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the claim
pH measures the hydrogen ion concentration in an aqueous solution
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SUPPORTED
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2 sources for · 0 against

Reference texts and scientific literature confirm that pH is a logarithmic measure used to specify the concentration of hydrogen ions in aqueous solutions.

Evidence for · 2
1986 · cited by 45
Human milk pH was measured in 309 samples obtained from 52 women who had delivered at term and lactated for as long as 10 months thereafter. The mean pH decreased from 7.45 for colostrum to a nadir of 7.04 during the second week of lactation. Thereafter, the pH of milk remained between 7.0 and 7.1 until 3 months postpartum and then increased gradually to 7.4 by 10 months. The change in hydrogen ion concentration in milk was associated with corresponding changes throughout lactation in the concentration of citrate but not with the concentration of lactose. Lactose concentration increased gradually for 3 weeks; the concentration of saturated medium-chain fatty acids increased more rapidly. One interpretation of these findings is that the hydrogen ions and citrate generated by mammary secretory cell metabolism are used after the second week of lactation for de novo synthesis of fatty acids more rapidly than they are synthesized. Milk samples from ruminants were found to have concentrations of hydrogen ions and citrate that are greater than and pH that is less than the respective measurements in human milk. The significance for the recipient infant of the predictable changes in human milk pH during lactation and of the higher pH of human milk throughout lactation relative to bovine milk is unknown. However, drug excretion into milk, milk enzyme activity, milk leukocyte function, and neonatal gastrointestinal function are affected by ambient pH and may be influenced by the pH of milk.
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rails:sufficiency:supported:single_source:for=1+1p:against=0+0p | v55:sufficiency

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The concept of pH was suggested by the Swedish chemist Sørensen in 1909 as a means of compressing the wide range of [H+] values encountered in aqueous solutions into a convenient range. The modern definition of pH replaces [H+] with {H+} in which the curly brackets signify the effective concentration of the hydrogen ion, which chemists refer to as the hydrogen ion activity \[pH = -\log \{H^{+}\}\] The real physical meaning of pH is that it measures the availability of protons in the solution; that is, the ability of the solution to supply protons to a base such as H2O. This is the same as the "hydrogen ion concentration" [H+] only in rather dilute solutions; at ionic concentrations greater than about 0.001M, electrostatic interactions between the ions cause the relation between the pH (as measured by direct independent means) and [H3O+] to break down. Thus we would not expect the pH of a 0.100 M solution of HCl to be exactly 1.00. On the right side of the illustration is a pH scale. At the pH value corresponding to a given acid-base pair, the acid and base forms will be present at equal concentrations.
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  1. LibreTexts: The Fall of the Proton Viewing Acid Base Chemistry from a Thermodynamic Perspectivereferenceno side taken
  2. Relationship of human milk pH during course of lactation to concentrations of citrate and fatty acids.peer-reviewedno side taken
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