A mixture of CH 4 (g) and C 3 H 8 (g) with a total pressure of 425 torr is prepared in a reaction vessel. Just enough O 2 (g) is added to allow complete combustion of the two hydrocarbons. The gas mixture is ignited, and the resulting mixture of CO 2 (g) and H 2 O(g) is cooled back to the original temperature. If the total pressure of the products is 2.38 atm, the mole fraction of the C 3 H 8 in the original mixture should be calculated. Concept introduction: For a mixture of two gases, the sum of mole fraction is 1. Thus, if the value of mole fraction of 1st gas is x then, mole fraction of 2 n d gas will be 1-x. Also, mole fraction is related to partial pressure and total pressure as follows: P A = X A P T Here, P A is partial pressure of gas A, X A is mole fraction of gas A and P T is total pressure of the mixture of gas.
A mixture of CH 4 (g) and C 3 H 8 (g) with a total pressure of 425 torr is prepared in a reaction vessel. Just enough O 2 (g) is added to allow complete combustion of the two hydrocarbons. The gas mixture is ignited, and the resulting mixture of CO 2 (g) and H 2 O(g) is cooled back to the original temperature. If the total pressure of the products is 2.38 atm, the mole fraction of the C 3 H 8 in the original mixture should be calculated. Concept introduction: For a mixture of two gases, the sum of mole fraction is 1. Thus, if the value of mole fraction of 1st gas is x then, mole fraction of 2 n d gas will be 1-x. Also, mole fraction is related to partial pressure and total pressure as follows: P A = X A P T Here, P A is partial pressure of gas A, X A is mole fraction of gas A and P T is total pressure of the mixture of gas.
Solution Summary: The author explains that the mole tion of C 3 H 8 in the original mixture should be calculated.
A mixture of CH4(g) and C3H8(g) with a total pressure of 425 torr is prepared in a reaction vessel. Just enough O2 (g) is added to allow complete combustion of the two hydrocarbons. The gas mixture is ignited, and the resulting mixture of CO2(g) and H2O(g) is cooled back to the original temperature. If the total pressure of the products is 2.38 atm, the mole fraction of the C3H8 in the original mixture should be calculated.
Concept introduction:
For a mixture of two gases, the sum of mole fraction is 1. Thus, if the value of mole fraction of 1st gas is x then, mole fraction of 2nd gas will be 1-x.
Also, mole fraction is related to partial pressure and total pressure as follows:
PA=XAPT
Here, PA is partial pressure of gas A, XA is mole fraction of gas A and PT is total pressure of the mixture of gas.
Draw the product of the reaction
shown below. Ignore inorganic
byproducts.
H
conc. HBr
Drawing
Q
Calculate the atomic packing factor of diamond knowing that the number of Si atoms per cm3 is 2.66·1022 and that the atomic radii of silicon and oxygen are, respectively, 0.038 and 0.117 nm.
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