The Platinum Cannon Shipwreck
A modern tale of Alchemy

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Mango Metal Report

Summary of Scientific Findings

Point being, even though people in the past could not explain the reason of what was occurring, it is obvious to me that they were an observation of synthetic production of precious metals, or more formally recognized as Low Energy Nuclear Transmutation.

Transmutation via Hetro-reaction Schemes

Since my introduction to the phenomena of Low Level Nuclear Reactions, I have had the opportunity to observe interesting results from empirical experiments. My thrust has been to determine how nuclear fusion and fission could occur at or near ambient temperatures.

The most common goal for researchers studying this phenomena today is to ascertain the viability of low energy nuclear events as they relate to energy. In an attempt to understand observed anomalies in the formation of heat, physical studies continue into determining if new isotopes are forming. Researchers around the World are now beginning to validate my original claims of transmutation by observing the formation of new isotopes from various apparatuses.

A problem exists, for if one effectuates a nuclear transformation, one would automatically expect a release of energy. In many instances, this is not the case. Just because there is a nuclear anomaly does not mean there is energy. To explain, I have prepared the following:

NUCLEAR EXCHANGE WITHIN COLD FUSION CELLS

In the first portion of this report, I direct my attention to the anomalies observed within cold fusion cells. Since the observations and claims of Pons and Fleschmann scientists have tried to replicate the formation of energy. In their garage, P&F reported that a cubic block of palladium disintegrated on them. It was a once in a lifetime observation, for they could never make the reaction reappear. Furthermore, with sophisticated equipment, researchers are starting to observe the formation of new isotopes and heat generated from various apparatuses. Within the main front of claims one finds the CETI group sponsoring heat from the Patterson Cell concept. The prevalent questions being formed from this research are:

· What energies should be observed from such events?

· What is the trigger of such mechanisms?

Forgetting the classical theory supporting the fusion of hydrogen isotopes, we can address the following concept which allows for the formation of new isotopes. Although I have numerous references, I elect to demonstrate my theories on the findings of Tadahiko Mizuno15 in a recent study of an electrochemical cell consisting of a Pd cathode and LiOH electrolyte.

Mizuno reported numerous anomalies associated with new elements present within the first angstroms of the Pd surface. Isotopic studies show indicated changes in the following elements:

Cu, Zn, Br, Xe, Pd, Cd, Hf, Re, Pt, Ir, and Hg

He theorized using the logic presented by others that the reactions which created these anomalies was crated by a hydrogen fusion followed by a fission of either the cathodic or anodic metal. However, if one studies the energieswhich would be released from such reactions it becomes hard to rationalize. To explain, following is Mizuno's theory of events:

46Pd 108 + 2D --> 48Cd116

Calculating the energies from such a reaction, one would find an excess of 27.14 MeV/event. If this were true, it would not require many events to generate an enormous amount of energy.

However, if one studies the demographics of the isotopic distribution of the cadmium from Mizuno's study, the anomalies presented relate to mass 112, 113, and 114. It is apparent that he used 111 as a control and mass 110 and 116 were not shown as detected.

Accepting the isotopic distribution findings of Mizuno as absolute, allow me to present the real world. Everyone is looking for fusion, or direct interaction of hydrogen isotopes with lattice loading. By doing this, they have overlooked the potential of the reaction of an electrolytic metal and the cathode.

Even though it is probable that a nuclear event can be effectuated by the infusion of hydrogen into metal, the simplistic approach is to utilize the heat of formation of Li, Na, K and Sr with most metals in the absence of hydrogen. I reported this finding to John Bockris in 1992.

Returning to Mizuno's findings, he found an increase in Cd112 & 113, with decreases in Cd114, no change was indicated in Cd111 and there was no reporting of Cd110&116. Allow me to present the following logic:

% Abundance
Energy    
11.14 Pd104 + Li7 --> Cd108 + T -0.182 MeV    
22.33 Pd105 + Li7 --> Cd110 + D 3.802 MeV    
27.33 Pd106 + Li7 --> Cd110 + D 1.215 MeV    
26.46 Pd108 + Li7 --> Cd112 + T 0.399 MeV    
11.72 Pd110 + Li7 --> Cd114 + T 1.688 MeV    

In my research, I have found that a modified model alpha model of the atom exists. Hence, in review of the above, I can speculate with certainty that the Cal + T formation is most prevalent. This also explains phenomena witnessed by many inclusive of Bockris' Texas A&M team in the 1990's of high tritium production from cells without evidence of a D + D reaction. In this case, they observed the high formation of tritium with minimal excessive heat generated from the cell.

Taking this a step further, allow me to present a scenario. In a low energy nuclear event, you can have reactions which are exothermic and endothermic in nature. Without saying, a mechanism has to be established. Although in a classical presentation, Bockris was an observer of an extremely low energy exchange which produce tritium. Since he was trying to dertmine the outcome of the D + D reaction, it never occurred to him that he should be looking for Cd within the cathodic lattice structure.

 

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| Joe Champion | David Hudson(semi-technical lecture) | David Hudson(made easy) | 20th Century Alchemy(3 Chapters) |
| The Platinum Cannon Shipwreck | The Mango Metal Report(3 chapters) | Bookstore |

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