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Question One a ) Solve for X & Y using a matrix method of your choice 5 X + 3 Y = 7 1 4

Question One
a) Solve for X & Y using a matrix method of your choice
5X +3Y =71
4X +4Y =76[6 marks]
b) The total revenue equation for Mtwapa Ltd is given by: TR =3,200X 9X2. The marginal cost equation is given by: MC =2X 600. The total fixed costs amount to sh 124,000 and X represents the number of units
Required
Determine the quantity of output that maximizes profit and the maximum profit [6 marks]
c) Customers arrive at a sales counter at an average rate of 20 customers per hour. The arrival rate is random and may be assumed to follow a Poisson distribution. The time required to serve each customer has an exponential distribution with a mean of 2 minutes.
Required:
(i) The probability that the server is idle [2 marks]
(ii) The average waiting time in the system [2 marks]
(iii) The average number of customers in the queue [2 marks]
d) Solve the game theory problem below & advice the strategies to be adopted by each of the players and the value of the game [6 marks]
Player a
A1 A2 A3
Player
B B15-68
B2374
B39610
e) There are two competitors, X & Y. In a given quarter, the probability of X losing customers to Y is 0.3, whereas the probability of Y losing customers to X is 0.2.
Required
(i) The transition matrix
(ii) The long run market share for each of the competitors
[6 marks]
Question Two
A small project consisting of eight activities has the following characteristics. Time estimates are in weeks:
Activity Predecessor Optimistic (a) Most likely (m) Pessimistic (b)
A None 2412
B None 101226
C A 8910
D A 101520
E A 77.511
F B,C 999
G D 33.57
H E,F,G 555
Required
a) Draw the PERT network for the project, clearly indicating the expected duration of each activity
b) Determine the critical path and the expected project duration
c) If a 30- week deadline is imposed, what is the probability that the project will be finished within the time limit?[15 marks]
Question Three
A product is produced in 4 plants (P1, P2, P3 & P4) and shipped to three warehouses (W1, W2 & W3). The transportation costs per unit are given in the table below:
Warehouses
W1 W2 W3 Capacity
P1201624300
P211108400
P3121810200
P491521100
Demand 290390320
Required
a) Generate an initial transportation schedule using the Vogels Approximation method and the related costs
b) Evaluate whether the solution in (a) above is optimal [15 marks]

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