- A$1 \times {10^{ - 8}}$
- B$1 \times {10^{ - 6}}$
- ✓$2 \times {10^{ - 10}}$
- D$0.5 \times {10^{ - 10}}$
$[O{H^ - }] = \frac{{1 \times {{10}^{ - 14}}}}{{0.5 \times {{10}^{ - 4}}}} = 2 \times {10^{ - 10}}$ $M$
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Statement $I:$ According to Bohr's model of hydrogen atom, the angular momentum of an electron in a given stationary state is quantised.
Statement $II:$ The concept of electron in Bohr's orbit, violates the Heisenberg uncertainty principle.
In the light of the above statements, choose the most appropriate answer from the options given below:
$A$. Hydrogen bonding exists when $\mathrm{H}$ is covalently bonded to the highly electro negative atom.
$B$. Intermolecular $\mathrm{H}$ bonding is present in o-nitro phenol
$C$. Intramolecular $\mathrm{H}$ bonding is present in $\mathrm{HF}$.
$D$. The magnitude of $\mathrm{H}$ bonding depends on the physical state of the compound.
$E$. H-bonding has powerful effect on the structure and properties of compounds.
Choose the correct answer from the options given below :