Question-4. (10 points). Determine the non-steady-state diffusion time in hours) necessary to achieve a zinc (Zn) concen

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Question-4. (10 points). Determine the non-steady-state diffusion time in hours) necessary to achieve a zinc (Zn) concen

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Question 4 10 Points Determine The Non Steady State Diffusion Time In Hours Necessary To Achieve A Zinc Zn Concen 1
Question 4 10 Points Determine The Non Steady State Diffusion Time In Hours Necessary To Achieve A Zinc Zn Concen 1 (43.5 KiB) Viewed 24 times
Question-4. (10 points). Determine the non-steady-state diffusion time in hours) necessary to achieve a zinc (Zn) concentration of 0.04 wt% at a position of 2.5 mm into a copper (Cu)-Zn alloy that initially contains 0.0005 wt% Zn. The surface concentration is to be maintained at 0.85 wt% Zn under a temperature of 950 °C. The diffusion preexponential and activation energy are 2.4 X10 5 m/s and 1.89 *10J/mol. R = 8.3145 J/mol-K. 0 Z erf(z) zerf(z) z erf(z) o 0.55 0.5633 1.3 0.9340 0.025 0.0282 0.60 0.6039 1.4 0.9523 0.05 0.0564 0.65 0.6420 1.5 0.9661 0.10 0.1125 0.70 0.6778 1.6 0.9763 0.15 0.1680 0.75 0.7112 1.7 0.9838 0.20 0.2227 0.80 0.7421 1.8 0.9891 0.25 0.2763 0.85 0.7707 1.9 0.9928 0.30 0.3286 0.90 0.7970 2.0 0.9953 0.35 0.3794 0.95 0.8209 2.2 0.9981 0.40 0.4284 1.0 0.8427 2.4 0.9993 0.45 0.4755 1.1 0.8802 2.6 0.9998 0.50 0.5205 1.2 0.9103 2.8 0.9999
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