
Explore how economics allocates limited resources to meet unlimited wants and desires. Examine four factors of production: natural, human, physical, and organizational resources, and their role in evaluating business decisions.
Explore macroeconomics and microeconomics, including investment, inflation, and consumer behavior, and learn how engineering economics evaluates long-term project profitability and tradeoffs.
Explore the theory and laws of demand and supply, and examine how price, quantity, and shifts in supply and demand respond along curves to factors like technology, taxes, and income.
Explore how supply and demand intersect to establish market equilibrium, creating surpluses or shortages, and examine price elasticity of demand—elastic vs inelastic—and its impact on total revenue.
Explore market structures—perfect competition, monopoly, monopolistic competition, and oligopoly—and learn about sole proprietorship, partnership, and corporation with their advantages and disadvantages.
Explore the time value of money by comparing simple and compound interest, and learn to diagram cash flows to evaluate capital, investments, and project returns.
Explore annuity and deferred annuity concepts, solve problems with uniform cash flows and gradients, and compute present and future values for business project evaluation.
Learn to solve gradient problems by converting gradient cash flows into an equivalent uniform series with interest. Use cash flow diagrams and annuity methods to compute present or future values.
Explore nominal versus effective interest rates, and how compounding frequency and time value of money shape APR and APY. Learn to identify nominal and effective rates and convert between them.
Explore how nominal and effective interest rates relate through compounding frequency and time periods. Solve problems using annual rates, present value, and future value under different compounding schedules.
Examine how payment period and compounding period interact, convert nominal to effective rates, and compare strategies to identify the lowest effective rate across monthly, quarterly, and semi-annual schedules.
Learn to compute the effective interest rate for any time, handle quarterly compounding, evaluate future value and cash flows, and assess financial effectiveness for business projects.
Apply the present worth and future worth methods to assess project profitability using the hurdle rate and cash flows.
learn to evaluate single and multiple projects using the annual worth method, converting investments to annuities and salvage values to annuities to judge economic attractiveness.
Evaluate mutually exclusive business alternatives by analyzing cash flows, reinvestment assumptions, present and future value, and bw method to select the preferred project.
Learn how to model linear programming, define objective functions and constraints, and optimize resource allocation to maximize profit or minimize costs, with graphical and mathematical methods.
Learn how to formulate a two-product linear programming model with two raw materials, maximizing profit under material and demand constraints, and solve it graphically to find the optimal production mix.
Understand payback and discounted payback period of any business, including how to handle uneven cash flows, time value of money, and present-value calculations using a discount rate.
Learn to apply the internal rate of return (IRR) using the discounted cash flow method to evaluate feasibility, identify the rate that yields net present value zero, and compare projects.
Compare mutually exclusive projects, like Typekit and Tybee, using incremental cash flow, compute IRR, and decide by evaluating reinvestment cycles, salvage values, and present value.
Apply replacement decision analysis to compare economic life concepts and life types. Use present worth methods to decide whether to replace an asset like a pressure vessel at 20% MARR.
Use the estimated uniform annual cost (EUAC) to perform replacement analysis. Compare keeping the existing pump with buying a new one over nine years, selecting the option with lower EUAC.
Determine the economic life of a new asset by balancing present worth and equivalent uniform annual cost, considering maintenance and operating cost gradients to minimize EUAC.
Explore depreciation concepts for tangible and intangible property, define cost basis and book value, and compare straight-line, sum-of-years-digits, and declining balance methods with examples.
Explore depreciation concepts by comparing straight-line, sum-of-digits, and declining balance methods, illustrate book value and salvage value calculations, and preview the modified accelerated cost recovery system (macrs).
Explore depreciation concepts, including physical and functional depreciation, and apply MACRS using general and alternative systems, learning asset classes, recovery periods, and methods like straight-line and declining balance.
Define cost and classify it into manufacturing, marketing, administrative, and financing costs. Distinguish direct and indirect materials and labor, and explain factory overhead as a key element of manufacturing cost.
Define prime cost as material cost plus direct labor, and conversion cost as direct labor plus factory overhead; summarize bottom-up/top-down costing with total revenue function, demand, and break-even concepts.
Explore how fixed costs and variable costs shape total revenue and total cost to determine profit, break-even points, and the optimal demand quantity for maximum profit.
