Atoms

Physics · Class 12

Simulation · Physics · Class 12

Hydrogen's line spectrum

From the lesson Line spectra of hydrogen in Atoms. Change the values and watch what happens.

The idea behind it

NCERT §12.5

  • A transition from a higher level ni to a lower level nf (nf < ni) sends out a photon of frequency νif with hνif = Eni − Enf (Eq. 12.11).
  • Both ni and nf are whole numbers, so only certain energy differences, and so only certain discrete frequencies, are possible: this is the line spectrum.
  • Emission lines come from electrons dropping from higher to lower states. Absorption happens when an atom takes in a photon whose energy exactly matches the gap to a higher state.
  • Light with a continuous range of frequencies passed through a rarefied gas therefore comes out with dark absorption lines at the frequencies the atoms absorbed.
  • For hydrogen, hν = 13.6 eV (1/nf² − 1/ni²). Using hc ≈ 1240 eV nm: 2 → 1 gives 10.2 eV (about 122 nm, ultraviolet); 3 → 1 gives 12.09 eV (about 103 nm); 3 → 2 gives 1.89 eV (about 656 nm, red).
  • Bohr's explanation of the hydrogen spectrum was a major achievement that drove the development of quantum theory, and he received the Nobel Prize in Physics in 1922.
Take the whole lessonLine spectra of hydrogen, with the notes, the story, a mind map, common mistakes and exam questions.Open

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