MCQ
The frequency corresponding to transition $n = 2$ to $n = 1$ in hydrogen atom is
- A$15.66 \times {10^{10}}Hz$
- ✓$24.66 \times {10^{14}}Hz$
- C$30.57 \times {10^{14}}Hz$
- D$40.57 \times {10^{24}}Hz$
$\lambda = 1.21567 \times {10^{ - 5}}cm\;\;\;{\rm{or}}\;\;\;\lambda = 12.1567 \times {10^{ - 6}}cm$
$ = 12.1567 \times {10^{ - 8}}\,m$
$v = \frac{c}{\lambda } = \frac{{3 \times {{10}^8}}}{{12.567 \times {{10}^{ - 8}}}} = 24.66 \times {10^{14}}Hz$.
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(Image)
Samples $(A, B, C)$
Fig : Paper chromatography of Samples
$C{H_4}(g) + 2{O_2}(g) \to C{O_2}(g) + 2{H_ {2}}O(l);$
$\Delta H = - 890.3\,kJ$
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