Alfred Nobel extended Sobrero's work on nitroglycerin and discovered that when mixed with diatomaceous earth it would form a stable mixture. This mixture is known as dynamite. The reaction of nitroglycerin is: 4C3H5(NO3)3(1) 12CO2(g) + 10H2O(g) + 6N2(g) + O2(g) -> Calculate the number of grams of each product that are produced by the decomposition of 40.0 g of nitroglycerin. i g CO2 A i g H₂O g №2 g O2

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Alfred Nobel extended Sobrero's work on nitroglycerin and discovered that when mixed with diatomaceous earth it would form a
stable mixture. This mixture is known as dynamite. The reaction of nitroglycerin is:
4C3H5(NO3)3(1) 12CO2(g) + 10H2O(g) + 6N2(g) + O2(g)
->
Calculate the number of grams of each product that are produced by the decomposition of 40.0 g of nitroglycerin.
i
g CO2
A
i
g H₂O
g №2
g O2
Transcribed Image Text:Alfred Nobel extended Sobrero's work on nitroglycerin and discovered that when mixed with diatomaceous earth it would form a stable mixture. This mixture is known as dynamite. The reaction of nitroglycerin is: 4C3H5(NO3)3(1) 12CO2(g) + 10H2O(g) + 6N2(g) + O2(g) -> Calculate the number of grams of each product that are produced by the decomposition of 40.0 g of nitroglycerin. i g CO2 A i g H₂O g №2 g O2
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