Fundamentals of Analytical ChemistryHolt, Rinehart and Winston, 1963 - 786 pagine |
Dall'interno del libro
Risultati 1-3 di 86
Pagina 30
... dilute to 365 ml ( b ) 2.00 liters of 0.100 F AgNO3 from 0.600 F AgNO , ( c ) 10.00 liters of exactly 0.1000 F KSCN from the salt ans . Dissolve 97.2 grams KSCN and dilute to 10.00 liters ( d ) 434.0 ml of 0.100 F KSCN from 0.157 F KSCN ...
... dilute to 365 ml ( b ) 2.00 liters of 0.100 F AgNO3 from 0.600 F AgNO , ( c ) 10.00 liters of exactly 0.1000 F KSCN from the salt ans . Dissolve 97.2 grams KSCN and dilute to 10.00 liters ( d ) 434.0 ml of 0.100 F KSCN from 0.157 F KSCN ...
Pagina 298
... dilution is typical of all buffer solutions . This statement , however , is true as a first approximation only ; with very concentrated and very dilute buffers , small pH changes do occur when dilution takes place . In very dilute ...
... dilution is typical of all buffer solutions . This statement , however , is true as a first approximation only ; with very concentrated and very dilute buffers , small pH changes do occur when dilution takes place . In very dilute ...
Pagina 672
... dilute to the mark with water . Rinse and fill one of the absorption cells of the instrument with this solution ; fill a second cell with water and dry the windows of both with a clean tissue . Determine the absorbance of the solution ...
... dilute to the mark with water . Rinse and fill one of the absorption cells of the instrument with this solution ; fill a second cell with water and dry the windows of both with a clean tissue . Determine the absorbance of the solution ...
Sommario
The Scope of Analytical Chemistry | 3 |
Some Elementary Concepts Important | 10 |
The Evaluation of Analytical Data | 33 |
Copyright | |
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2H₂O absorbance absorption acid solution addition analysis analytical anode application aqueous barium base buffer Calculate carbonate cathode cell Chem chemical chemist colloidal color complete compounds coprecipitation coulometric crucible determined dilute dissociation dissociation constant dissolved electrode electrolyte employed end point equation equilibrium constant equivalence point equivalent weight error example excess F solution ferric ferrous filter flask formal concentration formation formula weight grams gravimetric H₂O H₂SO half reaction hydrochloric acid hydroxide indicator iodide iodine liquid measurement metal method mixture mol/liter NaOH obtained occurs oxalate oxidation particles percent permanganate polarographic potassium precipitate procedure quantity radiation reagent reduced result salt sample saturated calomel electrode silver chloride silver ion silver nitrate sodium solid solubility solvent species standard hydrogen electrode standard solution substance sulfate sulfuric sulfuric acid surface Table temperature tion titration curve volt volts volume volumetric weak acid zinc
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Coagulation Pretreatment for Membrane Filtration Kerry J. Howe,Mark M. Clark Anteprima limitata - 2002 |