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Answer:

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Step-by-step explanation:

Ammonium lauryl sulfate has the structural formula CH₃CH₂CH₂CH₂CH₂CH₂CH₂CH₂CH₂CH₂CH₂CH₂OSO₂O⁻ NH₄⁺.

The long nonpolar hydrocarbon chain and the ionic sulfate end group make it a surfactant.  

The ionic end tends to dissolve in water, but the nonpolar chain does not. This makes the compound an excellent foaming agent, so it is used in many shampoos and toothpastes.

The molecules form micelles in water, small spherical shapes with the polar heads outside, facing the water, and the nonpolar tails are inside.

They reduce the surface tension or the water so that, when you brush your teeth or shampoo your hair, the air bubbles are stable and do not break.

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Ammonia Lauryl sulfates are high-foam surfactants that break down water's surface tension by producing micelles at the surface-air contact.

The structural formula of Ammonium lauryl sulfate  :

[tex]CH^3CH^2CH^2CH^2CH^2CH^2CH^2CH^2CH^2CH^2CH^2CH^2OSO^2O^-NH^4^+[/tex]

Ammonia lauryl sulfate serve as a surfactor :

  • They frequently serve as detergents, foaming agents, and other cleaning agents by assisting in the mixing of water with oil and dirt so that they can be rinsed away.

  • It consist of  long nonpolar hydrocarbon chains and the ionic sulfate end group which make it a surfactant.

  • They lower the surface tension of the water so that air bubbles do not rupture when you brush your teeth or shampoo your hair.

  • The 'lauryl sulphate' portion is the most important part of this molecule.The lauryl sulphate component has one fatty end and one charged end, allowing it to function as an oil-water adaptor.

Thus, ammonia lauryl sulfate serve as surfactore due to it's ability to lower the surface tension of water and ability to form micelles in water.

Know more about ammonia lauryl sulfate here:

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