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ISSN 2227-3123
Research Article
Vol. 22, Issue 1, 2017February 01, 2017 CEST

Probabilistic Models for Beam, Spot, and Line Emission for Collimated X-ray Emission in the Karabut Experiment

Peter L. Hagelstein,
Beam formationCollimated X-ray emissionKarabut experimentPhase coherenceUp-conversion
https://doi.org/10.70923/001c.72424

Articles in Vol. 22, Issue 1, 2017

Vol. 22, Issue 1, 2017
  • CR-39 Detector Track Characterization in Experiments with Pd/D Co-deposition
    Andriy SavrasovViktorViktor ProkopenkoEugene Andreev
  • Basic Design Considerations for Industrial LENR Reactors
    Jacques Ruer
  • On Plausible Role of Classical Electromagnetic Theory and Submicroscopic Physics to understand and Enhance Low Energy Nuclear Reaction: A Preliminary Review
    Victor ChristiantoYunita UmniyatiVolodymyr Krasnoholovets
  • Oscillating Excess Power Gain and Magnetic Domains in NANOR -type CF/LANR Components
    Mitchell R. Swartz
  • Development of a Cold Fusion Science and Engineering Course
    Gayle M. VernerMitchell R. SwartzPeter L. Hagelstein
  • Probabilistic Models for Beam, Spot, and Line Emission for Collimated X-ray Emission in the Karabut Experiment
    Peter L. Hagelstein
JCMNS
Hagelstein, Peter L. 2017. “Probabilistic Models for Beam, Spot, and Line Emission for Collimated X-Ray Emission in the Karabut Experiment.” Journal of Condensed Matter Nuclear Science 22 (1): 53–73. https://doi.org/10.70923/001c.72424.
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