IED , RDX , TNT, BHC , CNG . FULL FORM PLEASE .
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RDX (C3H6N6O6) has been used extensively by the U.S. military since WWII. It is known as Royal Demolition Explosive – hence the abbreviation, RDX. C3H6N6O6 → H2O(g) + CO(g) + N2(g) a. If 1 kg of RDX produces 6925 kJ of energy, how many moles of N2(g) would be produced from an explosion that produced 155 MJ of energy? You must show ALL work for credit. b. What would be the volume of all gases produced in this explosion at STP? You must show ALL work for credit.
Adi S.
RDX (C3H6N6O6) was widely used as a military explosive during World War II. Shown below is the explosive decomposition reaction for RDX. Using the data provided, calculate the ΔU in kJ/mol when 10.0 g of RDX detonates at 1.00 atm and 298 K. You may assume that the initial volume of the solid RDX powder is negligible. C3H6N6O6(s) -> 3 CO(g) + 3 H2O(g) + 3 N2(g) Substance ΔH°f (kJ/mol) C3H6N6O6(s) 79.1 CO(g) -110.525 H2O(g) -241.818
Sri K.
For the explosive RDX, write the equation for complete combustion and determine if there is enough oxygen in its structure to provide all of the oxygen needed. Use the Springall-Roberts rules to write a decomposition equation for RDX and show the results of each step. Compare this result to the equation for complete combustion.
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