211. On mixing, heptane and octane form an ideal solution. At $$373 K,$$  the vapour pressures of the two liquid components (heptane and octane) are $$105$$ $$kPa$$  and $$45$$ $$kPa$$  respectively. Vapour pressure of the solution obtained by mixing $$25.0 g$$  of heptane and $$435 g$$  of octane will be
( molar mass of heptane = $${100\,g\,mo{l^{ - 1}}}$$   and of octane = $${114g\,mo{l^{ - 1}}}$$   )

A 72.0 $$kPa$$
B 36.1$$ $$kPa$$
C 96.2 $$kPa$$
D 144.5 $$kPa$$
Answer :   72.0 $$kPa$$
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212. At $${20^ \circ }C$$  and $$1.00\,atm$$   partial pressure of $${H_2},18\,mL$$   of $${H_2}\left( {STP} \right)$$   dissolves in $$1\,L$$  of water. If $$2\,L$$  of water is exposed to a gaseous mixture having a total pressure of $$1425\,torr$$   ( excluding the vapour pressure of water ) and containing $$80\% \,{H_2}$$   by volume, the volume of $${H_2}\left( {STP} \right)$$   dissolved is

A 27$$\,mL$$
B 54$$\,mL$$
C 33.75$$\,mL$$
D 67.50$$\,mL$$
Answer :   54$$\,mL$$
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213. If $$\alpha $$  is the degree of dissociation of $$N{a_2}S{O_4},$$  the van't Hoff's factor (i) used for calculating the molecular mass is

A $$1 + \alpha $$
B $$1 - \alpha $$
C $$1 + 2\alpha $$
D $$1 - 2\alpha $$
Answer :   $$1 + 2\alpha $$
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214. What will be the freezing point of a $$0.5\,m\,KCl$$   solution ? The molal freezing point constant of water is $${1.86^ \circ }C\,{m^{ - 1}}.$$

A $$ - {1.86^ \circ }C$$
B $$ - {0.372^ \circ }C$$
C $$ - {3.2^ \circ }C$$
D $${0^ \circ }C$$
Answer :   $$ - {1.86^ \circ }C$$
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215. Which of the following $$0.10$$ $$M$$ aqueous solution will have the lowest freezing point?

A $$A{l_2}{\left( {S{O_4}} \right)_3}$$
B $${C_5}{H_{10}}{O_5}$$
C $$Kl$$
D $${C_{12}}{H_{22}}{O_{11}}$$
Answer :   $$A{l_2}{\left( {S{O_4}} \right)_3}$$
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216. The solution containing $$4.0\,g$$  of a polyvinyl chloride polymer in 1 litre of dioxane was found to have an osmotic pressure $$6.0 \times {10^{ - 4}}$$   atmosphere at $$300\,K,$$  the value of $$R$$ used is 0.082 litre atmosphere $$mol{e^{ - 1}}{K^{ - 1}}.$$   The molecular mass of the polymer was found to be

A $$3.0 \times {10^2}$$
B $$1.6 \times {10^5}$$
C $$5.6 \times {10^4}$$
D $$6.4 \times {10^2}$$
Answer :   $$1.6 \times {10^5}$$
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217. A binary liquid solution is prepared by mixing $$n-$$heptane and ethanol. Which one of the following statements is correct regarding the behaviour of the solution?

A The solution is non-ideal, showing $$- ve$$  deviation from Raoult’s Law.
B The solution is non-ideal, showing $$+ ve$$  deviation from Raoult’s Law.
C $$n-$$heptane shows $$+ ve$$  deviation while ethanol shows -ve deviation from Raoult’s Law.
D The solution formed is an ideal solution
Answer :   The solution is non-ideal, showing $$+ ve$$  deviation from Raoult’s Law.
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218. A mixture of ethyl alcohol and propyl alcohol has a vapour pressure of $$290\, mm$$   at $$300\,K.$$  The vapour pressure of propyl alcohol is $$200 \,mm.$$  If the mole fraction of ethyl alcohol is $$0.6,$$ its vapour pressure $$\left( {{\text{in}}\,\,mm} \right)$$  at the same temperature will be

A 360
B 350
C 300
D 700
Answer :   350
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219. At 80° C, the vapour pressure of pure liquid $$'A’$$ is $$520 mm$$  $$Hg$$  and that of pure liquid $$'B’$$ is $$1000 mm$$  $$Hg.$$  If a mixture solution of $$'A’$$ and $$'B’$$ boils at $${80^ \circ }C$$  and 1 atm pressure, the amount of $$'A’$$ in the mixture is $$\left( {1\,atm\, = 760\,mm\,Hg} \right)$$

A 52 mol percent
B 34 mol percent
C 48 mol percent
D 50 mol percent
Answer :   50 mol percent
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220. Grapes placed in three beakers $$X, Y$$  and $$Z$$  containing different types of solutions are shown in figures.
Solutions mcq question image
If beaker $$X$$  contains water, $$Y$$  and $$Z$$  contain

A $$Y$$ - hypotonic solution, $$Z$$ - hypertonic solution
B $$Y$$ - hypertonic solution, $$Z$$ - hypotonic solution
C $$Y$$ and $$Z$$ - isotonic solutions
D $$Y$$ and $$Z$$ - hypotonic solutions
Answer :   $$Y$$ - hypotonic solution, $$Z$$ - hypertonic solution
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