Diffusion is the movement of particles from a region of higher concentration to a region of lower concentration. Osmosis is the diffusion of water molecules (only) from an area of higher concentration to an area of low concentration.
The lower the molarity, the lower the concentration. Molarity is a measure of the concentration of a solute in a solution. A lower molarity means there is less solute dissolved in the solution, resulting in a lower concentration of the solute.
diffuse towards area with more water . diffusion happens where it is from higher concentration to lower concentration . so more water of course higher concentration , less water of course lower concentration . this is what i think . but don guarantee correct answer .
This process is called active transport, where cells use energy to move molecules against their concentration gradient, from an area of lower concentration to a higher concentration. This mechanism allows cells to maintain specific intracellular concentrations of certain molecules that are different from their surroundings.
No, diffusion is the process by which molecules move from areas of higher concentration to areas of lower concentration in order to reach equilibrium. It is a passive process driven by the concentration gradient.
No, pH is a measure of the concentration of hydrogen ions. A lower pH indicates a higher concentration of hydrogen ions, while a higher pH indicates a lower concentration. Therefore, a solution with a pH of 5 has a higher concentration of hydrogen ions compared to a solution with a pH of 10.
The lower the molarity, the lower the concentration. Molarity is a measure of the concentration of a solute in a solution. A lower molarity means there is less solute dissolved in the solution, resulting in a lower concentration of the solute.
Diffusion
diffuse towards area with more water . diffusion happens where it is from higher concentration to lower concentration . so more water of course higher concentration , less water of course lower concentration . this is what i think . but don guarantee correct answer .
The higher the hydronium ion concentration in a solution, the lower the pH. This is because pH is a measure of the concentration of hydronium ions in a solution, with lower pH values indicating higher concentrations of hydronium ions.
osmosis is the passive movement of a substance from a place where its concentration is higher, to another where its concentration is lower. This applies to gases, I guess
diffusion
I would point your studies towards collision theory. It's not that a low concentration necessarily slows down a reaction, but that a low concentration will have a slower reaction rate than a higher concentration of reactants. A lower concentration means a lower number of reactants in solution, meaning it is less likely for the reactants to collide and create products. With a lot of reactants, it is much more likely for collisions to occur.
Molecules move a from regions where they are in higher concentrations to regions where they are in lower concentrations. Random
Yes, a lower pH indicates a higher proton concentration because pH is a measure of the concentration of hydrogen ions in a solution. A lower pH means more hydrogen ions are present, leading to a more acidic environment.
The movement of materials from a higher concentration to a lower concentration is called diffusion. This process occurs spontaneously to reach equilibrium, where the concentration of the substance is the same throughout the system.
Hypotonic is the term describes a solution that has a lower solute concentration and higher water concentration than another solution Hypertonic describes a solution with a higher solute concentration compared with another solution.
This process is called active transport, where cells use energy to move molecules against their concentration gradient, from an area of lower concentration to a higher concentration. This mechanism allows cells to maintain specific intracellular concentrations of certain molecules that are different from their surroundings.