Analytical ChemistryWiley, 6 gen 1994 - 840 pagine Extensively revised and updated, this edition is concerned primarily with quantitative analysis techniques. Describes how to design an analytical method, how to obtain a laboratory sample that is representative of the whole and to prepare it for analysis, what measurement tools are available, automated analyses and the statistical significance of the analysis. New and expanded topics include heterogeneous equilibria, diode array spectrometers, fiber-optic sensors and solid-phase extraction. |
Dall'interno del libro
Risultati 1-3 di 96
Pagina 138
... Equation 4.20 can be applied at ionic strengths of 0.01 or less . Equation 4.19 can be applied up to ionic strengths of about 0.2 . Reference 9 at the end of the chapter lists values for a , for different ions and also includes a table ...
... Equation 4.20 can be applied at ionic strengths of 0.01 or less . Equation 4.19 can be applied up to ionic strengths of about 0.2 . Reference 9 at the end of the chapter lists values for a , for different ions and also includes a table ...
Pagina 199
... Equations 6.59 through 6.61 to solve for all the species except [ H3PO4 ] and sub- stitute into Equation 6.63 : [ PO- ] = Ka3 [ HPO2 ] [ H + ] ( 6.64 ) Ka2 [ H2PO4 ] [ HPO2 ] = ( 6.65 ) [ H + ] [ H2PO ] = Kal [ H3PO4 ] [ H + ] ( 6.66 ) ...
... Equations 6.59 through 6.61 to solve for all the species except [ H3PO4 ] and sub- stitute into Equation 6.63 : [ PO- ] = Ka3 [ HPO2 ] [ H + ] ( 6.64 ) Ka2 [ H2PO4 ] [ HPO2 ] = ( 6.65 ) [ H + ] [ H2PO ] = Kal [ H3PO4 ] [ H + ] ( 6.66 ) ...
Pagina 563
... equation to indicate that A is disappearing as a function of time . The constant k is the specific rate constant at ... Equation 18.2 is known as the differential form of the first - order rate law . The integrated form of the equation ...
... equation to indicate that A is disappearing as a function of time . The constant k is the specific rate constant at ... Equation 18.2 is known as the differential form of the first - order rate law . The integrated form of the equation ...
Sommario
Data Handling | 14 |
Stoichiometric Calculations | 65 |
General Concepts of Equilibrium | 115 |
Copyright | |
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absorbance acetic acid acid solution added AgCl agent analysis analyte anion base beaker buffer buret Ca2+ calcium Calculate calibration curve carbon cell Chapter chelate Chem chemical chloride chromatography color column complex compounds concentration containing detector determined dilute dissociation dissolved EDTA eluted end point enzyme Equation equilibrium constant equivalence point error example extraction Fe2+ Figure filter flame fluorescence glass H₂O half-reaction HOAc hydrogen indicator injected instrument ion-selective electrodes ionic strength ionization iron(III liquid measurements method millimoles mixture mmol mmol/mL molarity molecules moles NaOH Nernst equation obtained oxidizing oxidizing agent peak phase pipet potassium potential precipitate prepared proton quantitative radiation ratio react reaction reagent redox reference electrode salt sample separation serum silver sodium sodium hydroxide solubility solvent species spectrometry substances temperature tion titration titration curve tube unknown volume volumetric flask wavelength weak acid weight