Advertisements
Advertisements
प्रश्न
Why is LiF almost insoluble in water whereas LiCl soluble not only in water but also in acetone?
उत्तर
LiF is insoluble in water. On the contrary, LiCl is soluble not only in water, but also in acetone. This is mainly because of the greater ionic character of LiF as compared to LiCl. The solubility of a compound in water depends on the balance between lattice energy and hydration energy. Since fluoride ion is much smaller in size than chloride ion, the lattice energy of LiF is greater than that of LiCl. Also, there is not much difference between the hydration energies of fluoride ion and chloride ion. Thus, the net energy change during the dissolution of LiCl in water is more exothermic than that during the dissolution of LiF in water. Hence, low lattice energy and greater covalent character are the factors making LiCl soluble not only in water, but also in acetone.
APPEARS IN
संबंधित प्रश्न
In what ways lithium shows similarities to magnesium in its chemical behaviour?
Why is Li2CO3 decomposed at a lower temperature whereas Na2CO3 at a higher temperature?
What happens when magnesium is burnt in air.
What happens when quick lime is heated with silica?
What happens when chlorine reacts with slaked lime?
What happens when calcium nitrate is heated?
Comment on the following observation:
Lithium is the only alkali metal to form a nitride directly.
How do you account for the strong reducing power of lithium in aqueous solution?
Lithium resembles magnesium in some of its properties. Mention two such properties and give reasons for this resemblance.
All compounds of alkali metals are easily soluble in water but lithium compounds are more soluble in organic solvents. Explain.
Assertion (A): The carbonate of lithium decomposes easily on heating to form lithium oxide and CO2.
Reason (R): Lithium being very small in size polarises large carbonate ion leading to the formation of more stable Li2O and CO2.
Lithium hydride can be used to prepare other useful hydrides. Beryllium hydride is one of them. Suggest a route for the preparation of beryllium hydride starting from lithium hydride. Write chemical equations involved in the process.
Lithium shows similarities to magnesium in its chemical behaviour because of ______.