16.3 From the data given г = 20,000 J/mol, at 900 K the diffusion coefficient is D10-8 cm2/s and the intermolecular spacing is 0.3 nm, at X = 0.5 and T = 900 K, calculate (No explanation required) (a) The value of A in Equation XD RT A = RT X -2(1-x)r} (b) The value of B in Equation ГаXD B=2 RT (c)The value of ẞcrit. (d)The value of ẞmax. (e)The value of amax f. The value of the wavelength at ẞmax
16.3 From the data given г = 20,000 J/mol, at 900 K the diffusion coefficient is D10-8 cm2/s and the intermolecular spacing is 0.3 nm, at X = 0.5 and T = 900 K, calculate (No explanation required) (a) The value of A in Equation XD RT A = RT X -2(1-x)r} (b) The value of B in Equation ГаXD B=2 RT (c)The value of ẞcrit. (d)The value of ẞmax. (e)The value of amax f. The value of the wavelength at ẞmax
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
Transcribed Image Text:16.3 From the data given г = 20,000 J/mol, at 900 K the diffusion coefficient is
D10-8 cm2/s and the intermolecular spacing is 0.3 nm, at X = 0.5 and T = 900 K, calculate
(No explanation required)
(a) The value of A in Equation
XD RT
A =
RT X
-2(1-x)r}
(b) The value of B in Equation
ГаXD
B=2
RT
(c)The value of ẞcrit.
(d)The value of ẞmax.
(e)The value of amax
f. The value of the wavelength at ẞmax
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