Chapter 7: managing flow variability: safety inventory 7.1 Objective In the previous chapter on inventory‚ we focused on economies of scale as the major driver for inventory. The purpose of this chapter is to introduce the notion of safety inventory as a buffer against stochastic variability in supply / demand and discuss various levers for reducing it. The chapter is covered over two classes each of duration 100 minutes. In the first class‚ we first motivate the need for forecasting as a way
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evening before discussion Be prepared to discuss the case in class (your answers‚ your analysis‚ etc.) 1 Valuation - Use NPV approach How to make investment decisions: 1. Estimate (expected) cash flows in each time period 2. Choose an appropriate discount rate 3. Use discounted cash flow analysis to calculate NPV 4. Make decision that maximizes NPV Fundamental principle: V(A+B)>V(A)+V(B) Value driver:1)Eliminate overhead 3) Leveragen brom dname Pay its=D(P)(P-VC)-FC V(Pinkerton after)+V(CPP
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Name : ___KERIE THAM____________ ( 22 ) Class: __4/8__ Date: ___24/03___ Topic: Energy Flow‚ Food Chains & Food Webs Multiple Choice Questions (10 Marks) Write your answers in the boxes below: 1 2 3 4 5 6 7 8 9 10 B B C C A A A D B B 1 Which of the following describes the flow of energy in an ecosystem? A heat energy chemical energy light energy B heat energy light energy chemical energy C light energy chemical energy heat
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Week 1-Discussion 1-Circular Flow Diagram To first explain how the circular flow diagram relates to the current economic situation‚ one must realize that the two‚ three‚ and four sector models no longer apply to the United States any more. Only the five sector model currently applies. The five sector model of the circular flow of income is a more realistic representation of the economy and has a more definitive look as to what and how economics really is in the world. In the more simplistic two
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Pipe Flow Experiment Purpose The purpose of the experiment is providing an opportunity to students of experience to familiarize with some key aspects of fluid flow in pipe‚ notably friction losses and verify theory. In this experiment‚ required equipment are a water tank‚ piezometric tubes‚ pump‚ a stop watch‚ empty bucket and a digital weight scale. By operating the pump to keep the water is full in the water
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Draw and label the circular flow model and use it to answer the following: [pic] The circular flow can be explained very easily with a simple formula. GDP (gross domestic product) = C + I + G + X – Z= = C + S +T – B In here C is the consumption‚ I is investments‚ G – government spending‚ S – savings. On the other hand X is export‚ Z is imports T is for taxes and B is the benefits. The circulars flow shows the way how real recourses and payments flow between organizations/firms and
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FLOW INDUCED VIBRATIONS IN PIPES‚ A FINITE ELEMENT APPROACH IVAN GRANT Bachelor of Science in Mechanical Engineering Nagpur University Nagpur‚ India June‚ 2006 submitted in partial fulfillment of requirements for the degree MASTERS OF SCIENCE IN MECHANICAL ENGINEERING at the CLEVELAND STATE UNIVERSITY May‚ 2010 This thesis has been approved for the department of MECHANICAL ENGINEERING and the College of Graduate Studies by: Thesis Chairperson‚ Majid Rashidi‚ Ph.D. Department & Date
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Flow Measuring (Short Report) Student Name: XXX Group Members: XXX School of Engineering Taylor’s University Date of Experiment: | Report due date: | Report submission date: | Checked by: | Item/marks | | Format/10 | | Abstract and Introduction/10 | | Figures and Diagrams/15 | | Materials and Method/10 | | Results Discussions/45 | | References/10 | | Total | | Malaysia 14 May 2013 Table of Contents ABSTRACT
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words‚ 4 journal articles + three other cited works Intro/Background: The state of flow happens under very specific conditions - when we encounter a challenge that is testing for our skills‚ and yet our skills and capacities are such that it is just about possible to meet this challenge. So both the challenge and the skills are at high levels‚ stretching us almost to the limit. Activities that lead to a flow experience are called autotelic (from Greek: auto=self‚ telos=goal)‚ because they are
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