Answer
392.1k+ views
Hint: We know that soaps are very important in life. We usually wash our hands using soap to remove dirt. It helps in cleansing our body, clothes etc. It has a cleansing property. It saves us from bacteria which are harmful.
Complete step by step solution:
(a) The sodium and potassium salts of the long chain carboxylic acids are referred to as soaps. It consists of a long hydrocarbon chain having carboxylic acid on one end. This has an ionic bond with metal ions which is usually sodium or potassium.
(b) The structure of a soap molecule is given below:
This is the structure of sodium stearate which is an example of soap molecule. It has a hydrophilic and hydrophobic part in it. The hydrophobic end is nonpolar and insoluble in water. In the above molecule, the hydrophobic part is ${\text{ - }}{{\text{C}}_{17}}{{\text{H}}_{35}}$. The hydrophilic end is polar and soluble in water. In the molecule, the hydrophilic end is $ - {\text{COONa}}$.
(c) Micelles is the name of soap molecules. Hydrophobic end is attached to the dust, oil, grease, dirt or the materials which we want to remove, detaching takes place, gets suspended in water and can easily be removed.
When a dirt is put in water containing soap, then the non-polar end of soap in micelle attach to an oil particle present on the surface of dirt. The soap micelles trap the oily particles by the nonpolar end. The polar end attaches to the water when the dirt is agitated in soap solution.
The structure of a micelle and the cleansing action of soap molecule is given below:
Note: There is a chance of making a mistake that we may confuse soaps with detergent. The main difference between soap and detergent is that the cleansing action of soap does not work properly with hard water. While detergent works well with hard water too.
Complete step by step solution:
(a) The sodium and potassium salts of the long chain carboxylic acids are referred to as soaps. It consists of a long hydrocarbon chain having carboxylic acid on one end. This has an ionic bond with metal ions which is usually sodium or potassium.
(b) The structure of a soap molecule is given below:
![seo images](https://www.vedantu.com/question-sets/ac5576d7-7f15-4bdd-9f62-64621026cfc63864745466312513835.png)
This is the structure of sodium stearate which is an example of soap molecule. It has a hydrophilic and hydrophobic part in it. The hydrophobic end is nonpolar and insoluble in water. In the above molecule, the hydrophobic part is ${\text{ - }}{{\text{C}}_{17}}{{\text{H}}_{35}}$. The hydrophilic end is polar and soluble in water. In the molecule, the hydrophilic end is $ - {\text{COONa}}$.
(c) Micelles is the name of soap molecules. Hydrophobic end is attached to the dust, oil, grease, dirt or the materials which we want to remove, detaching takes place, gets suspended in water and can easily be removed.
When a dirt is put in water containing soap, then the non-polar end of soap in micelle attach to an oil particle present on the surface of dirt. The soap micelles trap the oily particles by the nonpolar end. The polar end attaches to the water when the dirt is agitated in soap solution.
The structure of a micelle and the cleansing action of soap molecule is given below:
![seo images](https://www.vedantu.com/question-sets/1fc31dc8-0489-4bdc-8fbb-9c987b0bee935386480646288998603.png)
Note: There is a chance of making a mistake that we may confuse soaps with detergent. The main difference between soap and detergent is that the cleansing action of soap does not work properly with hard water. While detergent works well with hard water too.
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