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the new fuels with magnecular structure - Institute for Basic Research

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THE NEW FUELS WITH MAGNECULAR STRUCTURE 41<br />

Figure 13. A schematic view <strong>for</strong> <strong>the</strong> cases of C=O and O–C–O of <strong>the</strong> polarization of internal<br />

atomic electrons, while preserving conventional valence bonds, and <strong>the</strong> consequential creation<br />

of <strong>new</strong> bonds in conventional molecules which are not of valence type, as later on verified<br />

experimentally via IR scans.<br />

For <strong>the</strong> case of <strong>the</strong> O–C–O molecule we can evidently have two internal bonds<br />

of magnetic type in addition to <strong>the</strong> valence bonds, which are also given by <strong>the</strong><br />

alignment of <strong>the</strong> magnetic polarities, resulting in one <strong>new</strong> bond <strong>for</strong> <strong>the</strong> O–C dimer<br />

and a second one <strong>for</strong> <strong>the</strong> C–O dimer, as illustrated in Fig. 12.B.<br />

As we shall see later on, <strong>the</strong> above <strong>new</strong> internal molecular bonds have major<br />

industrial and consumer implications, inasmuch as <strong>the</strong>y permit <strong>the</strong> production<br />

of <strong>fuels</strong> capable of releasing under combustion anomalous amounts of energy,<br />

<strong>with</strong> consequential reduction of pollutants in <strong>the</strong> exhaust, as already proved by<br />

magnegas.<br />

Needless to say, <strong>the</strong> creation of <strong>new</strong> internal bonds is an extreme case of IR<br />

mutation. In reality, numerous o<strong>the</strong>r weaker <strong>for</strong>ms of mutations <strong>with</strong>out <strong>the</strong><br />

appearance of <strong>new</strong> peaks are possible and <strong>the</strong>ir study is left to <strong>the</strong> interested<br />

reader.

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