Winston, 1976 - 804 pagine |
Dall'interno del libro
Risultati 1-3 di 42
Pagina 94
... HYDRONIUM ION CONCENTRATION IS VARIABLE Solutes containing basic anions ( such as calcium oxalate ) or acidic cations ( such as bismuth iodide ) contribute to the hydronium ion concentration of their aqueous solutions . Thus , if it is ...
... HYDRONIUM ION CONCENTRATION IS VARIABLE Solutes containing basic anions ( such as calcium oxalate ) or acidic cations ( such as bismuth iodide ) contribute to the hydronium ion concentration of their aqueous solutions . Thus , if it is ...
Pagina 107
... ion concentration may be maintained at some predetermined level by the use of a suitable buffer.4 Perhaps the best ... hydronium ion concentration of the solution . This relationship is useful for calculating the optimum conditions for ...
... ion concentration may be maintained at some predetermined level by the use of a suitable buffer.4 Perhaps the best ... hydronium ion concentration of the solution . This relationship is useful for calculating the optimum conditions for ...
Pagina 225
... hydronium ion concentration for either of these systems . Ordinarily , however , it is permissible to introduce the ... hydronium ion concentration of the solution . Thus , for a buffer consisting of H2A and NaHA , the dissociation ...
... hydronium ion concentration for either of these systems . Ordinarily , however , it is permissible to introduce the ... hydronium ion concentration of the solution . Thus , for a buffer consisting of H2A and NaHA , the dissociation ...
Sommario
INTRODUCTION | 1 |
A REVIEW OF SIMPLE EQUILIBRIUMCONSTANT | 22 |
vi | 42 |
Copyright | |
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Parole e frasi comuni
absorbance absorption acetic acid acid solution addition AgNO3 aliquot analysis analytical anode application aqueous solution base Beer's law buffer calcium Calculate carbonate cathode cations Cd2+ cell cerium chemical chloride color column complex compounds copper coulometric crucible Cu2+ determined dilute dissociation dissolved EDTA electrode potential electrolyte employed end point Equation equilibrium constant equivalence point equivalent weight error ethanol example excess Fe2+ Fe3+ Figure filter flask formation formula weight glass gravimetric H₂O H3O+ half-reaction hydrochloric acid hydrogen ion hydronium ion hydroxide indicator iodide iodine ion concentration iron(III liquid measurement metal method mixture NaOH ordinarily oxalate oxidation particles perchloric acid potassium precipitate quantity radiation reactant reaction reagent reduced sample silver silver chloride sodium solid solubility solution containing solvent species standard hydrogen electrode standard solution substance sulfuric sulfuric acid temperature titration titration curve volume volumetric wavelength
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Coagulation Pretreatment for Membrane Filtration Kerry J. Howe,Mark M. Clark Anteprima limitata - 2002 |