Kung ang Solute ay liquid at ang Solvent ay liquid din , mkikita mo ito sa apperance . Halimbaw : CookingOil(solute) Water(solvent) , pag pinag halo mo itong dalawa ang solute ay maghihiwalayhiwalay makakagawa ng maraming phases sa solvent .
homogeneous mixture of two or more components is called as solution.Components of solution are solvent and solute.In which solvent is present in large amount and solute is in small amount.generally solute is considered as impurities for solvent.eg.sugary solution-sugar is solute and water is solvent.
Neither. "Solute" and "solvent" are used to refer to the components of a mixture or a solution. In such a case, a solute dissolves into another substance, called the solvent. A bottle filled with oil and water will not be a solution because the oil and water will not mix.
A solution can have many definitions. It would mean the act of solving a problem or the state of being solved or the process of determining an answer to a problem. You can find definitions like these on dictionary.com
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To find the mole fraction of solute in a 3.52 m (molal) aqueous solution, we first need to determine the moles of solute and the moles of solvent (water). A 3.52 m solution means there are 3.52 moles of solute per 1 kg of water. The molar mass of water is approximately 18.015 g/mol, which corresponds to about 55.5 moles of water in 1 kg. The mole fraction of solute (X_solute) can be calculated using the formula: [X_{\text{solute}} = \frac{\text{moles of solute}}{\text{moles of solute} + \text{moles of solvent}} = \frac{3.52}{3.52 + 55.5} \approx 0.059. ] Thus, the mole fraction of solute is approximately 0.059.
homogeneous mixture of two or more components is called as solution.Components of solution are solvent and solute.In which solvent is present in large amount and solute is in small amount.generally solute is considered as impurities for solvent.eg.sugary solution-sugar is solute and water is solvent.
To find the mole fraction of solute, you need to know the moles of solute and solvent. In this case, the moles of solute can be calculated by multiplying the molarity of the solution by the volume of the solution. Once you have the moles of solute and solvent, you can find the mole fraction of solute by dividing the moles of solute by the total moles of solute and solvent.
If you weigh the solute, and then weigh the solvent, and then add the solute to the solvent and weigh the solution, you will find that the sum of the weights of the solute and solvent is equal to the weight of the resulting solution. So mass is conserved.
Neither. "Solute" and "solvent" are used to refer to the components of a mixture or a solution. In such a case, a solute dissolves into another substance, called the solvent. A bottle filled with oil and water will not be a solution because the oil and water will not mix.
The solubility is the amount of the solute (substance) in grams per cubic centimeter that can dissolve in a solvent (liquid) before it is saturated. So you would have to measure an amount of the solute before you put it in the solvent, then after the solvent is saturated, measure how much of the solute is left undissolved and subtract that from the original amount. Hope this helps.
A solution can have many definitions. It would mean the act of solving a problem or the state of being solved or the process of determining an answer to a problem. You can find definitions like these on dictionary.com
To find the mole fraction of solute in a solution, you need to know the total moles of both the solute and the solvent. In this case, the moles of the solute is 3.62 mol and the moles of the solvent (water) is not given. Without the moles of the solvent, the mole fraction of the solute cannot be calculated.
molal = m = moles solute/kg solvent. Assuming water as the solvent 1 kg = 1000 g/18g/mole = 55.56 moles H2O. Moles solute = 3.71 moles. Total moles present = 55.56 + 3.71 = 59.27 moles.Mole fraction solute = 3.71/59.27 = 0.0626
To find the solubility of a solute, you would typically dissolve a known amount of the solute in a solvent at a specific temperature. Then you would measure the concentration of the solute in the resulting solution. The solubility of the solute at that temperature is the maximum amount that can dissolve in the solvent under those conditions.
To find the mole fraction of solute, we need to know the moles of solute and moles of solvent. Here, the concentration (3.30 m) tells us the moles of solute per liter of solution, but we need more information to calculate the mole fraction. We would need the moles of solute and moles of solvent to proceed.
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An unsaturated solution contains less dissolved solute than the solvent can hold at a given temperature and pressure. This means that more solute could be added to the solution without it fully dissolving.