Engineering Economics Solved Problems Pdf
Age n beginning balance deposit interest ending balance 4 0 0.00 0 0.00 0.00 5 1 0.00 100 0.00 100.00 6 2 100.00 100 6.50 206.50 7 3 206.50 100 13.42 319.92. Economic Solutions to Environmental Problems 07970617 ri,F 6th March 2009 Here I consider some proposed economic solutions to mankind's most pressing environmental problem - climate change (Solomon et al., 2007). The possi-ble solutions mentioned here all give weight to the tragedy of the commons. Engineering Economy Review. 2 Main concepts n Models are approximations. Suggestions for solving problems n Lookup unfamiliar terms in the index n Draw cash flow diagrams n Identify P, A, F, i n Be flexible in using equations and tables n Check with alternate methods. 4 Cash flows n Cash flows describe. N Economic consequence beyond. Engineering Economy Lectures-solved examples and problems -Introduction. Download full-text PDF Read full-text. In all calculations of economics and engineering to be introduced. Many practice problems are available in the textbooks for the economics section of the course. Question 1 A small aerospace company is evaluating two alternatives: the purchase of an automatically fed machine or a manually fed machine. Solution manual solutions to end-of-chapter problems engineering economy, 7th edition leland blank and anthony tarquin chapter foundations of engineering. Sign in Register; Hide. 169018566 Engineering Economy 7th Edition Solution Manual Blank Tarquin Solution for Engineering Economy 7th Edition.
Windows 8.1 for android apk free download. Engineering economics, previously known as engineering economy, is a subset of economics concerned with the use and application of economic principles in the analysis of engineering decisions.
These are questions from previous years' exams and midterms. They do not reflect the questions I will ask, but should be suitable for practice. Many practice problems are available in the textbooks for the economics section of the course.
- Question 1
- A small aerospace company is evaluating two alternatives: the purchase of an automatically fed machine or a manually fed machine. All projects in the company are expected to return at least 10% (before tax). The auto-fed machine has an initial cost of $23,000, an estimated salvage value of $4000 and a predicted life of ten years. The expected production rate is 8 tons per hour, and the operating costs are $12 per hour. The annual maintenance cost is expected to be $3500.
- The manually fed machine has a purchase price of $8000, $0 salvage value, a 5-year life and a production rate 6 tons per hour. The operating costs are $24 per hour, and the annual maintenance cost is $1500. Some additional information:
- Both machines produce product using the same feed material and energy, and they both produce products with the same value.
- There is no delay between ordering the machine and placing it in operation.
- We assume that the production (ton/year) will be the same every year
- The project has a ten-year life.
- How many tons per year must be produced in order to justify the higher purchase cost of the auto-fed machine? You may analyze this problem using a before tax approach (without considering taxes or depreciation).
- Question 2
- Generally, straight-line depreciation is more favourable to the company than double declining balance. Answer this question and concisely explain your answer.
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- Question 3
- What are typical critical values for Payback Time (PT), Return on Original Investment (ROI), and Discounted Cash Flow (DCF). The critical values define the boundary between an attractive and unattractive project.
- A personal computer
- Land for a plant
- Laboratory glassware with a life of 9 months
- Liquid inventory needed to start up and operate a chemical plant
- A brief explanation/definition
- One advantage
- One disadvantage
- Explain briefly how each measure is used to decide whether to invest or not. You must give a typical threshold value.
- Question 6
- Describe the key characteristics of costs that can be depreciated.
- Explain how you determine the rate with which a specific cost is depreciated.
- Question 7
- Estimate the current Total Module cost to install a mixer-settler unit with six stages including interconnecting piping and pumps. The aqueous to oil ratio A:O is 1:1. The flow of aqueous feed to each unit is 9 L/s. All the units are to be rubber lined. The cost is to include nozzles and internals. The costs of tankage and crude removal are excluded.
Engineering Economics Solved Problems Pdf Example
- Question 8
- Many questions on the Safety topic in the course are available in the chapter written by Dr. Thomas Marlin, available on the course website.
- Question 9
- Final exam, 2003
- Analyzer capital cost including installation = $20,000:* Analyzer maintenance cost = $4000/year
- Benefit due to reduced fuel cost = $8500/year
- You can depreciate the analyzer over a 5-year life using the declining balance method. The analyzer has an expected serviceable life of 10 years without replacement.
- The boiler will be operated for the next 8 years, after which it will be shutdown permanently.
- The company is located in Ontario, Canada, and is profitable and expects to be so for all future years.
- It is January 2, 2004. If your analysis concludes that the project is financially attractive, the equipment can be installed and put in service immediately (the operators are available and the equipment is in stock at the local suppliers).
- Note, most (16) points will be given for a clear, correct formulation of the problem. The calculations should be deferred until the end of the exam, when you are sure that you have completed the other questions.
- At least four hypotheses for the cause of the trouble.
- At least four actions that would be useful in eliminating incorrect hypotheses and reducing to one hypothesis. These should be clearly stated and presented in the order you would request them in the plant.
- An explanation of how you would use the feedback plant data for each action. For example, 'If ___ and ___ are at their normal values, then, I would conclude the hypothesis #2 is disproved because ______'
- One atmosphere is equivalent to about 10 meters of water (33 feet)
- Trays in a distillation column are usually 1 foot apart (30cm)
- The figure shows that tower C-8 must be a minimum of 3m above ground level. However, no pump is shown in the line from the bottom of C-8 to C-9. Is this a mistake?
- Tower C-9 is expected to operate at many different production rates, product purities, ambient conditions, etc. Describe the operating conditions that you would use to 'size' the exchanger used as the heat exchanger (E-28). By 'size', we mean calculating the area for heat transfer. Be specific about the operating conditions. You do not have to give numeric values, but you can explain the extreme value (maximum or minimum) that you select for each variable and why.
- What is the purpose of measuring differential pressures along a distillation column?
- A colleague suggests that the safety relief valve at the top of C-8 (PSV-1) be replaced with a burst diaphragm. What is your response and why?
Engineering Economics Solved Problems Pdf Solutions
- Sarah, an electrical engineer (2 years at McChem Inc.)
- Ken, a chemical engineer (32 years);
- Phil, process operator (15 years of operating experience and now shift supervisor);
- Xionan, an operator;
- Danielle, Union representative
- Sue, chief engineer.
- Question 13 (troubleshooting)
- Stearine is blended in a 15-ton tank to obtain uniformity of product and to bring it to a uniform temperature 2 to 3K above its freezing point. Both steps make downstream processing easy and contributes to good product quality. The blender handles 20 tons every 24 hours. Specification grade stearine sells for 16 cents per pound, whereas stearine that is off specification is worth nothing. A sketch of the blender is given in the figure below.
Engineering Economics Solved Problems Pdf
- The define step.
- Give at least four hypotheses for the cause of the trouble.
- Give at least four diagnostic actions that would be useful in eliminating incorrect hypotheses and reducing to one correct hypothesis. Your actions should be clearly stated and numbered in the order you would perform them in the plant. Explain which hypotheses are tested with each action.
- Question 14 (ethics)
- Plenty of practice problems available here.