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4. From the Potential Difference VUI) vs Time ?(?) diagram that you have plotted, nd the time when V: VH2 , 1'92; and from
4. From the " Potential Difference VUI) vs Time ?(?) diagram that you have plotted, nd the time when V: VH2 , 1'92; and from the "Current [(A) vs '?('?) " diagram that you have plotted, nd the time when I: 11/2, flit/2- ?zl?): \"21/20): Note: A ruler or other tools may be helpful in order to obtain the results more accurately. 5. Find the average half-life Chi/\"g with the above results. $1153 ('2'): Note: iffy; = '? 5,2 + ? {/2)/2 6. Substitute T'f}; to (eq4) in I'lntroduction" to calculate the time constant 1-0\" . Table (3': 7. Calculate the theoretical time constant 1:\" . 8. Calculate the percent difference between the time constant from this experiment, 1m? , and the theoretical time constant, 1:\"! . Percent Difference: Note: Wild??? ?i??????c? = l1: \"\"9 7\"\" IX 10011: \"' 9'. Calculate the percent difference between the time constant from Part I, 1:1, and the time constant from Part II, 1:2. Percent Difference: Note: i. 1:1 is the result 1m? from Analysis 6 in Part I, and 1:2 is the result 1-609 from Analysis 6 in Part II . n. ???c????i??????c?=|'r rtz'xmmfl
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