Answer:
8.3 moles
Step-by-step explanation:
Step 1:
Data obtained from the question. This includes:
Initial volume (V1) = 8.15 L
Initial mole (n1) = 8.51 mol
Final volume (V2) = 16.1 L
Number of mole added =?
Final mole (n2) =?
Step 2:
Obtaining an equation to solve for the final mole. This is illustrated below:
From ideal gas equation,
PV = nRT
Divide both side by P
V = nRT/P
Divide both side by n
V/n = RT/P
Since pressure (P) and temperature (T) are constant, therefore
V/n = constant
V1/n1 = V2/n2
Step 3:
Determination of the final mole. This is illustrated below:
Initial volume (V1) = 8.15 L
Initial mole (n1) = 8.51 mol
Final volume (V2) = 16.1 L
Final mole (n2) =?
V1/n1 = V2/n2
8.15/8.51 = 16.1/n2
Cross multiply to express in linear form
8.15 x n2 = 8.51 x 16.1
Divide both side by 8.15
n2 = (8.51 x 16.1) / 8.15
n2 = 16.81 moles
Therefore, the final mole is 16.81 moles
Step 4:
Determination of the number of moles added. This can be obtained as illustrated below:
Number of mole added = final mole - initial mole
Number of mole added = n2 - n1
Number of mole added = 16.8 - 8.51
Number of mole added = 8.3 moles