EBK COMPUTER SCIENCE ILLUMINATED
EBK COMPUTER SCIENCE ILLUMINATED
7th Edition
ISBN: 9781284174755
Author: Dale
Publisher: JONES+B CO
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Chapter 14, Problem 35E
Program Plan Intro

Given Information:

  • It is given that the cars arrive at the time interval of 3 minutes in a one-pump gas station, whereas the service time of a car is 4 minutes.
  • Let use the random number generator for simulation,
    • A number between 0.0(no chance) and 0.33 (chance) assures a car has arrived.
    • But if a number is greater than the given probability then it means that no car has arrived.
    • First the car arrives in a gas station and it goes into a queue.
    • If a pump is empty, the first car in the queue goes for service and its service time is 4 minutes.
    • The time remaining for service is decremented, when a car is in service at the pump.
      • But if the service time of a car is incremented than the given service time, then the waiting time of the cars in the queue is recorded and the next car enters into the pump for service will be delayed according to the waiting time.

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Q.1. Architecture performance [10 marks] Answer A certain microprocessor requires either 2, 4, or 6 machine cycles to perform various operations. ⚫ (40+g+f)% require 2 machine cycles, ⚫ (30-g) % require 4 machine cycles, and ⚫ (30-f)% require 6 machine cycles. (a) What is the average number of machine cycles per instruction for this microprocessor? Answer (b) What is the clock rate (machine cycles per second) required for this microprocessor to be a "1000 MIPS" processor? Answer (c) Suppose that 35% of the instructions require retrieving an operand from memory which needs an extra 8 machine cycles. What is the average number of machine cycles per instruction, including the instructions that fetch operands from memory?
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