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pH is a measure of the acidity or alkalinity of a solution on a logarithmic scale ranging from 0 to 14, while hydrogen ion concentration refers to the actual amount of H+ ions present in a solution. pH is calculated based on the negative logarithm of hydrogen ion concentration, where a lower pH value indicates higher hydrogen ion concentration and greater acidity.
pH come from "pondus hydrogenii" or "potential hydrogen." It measures the concentration of hydrogen ions. Mathematically, pH = -log[H+] Therefore, to answer your question, a pH of 3 will have a 10-3M of hydrogen ions where as the pH 9 solution will have a 10-9M of hydrogen ions. The lower the pH the higher its H+ concentration and the more acidic it is. (A pH of 9 is actually basic.)
If something has a pH greater than 7, it is considered basic or alkaline. Substances with a pH above 7 have a lower concentration of hydrogen ions and a higher concentration of hydroxide ions.
Adding water does not always decrease pH. pH is a measure of the concentration of hydrogen ions, also called hydronium ions. They are inversely related. More hydrogen ions means a lower pH. A base has a pH greater than 7 (neutral) because it has an increased amount of hydroxide ions which causes a lower amount of hydrogen ions. Adding more water to a base solution causes the concentration of the hydroxide ions to become less, thus due to equilibrium, causing the hydrogen ion concentration to increase. This does cause pH to become less ... decrease. But an acid solution does the exact opposite when water is added. It already has a large concentration of hydrogen ions, but as water is added the concentration decreases and this causes pH to increase.
There is little difference. The contents of the stomach before the drink have a far greater effect. The reason for this belief is that people tend to drink carbonated drinks more rapidly than non-carbonated.
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A substance with a pH of 4 has a greater concentration of hydrogen ions compared to a substance with a pH of 5. The pH scale is logarithmic, so each decrease in pH by 1 represents a tenfold increase in hydrogen ion concentration.
The hydrogen ion concentration in tomatoes at pH 4.2 is 100 times greater than in rainwater at pH 6.2. pH is a logarithmic scale, so each whole number change represents a tenfold difference in hydrogen ion concentration.
A solution with a pH of 3 has a greater concentration of hydrogen ions compared to a solution with a pH of 7. The pH scale is logarithmic, so each pH unit represents a tenfold difference in hydrogen ion concentration.
The pH of a solution measures the hydrogen ion concentration in that solution. A small change in pH represents a large change in hydrogen ion concentration. For example, the hydrogen ion concentration of lemon juice (pH of 2.3) is 63 times greater than that of tomato juice (pH of 4.1), and 50,000 times greater than that of water (pH of 7.0). mustki2005@yahoo.comNigerian
In an acidic pH, the concentration of hydrogen ions (H+) is greater compared to other ions. This is because acidic solutions have a higher concentration of H+ ions, leading to a decrease in pH below 7.
A hydrogen ion (H+) is a positively charged particle that is released when an acid dissolves in water. Acids are substances that release hydrogen ions in solution, making the solution acidic. The concentration of hydrogen ions determines the acidity of a solution, with higher concentrations leading to stronger acids.
pH is a measure of the acidity or alkalinity of a solution on a logarithmic scale ranging from 0 to 14, while hydrogen ion concentration refers to the actual amount of H+ ions present in a solution. pH is calculated based on the negative logarithm of hydrogen ion concentration, where a lower pH value indicates higher hydrogen ion concentration and greater acidity.
acids are substances that release their hydrogen ion(s) while bases grab hydrogen ions to themselves. SO, adding acids will increase the H+ concentration while adding bases will decrease the H+ concetration of the solution. This would be considered a direct effect.
The pH of a solution with higher hydrogen ion concentration than hydroxide ion concentration will be less than 7, indicating an acidic solution. The exact pH value can be calculated using the formula pH = -log[H+].
Yes, a pH of 3 has more hydrogen ions (H+) than a pH of 7. The pH scale is logarithmic, so each unit change represents a tenfold difference in the concentration of hydrogen ions. A decrease in pH corresponds to an increase in hydrogen ion concentration.
A solution with a pH of 9 has a greater concentration of hydroxide ions than a solution with a pH of 3. The pH scale is a logarithmic scale, with each unit representing a tenfold difference in hydrogen ion concentration. Therefore, a solution with a pH of 9 has a concentration of hydroxide ions 1,000 times greater than a solution with a pH of 3.