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A pH of 5 is 1,000 times stronger (10^3) than a pH of 8. Each unit change in pH represents a 10-fold difference in hydrogen ion concentration, so the difference between pH 5 and 8 is 10^3.
A pH of 1.2 is stronger acid than a pH of 3. Each unit decrease in pH corresponds to a tenfold increase in acidity, so a pH of 1.2 is 100 times more acidic than a pH of 3.
No, a lower pH value indicates a stronger acid. Therefore, pH 3 is stronger than pH 4.
A pH of 2 is stronger (more acidic) than a pH of 3. The pH scale is logarithmic, meaning each whole number change represents a tenfold difference in acidity.
The lower the pH value, the stronger the acid. Therefore, pH 3 is stronger than pH 5. pH 3 has a higher concentration of hydrogen ions, making it a more acidic solution than pH 5.
A pH of 5 is 1,000 times stronger (10^3) than a pH of 8. Each unit change in pH represents a 10-fold difference in hydrogen ion concentration, so the difference between pH 5 and 8 is 10^3.
A pH of 1.2 is stronger acid than a pH of 3. Each unit decrease in pH corresponds to a tenfold increase in acidity, so a pH of 1.2 is 100 times more acidic than a pH of 3.
No, a lower pH value indicates a stronger acid. Therefore, pH 3 is stronger than pH 4.
A pH of 2 is stronger (more acidic) than a pH of 3. The pH scale is logarithmic, meaning each whole number change represents a tenfold difference in acidity.
The lower the pH value, the stronger the acid. Therefore, pH 3 is stronger than pH 5. pH 3 has a higher concentration of hydrogen ions, making it a more acidic solution than pH 5.
In pH 3, the concentration of hydrogen ions is 10 times higher than in pH 4. Therefore, there are 10 times more hydrogen ions in pH 3 than in pH 4.
pH is a logarithmic scale, so each unit change represents a tenfold difference in acidity or alkalinity. Therefore, pH 1 is 100 times (10 x 10) stronger than pH 3 in terms of acidity.
The concentration of hydroxide ion is realted to pH by the pKw (10-14) At pH 9 the concentration of OH- is 10-5, at pH 3, 10-11. The ratio is 106 so there are a million times as many OH- in pH 9.
The concentration of hydroxide ion is realted to pH by the pKw (10-14) At pH 9 the concentration of OH- is 10-5, at pH 3, 10-11. The ratio is 106 so there are a million times as many OH- in pH 9.
A solution with pH 1 is 100 times more acidic than a solution with pH 3. This is because pH is a logarithmic scale, where each unit change represents a tenfold difference in hydrogen ion concentration.
x 1 000 000
The solution must be diluted 1000 times to get from a pH of 3 to a pH of 6.