Calorimetry, Excess Heat, and Faraday Efficiency in Ni-H2O Electrolytic Cells
Author:
Affiliation:
1. Bose® Corporation, Framingham, Massachusetts 01701
Publisher
Informa UK Limited
Subject
General Engineering
Link
https://www.tandfonline.com/doi/pdf/10.13182/FST95-A30436
Reference10 articles.
1. Excess Heat Production by the Electrolysis of an Aqueous Potassium Carbonate Electrolyte and The Implications for Cold Fusion
2. Excess Heat during the Electrolysis of a Light Water Solution of K2CO3with a Nickel Cathode
3. A Light Water Excess Heat Reaction Suggests That “Cold Fusion” May Be “Alkali-Hydrogen Fusion”
4. Cold Fusion by Electrolysis in a Light Water-Potassium Carbonate Solution with a Nickel Electrode
5. Electrochemically induced nuclear fusion of deuterium
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1. Peroxodicarbonate: Electrosynthesis and first directions to green industrial applications;Current Research in Green and Sustainable Chemistry;2022
2. Chapter 12. Recent developments in calorimetry;Annual Reports Section "C" (Physical Chemistry);1998
3. A calorimeter for the electrolytic cell and other open systems;Il Nuovo Cimento D;1996-11
4. Response to “Comments on ‘Calorimetry, Excess Heat, and Faraday Efficiency in Ni-H2O Electrolytic Cells’”;Fusion Technology;1996-09
5. Comments on “Calorimetry, Excess Heat, and Faraday Efficiency in Ni-H2O Electrolytic Cells”;Fusion Technology;1996-09
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