Learn to evaluate public projects using conventional and modified benefit-cost analysis, applying benefit-cost ratios to cost, revenue, and depreciation concepts with practical airport extension example.
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. As a discipline, it is focused on the branch of economics known as microeconomics in that it studies the behavior of individuals and firms in making decisions regarding the allocation of limited resources. Thus, it focuses on the decision-making process, its context and the environment
As a discipline though, it is closely related to others such as statistics, mathematics, and cost accounting. It draws upon the logical framework of economics but adds to that the analytical power of mathematics and statistics
Engineers seek solutions to problems, and along with the technical aspects, the economic viability of each potential solution is normally considered from a specific viewpoint that reflects its economic utility to a constituency. Fundamentally, engineering economics involves formulating, estimating, and evaluating the economic outcomes when alternatives to accomplish a defined purpose are available.
Since engineering is an important part of the manufacturing sector of the economy, engineering industrial economics is an important part of industrial or business economics. For this reason, the major courses that are covered in this course are:
The economics of the management, operation, and growth and profitability of engineering firms;
Macro-level engineering economic trends and issues;
Engineering product markets and demand influences; and
The development, marketing, and financing of new engineering technologies and products.
This Course Includes the following topics.
Introduction: Engineering economy defined, measures of financial effectiveness, non-monetary factors and multiple objectives. Principles of engineering economy.
The Economic Environment: Consumer and producer goods, measures of economic worth. price, supply, & demand relationship. production. factors of production laws of return.
Cost Concepts & Analysis: Sunk & opportunity costs. fixed, variable, and incremental costs, recurring & nonrecurring costs. direct, indirect. and overhead costs, standard costs. Break-even analysis, unit cost of production, cost-benefit analysis, feasibility studies, value analysis in designing & purchasing.
Time Value of Money: Simple interest, compound interest, cash flow diagrams, interest formulas, nominal versus effective interest rate, continuous compounding.
Depreciation and Depletion: Purpose of depreciation, types of depreciation, economic life and what can be depreciated?
Comparing Alternatives: Present economy, selection among machines, materials, processes, and designs, payback period method, present worth method, uniform annual cost method, rate of return method, alternatives having identical lives, alternatives having different lives.
Linear Programming: Mathematical statement of linear programming problems graphic solution. Simplex method and duality problems.
RECOMMENDED BOOKS
(01) Engineering Economics by William G. Sullivan & James A. Bontadelli
(02) Operational Research: An Introduction by Hamdy A Taha
COURSE OUTLINE OF THIS COURSE IN DETAIL
Introduction of Economics
Introduction to Economics and Difference between Wants and Desires
Introduction to Economics
Difference between Want and Desires
Do resources fulfill wants or desires?
Macro and Micro Economics, Engineering Economics and Economic Behavior
Two Dimensions of Economics
Macro Economics
Micro Economics
Engineering Economics
Economic Environment/Behaviour
Classification of Consumer and Producer Goods
Theory and Laws of Demand and Supply
Theory of Demand and Supply
Law of Supply
Determination of Supply
Shifts in Supply
Law of Demand
Demand Schedule or Demand Curve
Determination of Demand
Shifts in Demand
Supply Function/Equation
Demand Function/Equation
Understanding the Market Equilibrium and Elasticity concepts in Economics
Market Equilibrium
Equilibrium’s Mathematical Representation
Price Elasticity of Demand
Elasticity and Revenue
Special Cases of Elasticity
Market Structure and Types of Businesses
Market Structure
Types of Businesses
Understanding the Time Value of Money
Understand Simple and Compound Interest with Problems and Cash Flow Diagramming
Simple Interest
Compound Interest
Simple vs. Compound Interest
Notation and Cash Flows Diagram
Cash Flow Diagraming
Present and Future Values of Single Cash Flow
Discrete Cash Flow Examples Illustrating Equivalence
Present Equivalent of Future Amount of Money
Solving Problem related to Time Value of Money
Annuity and Deferred Annuity and Solving Example Problems related to them
Annuity
Relating a Uniform Series (Annuity) to its Present and Future Equivalence
Present Equivalent of Annuity
Solving Problems Related to the Annuity
Deferred Annuities (Uniform Series)
Present Equivalent of Deferred Annuity
Solving Problems related to Present Equivalent of Deferred Annuity
Uniform Arithmetic Gradient of Cash Flow
Gradient Problem and using Gradient Conversion for Solving Problems
Gradient Problem
Using Gradient Conversion Factor for solving Problems
Nominal and Effective Interest Rate and Concepts of APR and APY
Nominal and Effective Interest Rates
Concept of APR (Annual Percentage Rate) and APY (Annual Percentage Yield)
Time-based Units (Interest Rate Statement)
Solving Problems related to Nominal and Effective Interest Rates
Solving Problems related to Nominal and Effective Interest Rates
Derivation of Effective Annual Interest Rate
Equivalence Relation: Payment Period and Compounding Period
Effective Interest rate of any time and Financial Effectiveness and Efficiency
Effective Interest rate for any time period
Equivalence Relation (PP<CP)
Financial Effectiveness and Efficiency
Evaluating an Engineering Project (Comparison and Selection of Alternatives)
Taking Decision on the Basis of Present and the Future Worth Method
The Present worth Method
The decision of PW Method
Relation between i & PW
Find that the Project is Economically Justified?
