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Patients come to the service where they are treated and then leave. The service schedule is from 8 am to 8 p m . The

Patients come to the service where they are treated and then leave. The service schedule is from 8 am to 8pm. The arrivals are exponentially distributed with a mean time between arrivals of
0.3 hours. After arrival, each pat ent is assigned a degree of 1 to 5, depending on the severity of
their illnesses. Patients in category 1 are the most severe, and are sent immediately to a bed to
await medical attention. The remaining patients should first wait in the reception room for
registration before moving to the bed.
The service has three beds, an administration nurse at the reception, and two doctors. In all
cases, the priority for allocating these resources is based on the severity of the condition. The
reception time for patients in categories 2-5 is uniform between 0.1 and 0.2 hours. The
treatment time for all patients follows a triangular distribution. The distribution of patients by
category and the corresponding minimum, most likely, and maximum times of treatment are
summarized below.
Questions:
Use queue theory to compute the utilization of nurse, doctors and beds. Compute the mean
treatment time for all patients combined and the mean treatment time for each type of
patient. The mean treatment time is the time from the entrance to the exit.
Model the process using Attributed Timed Petri Nets.
Build a simulation model and perform the following experiment
Determine the utilization of doctors, nurse and beds. Determine the mean treatment time
for all patients combined and the mean treatment time for each type of patient. The mean
treatment time is the time from the entrance to the exit. Compare the results against the
theoretical results obtained using queue theory.
Do a manual simulation of the 6 first patients until the leave the process. Obtain the random
values for each distribution using the inverse transform.

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