1.

The transition rate of electrons from the first excited state of the hydrogen atom to the ground state is -10°/s. What is the minimum range of energies of the resultingphotons that are emitted?​

Answer» <html><body><p>I am writing a <a href="https://interviewquestions.tuteehub.com/tag/paper-1146067" style="font-weight:bold;" target="_blank" title="Click to know more about PAPER">PAPER</a> for a conference titled: The Nature of Light: What are Photons? It would be very helpful to obtain an idea about how this <a href="https://interviewquestions.tuteehub.com/tag/group-1013370" style="font-weight:bold;" target="_blank" title="Click to know more about GROUP">GROUP</a> of <a href="https://interviewquestions.tuteehub.com/tag/scientists-638066" style="font-weight:bold;" target="_blank" title="Click to know more about SCIENTISTS">SCIENTISTS</a> visualize a photon propagating in a vacuum. There are no right or wrong answers. You can give either a detailed answer or merely choose one of the <a href="https://interviewquestions.tuteehub.com/tag/following-463335" style="font-weight:bold;" target="_blank" title="Click to know more about FOLLOWING">FOLLOWING</a> four photon descriptions. A) The Copenhagen interpretation where a packet of energy <a href="https://interviewquestions.tuteehub.com/tag/discontinuously-7676586" style="font-weight:bold;" target="_blank" title="Click to know more about DISCONTINUOUSLY">DISCONTINUOUSLY</a> jumps to form waves of probability. B) The de Broglie model where a packet of energy has a pilot wave which steers the packet of energy. C) A distributed electromagnetic wave which propagates in an empty vacuum. The particle property appears because the energy collapses to a point when absorbed. D) A distributed electromagnetic wave propagating like a quantized transverse sound wave in the quantum mechanical medium of highly energetic vacuum (zero point energy). The particle property appears because the energy collapses to a point when absorbed.</p></body></html>


Discussion

No Comment Found

Related InterviewSolutions