Nitroglycerin (227.1 g/mol) releases a large amount of energy
and gaseous products upon
decomposition. If 10.00 grams of nitroglycerin decomposes in an
evacuated 1.00 L flask, what is
the pressure inside the flask? Assume the temperature is 400 K and
that the flask survives
the explosion.
4C3H5N3O9(l) ® 6N2(g) + 12CO2(g) + 10H2O(g) + O2(g)
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Nitroglycerin (227.1 g/mol) releases a large amount of energy and gaseous products upon decomposition. If 10.00...
The explosive nitroglycerin (C3H5N3O9) decomposes rapidly upon ignition or sudden impact according to the following balanced equation: 4C3H5N3O9(l)→12CO2(g)+10H2O(g)+6N2(g)+O2(g)ΔH∘rxn=−5678kJ Calculate the standard enthalpy of formation (ΔH∘f) for nitroglycerin. ?=kJ/mol
Assume that you have 1.15 g of nitroglycerin in a 579.5 mL steel container at 20.0 ∘C and 1.00 atm pressure. An explosion occurs, raising the temperature of the container and its contents to 425 ∘C. The balanced equation is 4C3H5N3O9(l)→12CO2(g)+10H2O(g)+6N2(g)+O2(g) (Figure 1) Part A How many moles of nitroglycerin were in the container originally? Part B How many moles of gas (air) were in the container originally? Part C How many moles of gas are in the container after...
. Nitroglycerin (C3H5(NO3)3C3H5(NO3)3) is a principal component of dynamite. The decomposition reaction of nitroglycerine produces four different gases and releases a large amount of thermal energy. 4C3H5(NO3)3⟶12CO2(g)+10H2O(g)+6N2(g)+O2(g)4C3H5(NO3)3⟶12CO2(g)+10H2O(g)+6N2(g)+O2(g) Calculate the number of grams of each product produced when 45.0 g nitroglycerine decompose
Detonation of nitroglycerin proceeds as follows: 4C3H5N3O9(l)→12CO2(g)+6N2(g)+O2(g)+10H2O(g Part A If a sample containing 2.50 mL of nitroglycerin (density=1.592g/mL) is detonated, how many total moles of gas are produced? Express your answer using three significant figures. Part B If each mole of gas occupies 52 L under the conditions of the explosion, how many liters of gas are produced? Express your answer using two significant figures. Part C How many grams of N2 are produced in the detonation? Express your answer...