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प्रश्न
Differentiate between an efflorescent, deliquescent & ‘ hygroscopic substance with suitable examples.
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उत्तर
- Lose wholly or partially their water of crystallisation when exposed to air.
- Become powdery.
- Washing soda CaCO3.10H2O, Gauber’s salt
Na2SO4.10H2O, epsom salt MgSO4.7H2O
\[\ce{Na2CO.10H2O->[dry air]Na2CO3.H2O + 9H2O}\]
- Crystalline when hydrated.
Deliquescent substances:
- Absorb moisture from atmosphere, absorb water and dissolve in it forming a saturated solution.
- Deliquescence is maximized in dry conditions,
- NaOH, KOH, CaCl2, MgCl2, FeCl3 are the examples.
- They are crystalline water soluble.
FeCl3 → FeCl3 [Crystal changes to Solution]
Hygroscopic substances:
- They are amorphous solids or liquids.
- Absorb moisture from the air of atmosphere.
- Do not change their original state.
CaO (quick lime), cone. H2SO4, P2O5 and silica gel are the examples.
\[\ce{\underset{\text{Conc.}}{H2SO4} ->\underset{\text{Conc.}}{H2SO4}}\]
(State not changed)
is used for drying gases in laboratory.
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संबंधित प्रश्न
Give the names and formulae of two substances
Anhydrous substance
The substance that can remove hydrogen and oxygen atoms in the ratio of 2:1(in the form of water) from the compound.
State the methods by which hydrated salts can be made anhydrous.
Name three methods by which hydrous substances can be made anhydrous.
Complete the statement by filling the blank with the correct word from the option.
Hygroscopic substance absorb moisture from the atmosphere & _______their original state.
Select the correct answer from the choice given in the options.
An anhydrous crystal _____.
Select the correct answer from the choice given in the options.
An anhydrate of a heptahydrate salt _____.
Give a reason for the following:
Heating a hydrated copper sulphate crystal is deemed a chemical change.
'A' is a blue coloured crystalline salt. On heating, it loses blue colour and to give 'B'. When water is added, 'B' gives back to 'A'. Identify A and B, write the equation.
What happens when MgSO4.7H2O is heated? Write the appropriate equation?
