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Untitled - Sciencemadness Dot Org

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THERMAL PROPERTIES<br />

AEE = standard internal energy of combustion at 25°C.<br />

The standard heat of formation of the explosive (in kilocalories per mole) was<br />

calculated by the use of<br />

AH; = aAHS(COz,g) + iAH: (H,O,l) - AH:<br />

where AH: = the standard heat of formation of sample,<br />

AHp( CO,,g) = -94.051 kcal/mole,<br />

AHp(HzO,l) = -68.315 kcal/mole,<br />

and a and b are the same subscripts as above.<br />

222<br />

Explosive<br />

Table 2.05 STANDARD HEATS<br />

OF COMBUSTION AND FORMATION<br />

Heat of Combustion,<br />

A@<br />

(kcal/mole)<br />

Heat of Formation,<br />

AH:!<br />

(kcal/mole)<br />

ABH -2578.4 116.3<br />

BTF -708.1 143.8<br />

BTX -1336.2 70.9<br />

DATB -711.5 -23.6<br />

DIPAM -1326.8 -6.8<br />

DODECA -2512.8 50.6<br />

HMX -660.7 11.3<br />

HNAB -1333.2 67.9<br />

bis-HNAB -2653.3 191.1<br />

HNBP -1279.9 14.6<br />

HNS -1540.3 18.7<br />

NONA -1891.2 27.4<br />

NQ -210.4 -20.29<br />

ONT -1917.6, 19.7<br />

PADP -1917.4 147.7<br />

PAT0 -959.5 36.3<br />

PENCO - 1366.9 -26.6<br />

PETN 618.7 110.34<br />

PYX -1858.8 20.9<br />

RDX -501.8 14.7<br />

T-TACOT -1377.7 112.4<br />

Z-TACOT 1375.7 110.5<br />

TATB -735.9 -33.4<br />

Tetryl -836.8 7.6<br />

TNN -1090.0 12.3<br />

TNT -817.2 -12.0<br />

TPB -2502.6 -62.1

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