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If an object/substance has high density, it is most likely insoluble. Insoluble substances are incapable of dissolving in water. This is true for alluminum, copper, gold, silver, iron, tin, platinum, etc. Most metals are insoluble. Strong objects are insoluble because they remain sturdy. Insoluble substances are often edible because they can dissolve on your tongue.
Insoluble substances are usually neutral because of water being able to stabilize their charged molecules. However, there are some insoluble substances that are not neutral because they still retain their charged molecules.
Filtrate is considered pure because it is a liquid that has been separated from insoluble solid particles through the process of filtration. Filtration allows for the removal of solid impurities, leaving behind a relatively clear and particle-free liquid. However, it is worth noting that while filtrate is generally pure in terms of solids, it may still contain dissolved impurities or contaminants that are present in the original solution.
It is like that because of love and god
Filtration only removes the insoluble substances in sea water, such as sand, micro-organisms, seaweed, etc. But it fails to remove the soluble substances, such as Sodium Chloride and other ionic compounds. Therefore, the filtrate would not be pure water, but a mixture of water and soluble impurities.
The traditional answer is "No", because solutions are traditionally defined as homogeneous mixtures that can not be separated by filtration. However, if certain ion-exchange membranes are used as filters, some substances that were traditionally considered inseparable by filtration can actually be separated in a process called "reverse osmosis". This is a combination of filtration and external pressure.
If an object/substance has high density, it is most likely insoluble. Insoluble substances are incapable of dissolving in water. This is true for alluminum, copper, gold, silver, iron, tin, platinum, etc. Most metals are insoluble. Strong objects are insoluble because they remain sturdy. Insoluble substances are often edible because they can dissolve on your tongue.
Examples:- gold can be separated from powdered rocks and sands because gold can form an amalgam with Mercury- barium can be separated from a solution adding a sulfate; the barium sulfate is formed as an insoluble precipitate in water. The separation is easy by filtration.- water can be extracted from ethanol with calcium chloride or molecular sievesby its properties which you can search sm more on the net
it could be splash or bomb because you put an insoluble substance eh so it has the tendency it will bomb because also of the gravity:)
Yes, because the substances can be separated apart physically.
Insoluble substances are usually neutral because of water being able to stabilize their charged molecules. However, there are some insoluble substances that are not neutral because they still retain their charged molecules.
It is a mixture.
membranes are made of lipids because substances that dissolve in lipids enter cells more rapidly than lipid-insoluble substances
some substances are soluble and some arn't because it all depends on the particles. If the particles of a substance are attracted to it's own particles and not the waters then it is insoluble, but if the substance is more attracted to the water's particles then it's own's, it is soluble.
yea because the component of mixture can be separate by physical methods like filtration.
Filtrate is considered pure because it is a liquid that has been separated from insoluble solid particles through the process of filtration. Filtration allows for the removal of solid impurities, leaving behind a relatively clear and particle-free liquid. However, it is worth noting that while filtrate is generally pure in terms of solids, it may still contain dissolved impurities or contaminants that are present in the original solution.
Both do the same work that is put out larger particles that are larger than their pore size. filters are more advanced you can even separate out single cells.