Physical Chemistry
Some Basic Concepts of Chemistry
MCQ (Single Correct Answer)Structure of Atom
MCQ (Single Correct Answer)Redox Reactions
MCQ (Single Correct Answer)Gaseous State
MCQ (Single Correct Answer)Chemical Equilibrium
MCQ (Single Correct Answer)Ionic Equilibrium
MCQ (Single Correct Answer)Electrochemistry
MCQ (Single Correct Answer)Nuclear Chemistry
MCQ (Single Correct Answer)Inorganic Chemistry
Processes of Isolation of Elements
MCQ (Single Correct Answer)s-Block Elements
MCQ (Single Correct Answer)p-Block Elements
MCQ (Single Correct Answer)d and f Block Elements
MCQ (Single Correct Answer)Organic Chemistry
Hydrocarbons
MCQ (Single Correct Answer)Alcohol, Phenols and Ethers
MCQ (Single Correct Answer)Organic Compounds Containing Nitrogen
MCQ (Single Correct Answer)Polymers
MCQ (Single Correct Answer)Biomolecules
MCQ (Single Correct Answer)Chemistry in Everyday Life
MCQ (Single Correct Answer)1
AIPMT 2010 Prelims
MCQ (Single Correct Answer)
+4
-1
In which of the following equilibrium Kc and Kp are not equal?
2
AIPMT 2009
MCQ (Single Correct Answer)
+4
-1
The dissociation constants for acetic acid and HCN at 25oC are 1.5 $$ \times $$ 10$$-$$5 and 4.5 $$ \times $$ 10$$-$$10 respectively. The equilibrium constant for the equilibrium
CN$$-$$ + CH3COOH $$\rightleftharpoons$$ HCN + CH3COO$$-$$ would be
CN$$-$$ + CH3COOH $$\rightleftharpoons$$ HCN + CH3COO$$-$$ would be
3
AIPMT 2008
MCQ (Single Correct Answer)
+4
-1
The value of equilibrium constant of the reaction
HI(g) $$\rightleftharpoons$$ $${1 \over 2}$$H2(g) + $${1 \over 2}$$I2(g)
is 8.0. The The equilibrium constant of the reaction
H2(g) + I2(g) $$\rightleftharpoons$$ 2HI(g) will be
HI(g) $$\rightleftharpoons$$ $${1 \over 2}$$H2(g) + $${1 \over 2}$$I2(g)
is 8.0. The The equilibrium constant of the reaction
H2(g) + I2(g) $$\rightleftharpoons$$ 2HI(g) will be
4
AIPMT 2008
MCQ (Single Correct Answer)
+4
-1
The values of for the reactions,
X $$\rightleftharpoons$$ Y + Z . . . .(i)
A $$\rightleftharpoons$$ 2B . . . .(ii)
are in the ratio 9 : 1. If degree of dissociation of X and A be equal, then total pressure at equilibrium (i) and (ii) are in the ratio
X $$\rightleftharpoons$$ Y + Z . . . .(i)
A $$\rightleftharpoons$$ 2B . . . .(ii)
are in the ratio 9 : 1. If degree of dissociation of X and A be equal, then total pressure at equilibrium (i) and (ii) are in the ratio
Questions Asked from MCQ (Single Correct Answer)
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