If the potential difference applied across an $X$-ray tube is $V$ volts,then the approximate minimum wavelength of the emitted $X$-rays will be:

  • A
    $\frac{1227}{\sqrt{V}} \; \mathring{A}$
  • B
    $\frac{1240}{V} \; \mathring{A}$
  • C
    $\frac{2400}{V} \; \mathring{A}$
  • D
    $\frac{12400}{V} \; \mathring{A}$

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The wavelength of the $K_\alpha$ line for an element of atomic number $Z_1 = 29$ is $\lambda$. What is the wavelength of the $K_\alpha$ line for an element of atomic number $Z_2 = 15$? (Take Moseley's constant $b = 1$ for both elements.)

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The $K_\alpha$ $X$-ray emission line for tungsten occurs at $\lambda = 0.021 \ nm$. What is the energy difference between the $K$ and $L$ levels in this atom in $keV$?

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