Below is shown a plot of the logarithm (to the base 10) of the diffusion coefficient versus reciprocal of the absolute temperature, for the diffusion of iron in chromium. Determine values for the activation energy and preexponential. 10-15 IN 0.60 x 10-3 Reciprocal temperature (1/K) Diffusion coefficient (m²/s) 10-16 0.55 x 10-3 0.65 x 10-3 0.70 x 10-3

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Below is a plot of the logarithm (to the base 10) of the diffusion coefficient versus the reciprocal of the absolute temperature, for the diffusion of iron in chromium. Determine values for the activation energy and preexponential.

**Graph Details:**

- **X-axis:** Reciprocal temperature (1/K) × 10<sup>−3</sup>, ranging from 0.55 to 0.70.
- **Y-axis:** Diffusion coefficient (m<sup>2</sup>/s), ranging from 10<sup>−16</sup> to 10<sup>−15</sup>.
- The graph shows a downward sloping line indicating a decrease in the diffusion coefficient with increasing reciprocal temperature.

**Input Fields:**

- Activation energy (J/mol)
- Preexponential (m<sup>2</sup>/s) 

Each field has an informational icon suggesting additional information or help might be available.
Transcribed Image Text:Below is a plot of the logarithm (to the base 10) of the diffusion coefficient versus the reciprocal of the absolute temperature, for the diffusion of iron in chromium. Determine values for the activation energy and preexponential. **Graph Details:** - **X-axis:** Reciprocal temperature (1/K) × 10<sup>−3</sup>, ranging from 0.55 to 0.70. - **Y-axis:** Diffusion coefficient (m<sup>2</sup>/s), ranging from 10<sup>−16</sup> to 10<sup>−15</sup>. - The graph shows a downward sloping line indicating a decrease in the diffusion coefficient with increasing reciprocal temperature. **Input Fields:** - Activation energy (J/mol) - Preexponential (m<sup>2</sup>/s) Each field has an informational icon suggesting additional information or help might be available.
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