As shown schematically in the figure, two vessels contain water solutions (at temperature T) of ...

Channel:
Subscribers:
447,000
Published on ● Video Link: https://www.youtube.com/watch?v=c_uLN83gv70



Duration: 8:11
614 views
0


As shown schematically in the figure, two vessels contain water solutions (at temperature T) of potassium permanganate \( \left(\mathrm{KMnO}_{4}\right) \) of different concentrations \( n_{1} \) and \( n_{2}\left(n_{1}n_{2}\right) \) molecules per unit volume with \( \Delta n=\left(n_{1}-\right. \)
P \( \left.n_{2}\right)n_{1} \). When they are connected by a tube of small

W length \( \ell \) and cross-sectional area \( \mathrm{S}, \mathrm{KMnO}_{4} \) starts to diffuse from the left to the right vessel through the tube. Consider the collection of molecules to behave as dilute ideal gases and the difference in their partial pressure in the two vessels causing the diffusion. The speed \( v \) of the molecules is limited by the viscous force \( \beta \mathrm{v} \) on each molecule, where \( \beta \) is a constant. Neglecting all terms of the order \( (\Delta \mathrm{n})^{2} \), which of the following is/ *are correct? ( \( k_{B} \) is the Boltzmann constant)-
[JEE(Advanced)- 2020]
A) the force causing the molecules to move across the tube is \( \Delta \mathrm{nk}_{\mathrm{B}} \mathrm{TS} \)
(B) force balance implies \( n_{1} \beta v \ell=\Delta \mathrm{nk}_{\mathrm{B}} T \)
(C) total number of molecules going across the tube per sec is \( \left(\frac{\Delta \mathrm{n}}{\ell}\right)\left(\frac{\mathrm{k}_{\mathrm{B}} \mathrm{T}}{\beta}\right) \mathrm{S} \)
(D) rate of molecules getting transferred through the tube does not change with time
📲PW App Link - https://bit.ly/YTAI_PWAP
🌐PW Website - https://www.pw.live




Other Videos By PW Solutions


2023-02-13(a) \( 5 \mathrm{~cm} \) , if \( A B=12 \mathrm{~cm}, B C=8 \mathrm...
2023-02-13Answer the following with relevant reason. \( \mathrm{P} \) Why hel...
2023-02-13Answer the following with relevant reason. (i) The boiling points o...
2023-02-13Read the assertion and reason carefully to mark the correct option ...
2023-02-13Consider two identical Top view Side view circular loops of same ra...
2023-02-13Intensity level \( 200 \mathrm{~cm} \) from a source of sound is \(...
2023-02-13Write the reactions of \( \mathrm{F}_{2} \) and \( \mathrm{Cl}_{2} ...
2023-02-13Fill in the blanks Matrix multiplication is over addition. P WV
2023-02-13The function \( f(x)=\left\{\begin{array}{cc}\frac{e^{1 / x}-1}{e^{...
2023-02-13Arectangularloopcarryinga current \( I \) is situated near a long s...
2023-02-13As shown schematically in the figure, two vessels contain water solutions (at temperature T) of ...
2023-02-13Fill in the blanks The product of any matrix by the scalar is the n...
2023-02-13On using elementary column operations \( \mathrm{C}_{2} \rightarrow...
2023-02-13\( D E \) and \( D F \) are tangents from an external point \( D \)...
2023-02-13A man grows into a giant such that his linear dimensions increase b...
2023-02-13A cubical box is completely filled with mass \( m \) of a liquid and is given horizontal acceler...
2023-02-13Why are halogens coloured? P W
2023-02-13If \( f(x)=(x+1)^{\cot x} \) be continuous at \( x=0 \), then \( f(...
2023-02-13A square shaped hole of side \( \mathrm{I}=\frac{\mathrm{a}}{2} \) is carved out at a \( \mathrm...
2023-02-13Fill in the blanks The negative of a matrix is obtained by multiply...
2023-02-13The ends of a stretched wire of length \( L \) are fixed at \( x=0 ...