The Future worth Method
Taking Decision on the Basis of Annual Worth Method
The Annual worth Method
Comparing the Business Alternatives for taking the Decision
Comparing Alternative Businesses
Solving Problems related to Present worth analysis
Solving Problems related to Future worth analysis
Linear Programming
Objective Functions, Constrains and Main Elements of Linear Programming
Operations Research
Objective Functions and Constraints of Linear Programming
Main Elements of Linear Programming
The Reddy Mikks Company Model
Payback Period of any Investment
Understand Payback and Discounted Payback Period of any Business
Case 1 : For Even Cash Flow
Case 2: For Uneven Cash Flow
Solving Problems related to the Payback Period (Even and Uneven Cash Flows)
Discounted Payback Period
Internal Rate of Return and Solving Problems related to it
Internal Rate of Return
Solving Problems Related to Internal rate of Return
Understand about Incremental Cash Flow and Mutually Exclusive Project Analysis
Incremental Cash Flow
Mutually Exclusive Project Analysis
Replacement Decision Analysis and Lives of Asset
Replacement Decision Analysis
Type of Lives of Asset
1. Economic Life
2. Ownership Life
3. Physical Life
4. Useful Life
Replacement Analysis Using PW (Present worth Analysis)
Replacement Analysis using Estimated Uniform Annual Cost (EUAC)
Solving Problems related to EUAC for Replacement Analysis
Understand about the Economic Life of New Asset
Depreciation
Deprecation of Tangible and Intangible Property and Methods of Deprecation
Deprecation of Tangible and Intangible Property
Types of Depreciation (Normal and Monetary)
Methods of Deprecation
1. Straight Line (SL) Method
2. Sum of the Year Digit Method
3. Declining Balance Method
4. Double Declining Balance
Modified Accelerated Cost Recovery (MACRS)
Declining Balance with switch over Straight Line Method
Modified Accelerated Cost Recovery (MACRS)
Solving Problems related to Depreciation and MACRS
Cost Concept in Economics
Concepts of Cost, Volume and Break-Even Point for any Start-up Business
What is meant by Cost?
Elements of the Product
Prime Cost vs Conversion Cost , Fixed Cost vs Variable Cost and Types of Cost
Prime Cost vs Conversion Cost
Fixed Cost vs Variable Cost
Types of Cost
· Differential Cost
· Opportunity Cost
· Sunk Cost
· Standard/Average/Budgeted Cost
· Controllable Cost
· Uncontrollable Cost
Understanding Curve of Demand, Supply and Break-Even Point for Profit and Loss
Concept of Cost, Volume, and Break-Even Point
Understanding about Break-Even Point
Conditions for the Profit and Loss in the Business
The curve of Demand, Supply and Break-Even Point for Determining Conditions for the Profit and Loss
Solving Problems related to the Topic
Evaluating Projects with Benefit-Cost Ratio Method and Dis Benefits
Evaluating Projects with Benefit-Cost Ratio Method
Using Conventional and Modified Approaches of Present Worth
Dis benefits of Benefits Cost Ratio Method