unsaturated-can hold more
saturated-holding all it can at acertain temperature
supersaturated-holding more than normal at a certain temperature
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.
3 H2O2 means that the solution contains 3 hydrogen peroxide by volume. This indicates the concentration or strength of the hydrogen peroxide in the solution.
Focus, attention, absorption.
Concentration of a solution refers to the amount of solute present in a given quantity of solvent or total solution. It can be expressed in various ways, such as mass/volume (g/mL), moles/volume (mol/L), or as a percentage. Concentration is important for determining the properties and behavior of a solution.
A pH of 3 indicates a solution is acidic. This means there is a high concentration of hydrogen ions in the solution.
A solution with a pH of 3 is said to be highly acidic. This indicates that the concentration of hydrogen ions in the solution is high, leading to its acidic nature.
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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.
How strong it is, e.g. 1 or 3 spoons of sugar in coffee.
A hydrochloric acid solution with a concentration of 0.001M has a pH of 3 (approximately). This is because hydrochloric acid is a strong acid that completely dissociates in water to release H+ ions, contributing to the acidity of the solution.
The concentration of hydrogen ions in a solution with a pH of 3 is 1 x 10^-3 mol/L.
0.01M is the concentration. It means that there is one hundredth ( 1/100) of a mole in a litre (1000 mL) of solvent.