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the new fuels with magnecular structure - Institute for Basic Research

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78 RUGGERO MARIA SANTILLI<br />

Figure 25. The first experimental evidence at NTS on <strong>the</strong> mutation of <strong>the</strong> IR signature of<br />

magnetically polarized conventional molecules, here referring to <strong>the</strong> CO 2 (top) compared to <strong>the</strong><br />

result of <strong>the</strong> computer search (bottom). Note that <strong>the</strong> known, double-lobe peak of CO 2 persists<br />

in <strong>the</strong> detected peak <strong>with</strong> <strong>the</strong> correct energy, and only <strong>with</strong> decreased intensity. Jointly, <strong>the</strong>re<br />

is <strong>the</strong> appearance of two <strong>new</strong> peaks, which are evidence of <strong>new</strong> internal bonds <strong>with</strong>in <strong>the</strong> conventional<br />

CO 2 molecule. This evidently implies an increased energy content, thus establishing<br />

experimental foundations <strong>for</strong> <strong>the</strong> <strong>new</strong> technology of magnetically polarized <strong>fuels</strong> such as magnegas<br />

[2].Note that <strong>the</strong> computer interprets <strong>the</strong> IR signature as that of CO, which is erroneous<br />

since CO is out of <strong>the</strong> selected range of detection.

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