Notes:Fiery Blowhog/olimar: Difference between revisions

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This creature expels a volatile phosphorus compound from its snout that combusts upon contact with air. This fire-breathing ability is dependent upon the air-to-fuel ratio at its mouth, catalyst reaction within the expelled compound, and purification of the compound. Thus it is highly unlikely such a complex process could cause the spontaneous explosion of a fallen blowhog. (This process is also perhaps to avoid the risk of spontaneous combustion in the belly of a live specimen.) However, one should still treat a fiery blowhog with great care, even after its life functions have ceased.<noinclude>{{metadata|olimar}}</noinclude>
This creature expels a volatile phosphorous compound from its snout that combusts upon contact with air. This fire-breathing ability is dependent upon the air-to-fuel ratio at its mouth, catalyst reaction within the expelled compound, and purification of the compound. Thus it is highly unlikely such a complex process could cause the spontaneous explosion of a fallen blowhog. (This process is also perhaps to avoid risk of spontaneous combustion in the belly of a live specimen.) However, one should still treat a fiery blowhog with great care, even after its life functions have ceased.<noinclude>
{{metadata|olimar}}</noinclude>

Latest revision as of 10:01, March 16, 2012

This creature expels a volatile phosphorous compound from its snout that combusts upon contact with air. This fire-breathing ability is dependent upon the air-to-fuel ratio at its mouth, catalyst reaction within the expelled compound, and purification of the compound. Thus it is highly unlikely such a complex process could cause the spontaneous explosion of a fallen blowhog. (This process is also perhaps to avoid risk of spontaneous combustion in the belly of a live specimen.) However, one should still treat a fiery blowhog with great care, even after its life functions have ceased.

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