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ISSN 2227-3123
Research Article
Vol. 38, Issue 1, 2024May 07, 2024 CEST

How to Fix Global Warming With Cold Fusion

Jed Rothwell,
Global warmingfuturecarbon sequestrationreforestationeconomics
https://doi.org/10.70923/001c.124948

Articles in Vol. 38, Issue 1, 2024

Vol. 38, Issue 1, 2024
  • The History of LENR Research at NASA Glenn Research Center
    T.L. BenyoL. ForsleyB. Steinetz
  • Reproduction of Excess Heat of Pd-B Cathode Measured by Seebeck Calorimeter
    Wu-Shou Zhang
  • Experimental Observations on the Lattice Energy Converter
    Antonio Di Stefano
  • Energetic Ion Emission from TiDx in Low-Energy Ion Beam Experiments
    Sadie ForbesPeter L. HagelsteinFlorian Metzler
  • Microscopic Insights into the Anomalous Heat Effect that Unify Disparate Experimental Results
    Graham K. Hubler
  • Synthesis of Silicon in the Interaction of Aluminum With a Quasi-Neutron and Estimation of the Contribution of the Aluminum Hydride Complex
    Mikhail P. KashchenkoMaxim A. KovalenkoVladimir I. PechorskyAnatoly Ya. KupryazhkinNadezhda M. Kashchenko
  • Estimation of the Heat Generation of the Metal Composite Powder Absorbing the Pulsed Flow of Hydrogen Gas
    Tomotaka KobayashiKen NaitohDaiki OkadaRyuki NakagawaYuta TobaMasaharu UchiumiDaisuke Nakata
  • More About Why Cold Fusion Will Lower the Cost of Energy ICCF24
    Jed Rothwell
  • How to Fix Global Warming With Cold Fusion
    Jed Rothwell
  • The Nature of Cold Fusion (Cold Fusion Made Simple)
    Edmund Storms
  • Synchronization of Vacancy-Loaded Deuterons Enables Successful LANR Mass-Energy Transfer
    Mitchell Swartz
  • Deuteron Momentum and the Umweg Factor Initiate and Limit Successful CF/LANR
    Mitchell Swartz
  • Impedance Spectroscopy Distinguishes Active ZrO2-PdNiD NANOR®-type LANR Components
    Mitchell Swartz
  • Direct Electricity Production from NANOR®-type ZrO2-PdNiD Components Using Ultrasound
    Mitchell Swartz
  • Excess Heat in Nanoparticles of Nickel Alloys in Hydrogen
    Jean-Paul BiberianRobert MichelChristophe Le RouxMathieu ValatSébastien BucherArnaud KodeckPer J.R. SjöbergJacques RuerDamien Chaudanson
  • The Case of the Missing Tritium
    Pamela A. Mosier-Boss Mosier-BossLawrence P. Forsley
  • Advancements in the Production of Anomalous Heat Effect in Constantan Wires: Developing a Robust Experimental Protocol
    Francesco CelaniC. LorenzettiG. G. VassalloE. PurchiS. FiorillaS. CupelliniN. NakamuraP. CerreoniR. BurriP. BoccaneraA. SpalloneE. F. Marano
  • Scaling up the Lattice Energy Converter
    F. E. GordonH. J. Whitehouse
  • LENR Research Documentation Initiative: What Have We Learned So Far?
    Thomas W. Grimshaw
  • Possibility of Coherent LENR Dynamics with Nuclear Molecules
    Peter L. Hagelstein
  • Anomalous Heat Burst Triggered by Input Power Perturbations observed in Ni-Based Nanostructured Thin Films with Hydrogen
    Y. IwamuraT. ItohJirohta KasagiT. TakahashiS. YamauchiM. SaitoS. MurakamiT. Hioki
  • Highly Efficient Water Plasma Vortex Reactor for Obtaining of Extra Thermal Energy and Transmuted Chemical Elements
    A. KlimovS. AltuninO. Kulikovskii
  • Understanding of MHE Power Generation Patterns by TSC Theory
    Akito TakahashiMasahiko HasegawaYutaka Mori
  • Evaluation of the Possibility of Using the Helium Leak Detector TI 1-14 for the Analysis of Protium H2, Deuterium D2, Helium-3 3He and Tritium T2
    Sergei A. TcvetkovKonstantin V. Fedko
  • A LENR Solution for Fundamental Mysteries of the Solar Corona (Anomalously High Temperature and Anomalous He3 Concentration)
    V. I. VysotskiiM. V. VysotskyySergio Bartalucci
  • Mechanism and Dynamics of Quasi-Stationary Self-Supporting LENR in Low-Temperature Magnetized Plasma
    V. I. VysotskiiM. V. Vysotskyy
  • Thoughts on a Model of Vysotskii and Vysotskyy
    Peter L. Hagelstein
  • Validation of Excess Energy in the H2 Loaded Palladium System
    Prahlada RamaraoShree Varaprasad NSShashank G DathPB MohankumaraGC Suprith
JCMNS
Rothwell, Jed. 2024. “How to Fix Global Warming With Cold Fusion.” Journal of Condensed Matter Nuclear Science 38 (1): 121–29. https://doi.org/10.70923/001c.124948.
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