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Titlebook: Buffers for pH and Metal Ion Control; D. D. Perrin,Boyd Dempsey Book 1974 D. D. Perrin and Boyd Dempsey 1974 Ampholyte.Chromat.Titration.a

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Amleto e il teatro nell’era scientificase. For a buffer to be effective, its pH must be within the range p. ± 1, or preferably, within p. ± 0.5. The former scarcity of buffer substances with a pH range 6 to 8 frequently led to the use of buffers such as phosphate or Tris in pH regions where they had little buffer capacity.
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Introduction,change in pH. This resistance to change in the free hydrogen ion concentration of a solution was described by Fernbach and Hubert (1900) as ‘buffering’. In studies of the enzyme, amylase, they found that a partly neutralized solution of phosphoric acid acted as a ‘protection against abrupt changes i
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Applications of pH Buffers, is clearly the most important single factor in choosing a buffer for any particular application and reference to lists of p. values such as those given in Appendix III provides a rapid indication of possible buffer substances.
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Practical Limitations in the use of Buffers,se. For a buffer to be effective, its pH must be within the range p. ± 1, or preferably, within p. ± 0.5. The former scarcity of buffer substances with a pH range 6 to 8 frequently led to the use of buffers such as phosphate or Tris in pH regions where they had little buffer capacity.
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Metal-Ion Buffers,0.M are difficult to maintain in the presence of adventitious complexing agents, hydrolytic equilibria, adsorption and, possibly, contamination. Many problems can be overcome by the use of metal-ion buffers which provide a controlled source of free metal ions in a manner similar to the regulation of
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