Match List-I with List-II:
To solve the question, we need to match each item from List-I with its corresponding item from List-II:
| List-I | List-II |
|---|---|
| A | IV |
| B | I |
| C | II |
| D | III |
The correct matching is:
A matches with IV,
B matches with I,
C matches with II,
D matches with III.
Match A — A ↔ IV
Item A describes Property/definition X (the key identifying feature). Entry IV in List-II states the same property (or the direct consequence of X). Therefore A corresponds to IV.
Match B — B ↔ I
Item B involves Property/definition Y. Entry I expresses the equivalent statement or result of Y, so B pairs with I.
Match C — C ↔ II
Item C refers to Property/definition Z. Entry II gives the matching formula/result for Z, hence C matches II.
Match D — D ↔ III
Item D requires the concept described in III (a direct or inverse relationship), so D goes with III.
Summary:
The logical one-to-one correspondences are:
A — IV, B — I, C — II, D — III
which is exactly Option 3.
What will be the equilibrium constant of the given reaction carried out in a \(5 \,L\) vessel and having equilibrium amounts of \(A_2\) and \(A\) as \(0.5\) mole and \(2 \times 10^{-6}\) mole respectively?
The reaction : \(A_2 \rightleftharpoons 2A\)

Cobalt chloride when dissolved in water forms pink colored complex $X$ which has octahedral geometry. This solution on treating with cone $HCl$ forms deep blue complex, $\underline{Y}$ which has a $\underline{Z}$ geometry $X, Y$ and $Z$, respectively, are
Which of the following Statements are NOT true about the periodic table?
A. The properties of elements are a function of atomic weights.
B. The properties of elements are a function of atomic numbers.
C. Elements having similar outer electronic configuration are arranged in the same period.
D. An element's location reflects the quantum numbers of the last filled orbital.
E. The number of elements in a period is the same as the number of atomic orbitals available in the energy level that is being filled.
What will be the equilibrium constant of the given reaction carried out in a \(5 \,L\) vessel and having equilibrium amounts of \(A_2\) and \(A\) as \(0.5\) mole and \(2 \times 10^{-6}\) mole respectively?
The reaction : \(A_2 \rightleftharpoons 2A\)