11 questions · timed · auto-graded
$=12420\text{ev}=12.42\text{Kev}=12.4\text{Kev}$
$=\frac{3\times10^8}{10^{-10}}=3\times10^{18}\text{Hz}$
$=6.613\times10^{-24}\text{Kg-m/s}=6.62\times10^{-24}\text{Kg-m/s}$
V0 → Stopping Potential,
$\lambda\rightarrow$ Wavelength, eV0 = hv - hv
$\text{eV}_0=\frac{\text{hc}}{\lambda}$
$\Rightarrow\text{V}_0\lambda=\frac{\text{hc}}{\text{e}}$
V → Potential difference across X-ray tube
$\lambda\rightarrow$ Cut of wavelength
$\lambda=\frac{\text{hc}}{\text{ev}}\ \text{or}\ \text{V}\lambda=\frac{\text{hc}}{\text{e}}$
Slopes are same i.e $\text{V}_0\lambda=\text{V}\lambda$
$\frac{\text{hc}}{\text{e}}=\frac{6.63\times10^{-34}\times3\times10^8}{1.6\times10^{-19}}$
$1.242\times10^{-6}\text{Vm}$