Which compound is least soluble in water at 60 c? In order to answer this question, we must first consider what factors affect solubility. Generally speaking, solubility is determined by the nature of the substances involved and the conditions under which they are mixed. With that said, let's take a look at the specific case of water and compounds at 60 c.
One important factor to consider is the polarity of the compounds in question. Polar compounds are generally more soluble in water than non-polar compounds. This is because water is a polar solvent and the attractions between the water molecules and the polar compounds are strong. In contrast, the attractions between water molecules and non-polar compounds are generally weaker. Therefore, non-polar compounds are less soluble in water.
Another factor that affects solubility is the molecular size of the compounds. Generally speaking, smaller molecules are more soluble in water than larger molecules. This is because smaller molecules can more easily fit between the water molecules. In contrast, larger molecules have a harder time fitting between the water molecules and are thus less soluble.
Taking all of these factors into account, we can conclude that the least soluble compound in water at 60 c is likely to be a non-polar compound with a large molecular size.
What is the least soluble compound in water at 60 c?
Water is a solvent, meaning that it has the ability to dissolve other compounds. The solubility of a compound is the amount of that compound that can dissolve in a given amount of water. The solubility of a compound is affected by temperature; in general, the higher the temperature, the higher the solubility. The least soluble compound in water at 60 degrees Celsius is calcium chloride. Calcium chloride is a salt that is used in many industries, including as a de-icing agent. It has a solubility of only 0.02 grams per 100 mL of water. This means that only 0.02 grams of calcium chloride can dissolve in 100 mL of water at 60 degrees Celsius.
Why is this compound less soluble in water at 60 c?
This compound is less soluble in water at 60 c because it is more chemically stable at this temperature. The bonds holding the molecules together are stronger at 60 c, making it difficult for the compound to dissolve. Additionally, the size of the molecules increases at 60 c, which also decreases the solubility of the compound.
What are the implications of this compound being less soluble in water at 60 c?
There are a few implications of this compound being less soluble in water at 60 c. One implication is that it may not be as easily absorbed by the body. Another implication is that it may not be as effective in certain reactions. Finally, this could mean that the compound is more likely to be toxic at high temperatures.
What are the consequences of this compound being less soluble in water at 60 c?
When a compound is less soluble in water at 60 c, it means that it is not as easily dissolved in water at that temperature. This can have a few different consequences.
One consequence is that it can make it more difficult to mix the compound with water, which can make it more difficult to use. Another consequence is that the compound may not be as effective in certain reactions that occur in water, since it may not be as readily available to participate in the reaction. Additionally, less soluble compounds can be more difficult to remove from solution, which can lead to unwanted side effects or even toxic build-up if not managed properly.
In general, less soluble compounds tend to be more difficult to work with, and can pose more of a challenge to use safely and effectively. It is important to be aware of these potential consequences before using any compound, and to take proper precautions to ensure that the compound is used safely and as intended.
What are the possible uses for this compound being less soluble in water at 60 c?
This question can be difficult to answer without knowing more about the specific compound in question. In general, however, there are a few potential uses for a compound that is less soluble in water at 60 degrees Celsius. One potential use is as a way to cleanse or purify water. If the compound is less soluble in water that is heated to this temperature, it may be able to bind to impurities or contaminants in the water and help remove them. This could be used in a water purification system or in other similar applications. Another potential use for this compound is as a food or beverage additive. If the compound is less soluble in hot water, it could be used to add flavor or other desired properties to food or drinks. Finally, this compound could also be used in a variety of industrial applications. For example, it could be used as a coolant or lubricant in machinery or as a component in paints or adhesives.
What are the dangers of this compound being less soluble in water at 60 c?
There are several dangers associated with a compound being less soluble in water at 60°C. One danger is that the compound could become more concentrated in the water, which could lead to adverse health effects in people who drink the water. Another danger is that the compound could become more reactive and unstable at the higher temperature, which could lead to a chemical reaction that could release toxic gases or cause a fire or explosion.
What are the benefits of this compound being less soluble in water at 60 c?
This question can be broken down into a few smaller questions. Firstly, what is this compound? Secondly, what are the benefits of it being less soluble in water? Finally, why is it beneficial for the compound to be less soluble in water at 60 c?
This compound is likely to be a hydrocarbon, which is a molecule consisting of both nitrogen and chlorine atoms. The benefits of it being less soluble in water are that it will be less reactive with water and more stable in solution. Additionally, the compound will be less likely to leach into the water supply and cause contamination.
The reason that it is beneficial for the compound to be less soluble in water at 60 c is that this temperature is above the boiling point of water. This means that the compound will not be able to dissolve in water, and thus will be less reactive. Additionally, the compound will be less likely to leach into the water supply and cause contamination.
What are the properties of this compound that make it less soluble in water at 60 c?
This compound has a high melting point and a high boiling point. This makes it less soluble in water at 60 c.
What are the applications of this compound being less soluble in water at 60 c?
This question can be answered in a number of ways, depending on the particular compound in question. However, some potential applications of a compound being less soluble in water at 60 degrees Celsius may include the following:
1) The compound could be used as a cleaning agent, since it would be less likely to dissolve in water and thus cause contamination.
2) The compound could be used in a corrosion-resistant coating, since it would be less likely to dissolve in water and thus cause corrosion.
3) The compound could be used in a food or beverage product, since it would be less likely to dissolve in water and thus cause spoilage.
4) The compound could be used in a medical treatment, since it would be less likely to dissolve in water and thus cause adverse side effects.
These are just a few potential applications of a compound being less soluble in water at 60 degrees Celsius. In general, any compound that is less soluble in water at this temperature may have some potential utility in one or more of these applications.
Frequently Asked Questions
What does the solubility of KCl in water depend on?
The solubility of KCl in water depends on the Temperature of the water.
What is the solubility of NaNO3 at 50°C?
NaNO3's solubility decreases most rapidly when the temperature increases from 50°C to 70°C.
What is the solubility of NH3 and KCL in water?
NH3 is soluble in water and KCl is soluble in water.
Which of the following compounds is soluble in water?
An alkali metal sulfate compound.
Are phosphates soluble or insoluble in water?
All phosphates are soluble in water.
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