The event driven approach is used to simulate a queue in a restaurant with a single window seller. Assume the following: the first event TNE [1] =0, TBAI = 0, 5, 5, 5,20, 3 minutes and STi = 10, 10, 5, 5, 3, 2 minutes. The initial values are T=0, TLE=0, TSLE=0, SS=0, WT=0, NQ=0, NC=0, AQ=0 and AS=0 and the simulation time is (0-40) minutes. The last step is given to you. What is the mean number of customers in the system (Ls)? Event Next Event Time and Calculate: TimeſTSLE TLEI Branching Execution of Event list No to: Prongh

Computer Networking: A Top-Down Approach (7th Edition)
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Chapter1: Computer Networks And The Internet
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The event driven approach is used to simulate a queue in a restaurant with a single window seller. Assume the
following: the first event TNE (1] =0, TBAI = 0, 5, 5, 5,20, 3 minutes and STi = 10, 10, 5, 5, 3, 2 minutes. The initial
values are T=0, TLE=0, TSLE=0, SS=0, WT=0, NQ=0, NC=D0, AQ=0 and AS=0 and the simulation time is (0-40)
minutes. The last step is given to you. What is the mean number of customers in the system (Ls)?
!!
Event Next Event
Time and
type
Calculate:
Time[TSLE,TLE] to:
Area [AQ.AS]
Branching
Execution of
Branch
equations
No
Event list
...
...
...
...
....
...
TSLE-5
TLE=35
10
TNE [2]=40
Departure Ss=0
QUEUE
TNE [2]= 40
WT=0
AQ=25
AS=35
ЕMPTY
NQ=0
NS=6
NC=3
O a. 1.200
O b. 1.500
O c. 1.250
d. 2.500
Oe None of these
Transcribed Image Text:The event driven approach is used to simulate a queue in a restaurant with a single window seller. Assume the following: the first event TNE (1] =0, TBAI = 0, 5, 5, 5,20, 3 minutes and STi = 10, 10, 5, 5, 3, 2 minutes. The initial values are T=0, TLE=0, TSLE=0, SS=0, WT=0, NQ=0, NC=D0, AQ=0 and AS=0 and the simulation time is (0-40) minutes. The last step is given to you. What is the mean number of customers in the system (Ls)? !! Event Next Event Time and type Calculate: Time[TSLE,TLE] to: Area [AQ.AS] Branching Execution of Branch equations No Event list ... ... ... ... .... ... TSLE-5 TLE=35 10 TNE [2]=40 Departure Ss=0 QUEUE TNE [2]= 40 WT=0 AQ=25 AS=35 ЕMPTY NQ=0 NS=6 NC=3 O a. 1.200 O b. 1.500 O c. 1.250 d. 2.500 Oe None of these
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