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Now we are ready to put everything together and actually calculate the instantaneous rate of this reaction at t=50 seconds from the concentration data. First:

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Now we are ready to put everything together and actually calculate the instantaneous rate of this reaction at t=50 seconds from the concentration data. First: find the concentration of each of the two points you need to use. Get the absorbance of each point and use the Beer's Law graph in the earlier question to convert it to concentration Second: find the slope of those two points, but instead of using the absorbance value for the 22 and y1, use the concentration value. Recall slope =(y2y1)/(x2x1) Beer's Law Curve for Crystal Violet +at 565nm Now we are ready to put everything together and actually calculate the instantaneous rate of this reaction at t=50 seconds from the concentration data. First: find the concentration of each of the two points you need to use. Get the absorbance of each point and use the Beer's Law graph in the earlier question to convert it to concentration Second: find the slope of those two points, but instead of using the absorbance value for the 22 and y1, use the concentration value. Recall slope =(y2y1)/(x2x1) Beer's Law Curve for Crystal Violet +at 565nm

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