Analytical ChemistryHolt, Rinehart and Winston, 1979 - 685 pagine |
Dall'interno del libro
Risultati 1-3 di 82
Pagina 25
... increase in temperature will alter the concentration relationships in the direction that tends to absorb heat ; an increase in pressure favors those participants that occupy the smaller total volume . Of particular importance in an ...
... increase in temperature will alter the concentration relationships in the direction that tends to absorb heat ; an increase in pressure favors those participants that occupy the smaller total volume . Of particular importance in an ...
Pagina 88
... increase in the hydrogen sulfate ion concentration . The consequent decrease in sulfate ion concentration is partially offset , however , by a shift of the first equilibrium to the right ; the net result is an increase in solubility ...
... increase in the hydrogen sulfate ion concentration . The consequent decrease in sulfate ion concentration is partially offset , however , by a shift of the first equilibrium to the right ; the net result is an increase in solubility ...
Pagina 124
... increase exponentially with relative supersaturation , whereas the rate of particle growth bears an approximately linear relationship to this parameter . Thus when super- saturation is high , the nucleation rate far exceeds particle ...
... increase exponentially with relative supersaturation , whereas the rate of particle growth bears an approximately linear relationship to this parameter . Thus when super- saturation is high , the nucleation rate far exceeds particle ...
Sommario
Introduction | 1 |
A Review of Simple Equilibrium Constant | 24 |
The Evaluation of Analytical Data | 46 |
Copyright | |
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absorbance absorption acid solution activity coefficient addition AgNO3 aliquot analysis analyte anode application approximately atoms base buffer buret calcium Calculate carbonate cathode cations cell cerium(IV chemical color column complex concen copper(II coulometric crucible determined dilute dissociation constant dissolved EDTA electrode potential electrolyte employed end point Equation equilibrium constant equivalence point equivalent weight example excess filter formal concentration formation formula weight glass H₂O H3O+ half-cell half-reaction hydrogen hydronium ion hydroxide indicator iodide iodine ion concentration iron(III liquid liter measurements mercury(II metal method molar NaOH oxalate oxidation particles permanganate pipet potassium precipitate prepared primary standard Procedure quantity radiation reaction reagent reduced sample silver chloride silver ion silver nitrate sodium solid solubility solution containing solvent species standard hydrogen electrode standard solution substance sulfuric acid Table temperature thiosulfate titration curve volume volumetric flask wavelength
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