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A non polar substance. This means that the substance does not form hydrogen bonds with the H2O. e.g. Oil Grease as well as most fats. Although vegetable oil molecules are smaller than water molecules therefore it can dissolve in water:)

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Velda Hauck

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2y ago

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What type is substances dissolve easily in water?

Water is called "the universal solvent" because many, many substances can dissolve in it. However, there are some that can dissolve easier than others: salt and sugar are some of the quickest. Liquids and liquid chemicals also "dissolve" very easily in water, i.e. the combine with water molecules to create a solution. Hope this helped!!


Is it true that hydrophilic substances are soluble in water?

Yes, it is true that hydrophilic substances are soluble in water. Hydrophilic substances have an affinity for water and can easily dissolve in it.


What substances that do not dissolve easily in water?

you know water is a polar substance and can solve only polar substances and ionic substance it is not able to solve fat , oil or other organic (usually) substances (oil). by ionic substance I meant substances such as salt


What types of substances will dissolve in water?

Substances that are polar or ionic tend to dissolve in water because they can interact with the water molecules through hydrogen bonding or ion-dipole interactions. Examples include salts, sugars, acids, and bases. Nonpolar substances, such as oils, usually do not dissolve in water as they cannot form the necessary interactions with water molecules.


What types of substances would be least likely to dissolve in water?

Giant covalent substances like diamond tend not to dissolve in anything. Non polar molecular substances such as hydrocarbons are not attracted to water.


What types of molecules dissolve easily in water?

Molecules that are polar or have the ability to form hydrogen bonds with water molecules tend to dissolve easily in water. Examples include salts (ionic compounds), sugars, alcohols, and some acids. Nonpolar molecules, such as oils and fats, do not dissolve easily in water.


Does kerosene oil dissolve in water?

No, kerosene oil does not dissolve in water because it is a nonpolar substance. Water is a polar solvent and cannot easily mix or dissolve nonpolar substances like kerosene oil.


Do polar subtances dissolve well in water?

Yes, polar substances dissolve well in water because water is a polar molecule with positive and negative ends that can interact with other polar molecules through electrostatic interactions. This allows substances with polar characteristics to easily dissolve in water.


What type of substances dissolve easily in water?

Water is called "the universal solvent" because many, many substances can dissolve in it. However, there are some that can dissolve easier than others: salt and sugar are some of the quickest. Liquids and liquid chemicals also "dissolve" very easily in water, i.e. the combine with water molecules to create a solution. Hope this helped!!


What substances will dissolve easly in water?

The two basic substances that dissolve easily in water are sugar and salt. It's a little harder to have flour dissolve in water, though. This is a great opportunity for you to test things out! Get a small glass of water. Grab a pinch of a powdery substance such as cinnamon or nutmeg. Drop the powdery substance into the glass of water, and watch it carefully for about 6 or 10 minutes.


What name is given to substances that dissolve easily in water hydrophilic or hydrophobic?

Hydrophilic means that a substance has an affinity for/attraction to water. It binds with water easily. [It is the opposite of hydrophobic, where a substance has an aversion for water. It forms droplets in water (like oil).]


Do sugars dissolve in water?

The molecules of sugar bond with the water molecules. This is because water is a solvent, which are substances that can bond to another kind of subtances easily. Note: Water is considered the universal solvent, because it is considered to be the strongest substance to dissolve most substances.