How would the model and answer in the example problem change if felicia lives \( \frac{7}{10} \) mile from the soccer field?
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If Felicia lives \( \frac{7}{10} \) mile from the soccer field, you'd start by determining the total distance she would need to walk for a round trip. Since she walks to the field and back, the total distance would be \( 2 \times \frac{7}{10} \) miles, equating to \( 1.4 \) miles. You might also adjust the time it takes her to walk this distance based on her walking speed, ensuring the model reflects her new circumstances accurately. Incorporating different assumptions could further enrich the solution. For instance, if you factor in breaks or variations in her walking speed—perhaps she strolls leisurely to catch up on her favorite podcast—that could help illuminate the practical impact of her new distance. It would make her walking routine more relatable and provide a clearer picture of the time commitment involved!