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REACTION WITH HYDROXYLAMINE~...

REACTION WITH HYDROXYLAMINE~

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The reactions of hydroxylamine with a symmetrical ketone (R_(2)C = O) froms only one oxmie. However two isomeric oximes may be formed when an aldehyde or non-symmetical ketone takes part in the reaction. Explain.

The reactions of hydroxylamine with a symmetrical ketone (R_(2)C = O) froms only one oxmie. However two isomeric oximes may be formed when an aldehyde or non-symmetical ketone takes part in the reaction. Explain.

The reactions of hydroxylamine with a symmetrical ketone (R_(2)C = O) froms only one oxmie. However two isomeric oximes may be formed when an aldehyde or non-symmetical ketone takes part in the reaction. Explain.

An organic compound (A) C_(6)H_(12)O reacts with hydroxylamine to give an oxime. It also reduces Tollen's reagent and undergoes cannizzaro's reaction. What is the structure of (A)? Write down the different reactions involved.

The product formed when hydroxylamine condenses with a carbonyl compound is called (A) Hydrazide (B) Oxime (C) Hydrazine (D) Hydrazone

A certain compound has a formula C_3H_6O . It combines with hydroxylamine to form two compounds which are geometrical isomers of each other. It is

A certain compound has a formula C_(3)H_(6)O . It combine with hydroxylamine to form two compounds which are geometrical isomers of each other. It is

An organic compound C_(5)H_(12)O (X) on oxidation gives C_(5)H_(10)O(Y) . Y reacts with hydroxylamine to form an oxime, answer Schiff's test and undergoes Cannizzaro reaction. Compound 'X' is

The compound C_4 H_8 Cl_2 (A) an hydrolysis gives a compound C_4 H_8 O_1(B) . The compound (B) reacts with hydroxylamine and gives a negative test with Tollen's reagent. What are (A)and (B), Support your answer with proper reasoning and give the equations of reactions.

Hydroxylamine reduce iron (III) according to the equation : 2NH_(2)OH + 4 Fe^(3+) rarr N_(2)O(g)uarr + H_(2)O + 4Fe^(2+) + 4H^(+) Iron (II) thus produced is estimated by titration with a standard permanganate solution. The reaction is MnO_(4)^(-) + 5 Fe^(2+) + 8H^(+) rarr Mn^(2+) + 5Fe^(3+) + 4H_(2)O A 10 mL sample of hydroxylamine solution was diluted to 1 litre. 50 mL of this diluted solution was boiled with an excess of iron (III) solution. The resulting solution required 12 mL of 0.02 M KMnO_(4) solution for complete oxidation of iron (II). Calculate the weight of hydroxylamine in one litre of the original solution