Answer:
Temperature = 1092 K
Step-by-step explanation:
The equation for diffusion flux is given as;
J = D(ΔC/Δx)•e^(Q_d/RT)
Where;
J is diffusion flux
D is pre-exponential energy
ΔC is change in concentration
Q_d is Activation energy
R is gas constant
T is temperature
The question wants us to find the temperature. Thus, let's make Temperature T the subject.
Thus,
T = Q_d/[RIn(D(ΔC/JΔx))]
Now, we are given that;
Q_d = 82 KJ/mol = 82,000 J/mol
R = 8.31 J/mol.k
D = 6.5 x 10^(-7) m²/s
ΔC = 0.68 - 0.129 = 0.579kg C per m³
J = 3.2 x 10^(-9) kg/(m²s)
Δx = 14mm = 14 x 10^(-3)m
Thus,plugging in all of the above values into the equation, we have;
T = 82,000/[8.31In(6.5 x 10^(-7) (0.579/(3.2 x 10^(-9)•14 x 10^(-3)))]
T = 82,000/(8.31In(8400.67))
T = 82,000/75.09 = 1092K