A chemical manufacturer, Desla, is currently planning on this production and delivery network to fulfill its production demand. Table 2.1 shows the production capacity and production cost. Table 2.2 shows the distance between production site and market. Table 2.1: Production capacity and production cost at production site Production site Production capacity, CAP| Production cost, | (ton/month) | 1,000 PROCOST (RM/ton) 50,000 Old York Table 2.2: Distance between production plant and market j, DIST, (km) Production site Market j Bongkok 500 Tukyo Longdon Old York 300 600 Develop a flowchart for following program: A program is expected to determine the total cost (TC) and the quantity of transferred chemicals (ton/month) to each market j (TRAN). The program is expected to generate a loop by gradually adding 10 ton/month of chemicals to TRAN, where the initial value of all elements in TRAN, is set as zero. The total cost (TC) is given in Eq 2.1, where PROD is the production quantity at production site (ton/month), and TRCOST is the unit transport cost (RM/ton/km). TC = E PROD × PROCOST +E,TRAN, × DIST, × TRCOST Eq 2.1 PROD is subjected to the production capacity (CAP), as given by Eq 2.2. PROD
A chemical manufacturer, Desla, is currently planning on this production and delivery network to fulfill its production demand. Table 2.1 shows the production capacity and production cost. Table 2.2 shows the distance between production site and market. Table 2.1: Production capacity and production cost at production site Production site Production capacity, CAP| Production cost, | (ton/month) | 1,000 PROCOST (RM/ton) 50,000 Old York Table 2.2: Distance between production plant and market j, DIST, (km) Production site Market j Bongkok 500 Tukyo Longdon Old York 300 600 Develop a flowchart for following program: A program is expected to determine the total cost (TC) and the quantity of transferred chemicals (ton/month) to each market j (TRAN). The program is expected to generate a loop by gradually adding 10 ton/month of chemicals to TRAN, where the initial value of all elements in TRAN, is set as zero. The total cost (TC) is given in Eq 2.1, where PROD is the production quantity at production site (ton/month), and TRCOST is the unit transport cost (RM/ton/km). TC = E PROD × PROCOST +E,TRAN, × DIST, × TRCOST Eq 2.1 PROD is subjected to the production capacity (CAP), as given by Eq 2.2. PROD
Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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