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  1. Learn about the emission spectrum of atomic hydrogen, which consists of several series of spectral lines with different wavelengths and frequencies. The lines are produced by electron transitions between different energy levels in the hydrogen atom, and can be explained by the Rydberg formula.

  2. Learn about the hydrogen spectrum, the emission of light by hydrogen atoms when excited by an electric discharge. Find out the wavelengths, diagrams, series and formula of the hydrogen spectrum and its applications.

  3. Learn how hydrogen atoms emit light of only certain wavelengths, called line spectrum, and how Bohr's model explains this phenomenon. Explore the Balmer, Rydberg, and Lyman series of hydrogen lines and their applications.

  4. 20 Σεπ 2022 · Learn how Bohr's model explains the spectral lines of the hydrogen atomic emission spectrum. See the energy levels, transitions, and series of the hydrogen atom and their corresponding wavelengths of light.

  5. 1 Νοε 2008 · In 1953 American physicist Curtis Humphreys (1898–1986) discovered the hydrogen spectral line series in which n 1 = 6 and n 2 ≥ 7. The first four series of spectral lines for hydrogen (n 1 = 1, 2, 3, 4) are shown in Figure 1. Note the logarithmic scale for wavelength.

  6. Learn how the hydrogen spectrum was discovered in stars and laboratory, and how it led to the laws of quantum mechanics. Explore the Balmer series, the Rydberg formula and the laser spectroscopy of hydrogen.

  7. Learn how hydrogen atoms emit photons when electrons transition between different energy levels. See the hydrogen energy level diagram, the spectrum of hydrogen lines, and the effects of fine structure and spin-orbit splitting.

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