$X$-rays are produced in an $X$-ray tube at a given accelerating voltage. The wavelength of the continuous $X$-rays will be in the range of .......

  • A
    $0$ to $\infty$
  • B
    $\lambda_{min}$ to $\infty$,where $\lambda_{min} > 0$
  • C
    $0$ to $\lambda_{max}$,where $\lambda_{max} < \infty$
  • D
    $\lambda_{min}$ to $\lambda_{max}$,where $0 < \lambda_{min} < \lambda_{max} < \infty$

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Similar Questions

When the accelerating voltage applied to the electrons is increased beyond a critical value in an $X$-ray tube,what happens to the $X$-ray spectrum?

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For the production of $X$-rays of wavelength $0.1 \mathring{A}$,the minimum potential difference required will be.....$kV$.

If the cathode-anode potential difference in an $X$-ray tube is $10^5 V$,then the maximum energy of an $X$-ray photon can be:

When $X$-rays pass through a high-intensity uniform magnetic field,they:

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