IZAVU MBUMBA DAN, CT ROGER RUMBU
This document presents a detailed exploration of Nano Diamond Batteries (NDB), focusing on their operational principles, particularly the conversion of energy from radioactive materials into electricity through beta-voltaic processes. The study highlights the crucial role of confinement and shielding in ensuring user safety and environmental protection. It discusses the trade-off between longevity and power output, emphasizing that while NDBs can function for extended periods, their low power output limits their applications. Applications suited for NDB technology, such as pacemakers and autonomous sensors, are examined to illustrate their practical use cases. Additionally, a calculation demonstrating the total energy output of an NDB over 50 years reveals its comparative efficiency to smartphone batteries, further underlining its suitability for low-energy demanding devices. By adhering to strict nuclear safety standards, the benefits of this technology can outweigh its constraints, advocating for its safe integration into various fields requiring sustainable power sources.
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title={IZAVU MBUMBA DAN },
author={IZAVU MBUMBA DAN and CT ROGER RUMBU},
year={2026},
language={en}
}TY - JOUR TI - IZAVU MBUMBA DAN AU - IZAVU MBUMBA DAN AU - CT ROGER RUMBU PY - 2026 LA - en ER -
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