Die quantentheoretische Deutung der Zahl der Dispersionselektronen
Explore this paper's citation graph
- Type
- article
- Published
- 1921-12-01
- Cited by
- 128
- References
- 0
- OpenAlex
- https://openalex.org/W2011848478
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:121659451
Keywords
Philosophy
References
No references recorded for this paper.
Cited by
- Diagnostics of surface wave driven low pressure plasmas based on indium monoiodide-argon system
- Die experimentelle Prüfung der quantentheoretischen Dispersionsformel
- Influence of the duration of collision effects on the imprisonment of resonance radiation at higher optical depths
- XLV. Application of Schrödinger's wave functions to the calculation of transition probabilities for the principal series of sodium
- Infrared Fluorescence of Carbon Monoxide
- Bohr‐Kramers‐Slater: A Virtual Theory of Virtual Oscillators and Its Role in the History of Quantum Mechanics
- Models and methodologies in current theoretical high-energy physics
- The Absorption Spectra of Methane, Carbon Dioxide, Water Vapor, and Ethylene in the Vacuum Ultraviolet
- On the mathematics underlying dispersion relations
- A new absorption spectroscopy setup for the sensitive monitoring of atomic and molecular densities
- Vibrational Fluorescence of Carbon Monoxide
- The decay of 1s2 and 1s4 radiation in krypton
- Relationship between Absorption Intensity and Fluorescence Lifetime of Molecules
- Why the cavity-mode method for deriving Planck's law is flawed
- A compact high-temperature furnace for magneto-optical spectroscopy of atoms
- LXXIX. Relative probabilities of the transitions involved in the balmer series lines of hydrogen
- Das Gesetz des Tiefempfangs in der klassischen Strahlungstheorie
- Messung des Intensitätsverhältnisses zweier vom gleichen Ausgangszustand emittierten Linien (1S–3P und 2S–3P) beim Natriumatom, im Hinblick auf das Verhältnis der korrespondierenden Übergangswahrscheinlichkeiten
- Oscillator strenght of the resonance lines of xenon
- Transport mechanisms of metastable and resonance atoms in a gas discharge plasma