The concentration of an ion solution, such as salt, directly affects its electrical conductivity when dissolved in water. Higher concentrations of ions lead to increased availability of charge carriers, enhancing the solution's ability to conduct electricity. As more salt is dissolved, more ions are released into the solution, facilitating greater current flow. Therefore, a higher concentration typically results in better conductivity.
Iron itself does not conduct electricity when dissolved, as it typically forms ions in solution. However, when iron is dissolved in an acidic solution, it can produce iron ions (e.g., Fe²⁺ or Fe³⁺) that can conduct electricity due to the movement of these charged particles. The overall conductivity depends on the concentration of the ions and the presence of other ions in the solution.
the answer to this question is : hypotonic solution
isotonic solution
A solution with lower concentration is called a dilute solution. It contains less dissolved solute in comparison to a more concentrated solution.
It means that 100mL of solution has 75g of solute dissolved in it.
isotonic
A conducting solution is a solution that either conducts heat, electricity or sound. The conductivity of a water solution depends on its concentration of dissolved salts and other substances that ionize in the solution.
Both concentration and conductivity are measures of the amount of a substance present in a solution. Concentration refers to the amount of solute dissolved in a solvent, while conductivity measures the ability of a solution to conduct electricity, which is related to the presence of ions in the solution.
Analyzing the relationship between conductivity and concentration in a conductivity vs concentration graph can provide insights into the relationship between the amount of ions in a solution and its ability to conduct electricity. A direct relationship between conductivity and concentration suggests that higher concentrations of ions lead to higher conductivity, indicating a stronger ability to conduct electricity. This relationship can be used to understand the ion concentration in a solution and its impact on its electrical properties.
The maximum concentration of a solution is when the maximum amount of solute is dissolved in a solvent at a given temperature. This concentration is often referred to as the saturation point of the solution, beyond which no more solute can be dissolved.
The concentration is the strenght of the solution.
the answer to this question is : hypotonic solution
The amount of solute dissolved in a solution is its concentration.
Concentration and molarity are related in a solution because molarity is a way to measure concentration. Molarity is the number of moles of solute per liter of solution, so it gives a precise measurement of how much solute is dissolved in a given volume of solvent. Therefore, the higher the molarity, the higher the concentration of the solution.
The concentration
Molecular solutes dissolve as whole molecules and do not dissociate into ions, while ionic solutes dissociate into ions when dissolved in solution. Molecular solutes do not conduct electricity in solution, whereas ionic solutes can conduct electricity due to the presence of free ions.
When all the solute a solution can hold is dissolved, it is called a saturated solution. It contains the highest concentration possible for a solution.