MHT CET · Chemistry · Solutions
Which of the following formula correctly gives the value of ebuillioscopic constant?
- A \(\frac{\mathrm{W}_{1} \times 1000}{\Delta \mathrm{T}_{\mathrm{b}} \times \mathrm{W}_{2} \times \mathrm{M}_{2}}\)
- B \(\frac{\mathrm{W}_{2} \times 1000}{\Delta \mathrm{T}_{\mathrm{b}} \times \mathrm{W}_{1} \times \mathrm{M}_{2}}\)
- C \(\frac{\mathrm{M}_{2} \times \Delta \mathrm{T}_{\mathrm{b}} \times \mathrm{W}_{2}}{\mathrm{~W}_{1}}\)
- D \(\frac{\Delta \mathrm{T}_{\mathrm{b}} \times \mathrm{M}_{2} \times \mathrm{W}_{1}}{\mathrm{~W}_{2}}\)
Answer & Solution
Correct Answer
(D) \(\frac{\Delta \mathrm{T}_{\mathrm{b}} \times \mathrm{M}_{2} \times \mathrm{W}_{1}}{\mathrm{~W}_{2}}\)
Step-by-step Solution
Detailed explanation
\(\Delta \mathrm{T}_{\mathrm{b}}=\mathrm{K}_{\mathrm{b}} \mathrm{m}=\mathrm{K}_{\mathrm{b}} \times \frac{\mathrm{W}_{2}}{\mathrm{M}_{2} \mathrm{~W}_{1}}\)
\(\therefore \mathrm{K}_{\mathrm{b}}=\frac{\Delta \mathrm{T}_{\mathrm{b}} \times \mathrm{M}_{2} \times \mathrm{W}_{1}}{\mathrm{~W}_{2}}\)
\(\therefore \mathrm{K}_{\mathrm{b}}=\frac{\Delta \mathrm{T}_{\mathrm{b}} \times \mathrm{M}_{2} \times \mathrm{W}_{1}}{\mathrm{~W}_{2}}\)
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