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Consider the Following Time Study Data  Observation Cycles (Actual Time in Minutes) \text { Observation Cycles (Actual Time in Minutes) }

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Consider the following time study data.  Observation Cycles (Actual Time in Minutes) \text { Observation Cycles (Actual Time in Minutes) }
 Work  Task 1234567 A 0.120.170.190.110.150.160.20 B 0.910.950.970.880.860.800.94 C 1.521.481.401.601.651.521.47\begin{array} { | l | l | l | l | l | l | l | l | } \hline \begin{array} { l } \text { Work } \\\text { Task }\end{array} & 1 & 2 & 3 & 4 & 5 & 6 & 7 \\\hline \text { A } & 0.12 & 0.17 & 0.19 & 0.11 & 0.15 & 0.16 & 0.20 \\\hline \text { B } & 0.91 & 0.95 & 0.97 & 0.88 & 0.86 & 0.80 & 0.94 \\\hline \text { C } & 1.52 & 1.48 & 1.40 & 1.60 & 1.65 & 1.52 & 1.47 \\\hline\end{array}
a. If the performance rating factor for A = 1.15, B = 1.0, and C = 0.85, determine the normal time for the job.
b. If personal allowance is 7 percent, fatigue allowance is 12 percent, personal delay allowance is 9 percent, and avoidable delay is 4 minutes, determine the standard time for the job.

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Normal time = Observed time × ...

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