Potable water is in short supply in many countries. To address this need, two mutually exclusive water purification syst

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answerhappygod
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Potable water is in short supply in many countries. To address this need, two mutually exclusive water purification syst

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Potable Water Is In Short Supply In Many Countries To Address This Need Two Mutually Exclusive Water Purification Syst 1
Potable Water Is In Short Supply In Many Countries To Address This Need Two Mutually Exclusive Water Purification Syst 1 (21.63 KiB) Viewed 19 times
Potable Water Is In Short Supply In Many Countries To Address This Need Two Mutually Exclusive Water Purification Syst 2
Potable Water Is In Short Supply In Many Countries To Address This Need Two Mutually Exclusive Water Purification Syst 2 (11.3 KiB) Viewed 19 times
Potable Water Is In Short Supply In Many Countries To Address This Need Two Mutually Exclusive Water Purification Syst 3
Potable Water Is In Short Supply In Many Countries To Address This Need Two Mutually Exclusive Water Purification Syst 3 (25.41 KiB) Viewed 19 times
Potable Water Is In Short Supply In Many Countries To Address This Need Two Mutually Exclusive Water Purification Syst 4
Potable Water Is In Short Supply In Many Countries To Address This Need Two Mutually Exclusive Water Purification Syst 4 (23.53 KiB) Viewed 19 times
Potable water is in short supply in many countries. To address this need, two mutually exclusive water purification systems are being considered for implementation in China. Doing nothing is not an option. Assume the repeatability of cash flows for alternative 1. a. Use the PW method to determine which system should be selected when MARR = 8% per year. b. Which system should be selected when MARR = 15% per year? Click the icon to view the alternatives description. Click the icon to view the interest and annuity table for discrete compounding when i = 8% per year. Click the icon to view the interest and annuity table for discrete compounding when / = 15% per year. a. The PW of system 1 is $. (Round to the nearest dollar.) C

Data table Capital investment Annual revenues Annual expenses MV at end of useful life Useful life IRR Print System 1 $100,000 55,000 20,000 20,000 5 years 25.3% Done System 2 $150,000 70,000 40,000 0 10 years 15.1% - X

N 1 2 3 4 6 7 8 9 10 Single Payment Compound Amount Factor To Find F Given P F/P Discrete Compounding; i=8% Compound Amount 1.0800 1.1664 1.2597 1.3605 1.4693 1.5869 1.7138 1.8509 1.9990 2.1589 Present Worth Factor To Find P Given F P/F 0.9259 0.8573 0.7938 0.7350 0.6806 0.6302 0.5835 0.5403 0.5002 0.4632 Factor To Find F Given A F/A 1.0000 2.0800 3.2464 4.5061 5.8666 7.3359 8.9228 10.6366 12.4876 14.4866 Uniform Series Present Worth Factor To Find P Given A P/A 0.9259 1.7833 2.5771 3.3121 3.9927 4.6229 5.2064 5.7466 6.2469 6.7101 Sinking Fund Factor To Find A Given F A/F 1.0000 0.4808 0.3080 0.2219 0.1705 0.1363 0.1121 0.0940 0.0801 0.0690 Capital Recovery Factor To Find A Given P A/P 1.0800 0.5608 0.3880 0.3019 0.2505 0.2163 0.1921 0.1740 0.1601 0.1490

N 1 2 3 4 5 6 7 8 9 10 Single Payment Compound Amount Present Factor To Find F Given P F/P 1.1500 1.3225 Discrete Compounding; i =15% 1.5209 1.7490 2.0114 2.3131 2.6600 3.0590 3.5179 4.0456 Worth Factor To Find P Given F P/F 1.1500 0.7561 0.6575 0.5718 0.4972 0.4323 0.3759 0.3269 0.2843 0.2472 Compound Amount Factor To Find F Given A F/A 1.0000 2.1500 3.4725 4.9934 6.7424 8.7537 11.0668 13.7268 16.7858 20.3037 Uniform Series Present Worth Factor To Find P Given A P/A 0.8696 1.6257 2.2832 2.8550 3.3522 3.7845 4.1604 4.4873 4.7716 5.0188 Sinking Fund Factor To Find A Given F A/F 1.0000 0.4651 0.2880 0.2003 0.1483 0.1142 0.0904 0.0729 0.0596 0.0493 Capital Recovery Factor To Find A Given P A/P 1.1500 0.6151 0.4380 0.3503 0.2983 0.2642 0.2404 0.2229 0.2096 0.1993
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