Faint formula in AMI smoothly

Aug 6th, 2022
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How to Faint formula in AMI

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Hey youre on the tutor hotline with Melissa Maribel how can I help you? Hi Melissa, its Michele, can you help me with this question on writing dissociation equations for strong electrolytes? Of course, lets go over that. So were writing dissociation equations for strong electrolytes But lets go over what a strong electrolyte is So with this strong electrolyte which of course these are all strong electrolytes they completely dissociate and what dissociation refers to is just breaking apart into ions. So when a compound like lets say something like this, breaks apart or dissociates it completely breaks apart into its ions its really similar to net ionic equations so a type of strong electrolyte is a strong acid or a salt. And youll notice that all of these are types of ionic compounds. A strong acid is something like HCl, so in this case what would happen, since this completely dissociates it would break apart into its separate ions which is Hydrogen plus or H+ and then chlorine w

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Diphenylamine is used as an indicator in dichromate titrations such as titration of iron with dichromate solution. Other indicators that can be used are diphenylbenzidine and diphenylamine sulphonate.
Diphenylamine is an organic compound with the formula (C6H5)2NH. The compound is a derivative of aniline, consisting of an amine bound to two phenyl groups.
The diphenylamine (I) undergoes oxidation first into a colourless diphenylbenzidine (II) which is the real indicator and is reversibly further oxidized to diphenylbenzidine violet (III). ➢ For this, diphenylamine is only able to function as indicator in this reaction when phosphoric acid is present in the solution.
This is a color test for the presence of nitrates or nitrites. Use caution! This reagent contains concentrated sulfuric acid (H2SO4).
It is a weak base, with a Kb of 1014. With strong acids, it forms salts. For example, treatment with sulfuric acid gives the bisulfate [(C6H5)2NH2]+[HSO4] as a white or yellowish powder with m.p. 123-125 C. Diphenylamine undergoes various cyclisation reactions.
In analytical chemistry, diphenylamine (CAS: 122-39-4) is used for the detection of nitrates, chlorates and other oxidizing substances with which it gives a deep blue colour in the presence of sulphuric acid.
It is used mainly for its antioxidant properties. Diphenylamine is widely used as an industrial antioxidant, dye mordant and reagent and is also employed in agriculture as a fungicide and antihelmintic.
Diphenylamine is used as an indicator in dichromate titrations such as titration of iron with dichromate solution. Other indicators that can be used are diphenylbenzidine and diphenylamine sulphonate.

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