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    Ocean Carriers Case

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    take advantage of returns on investment in later years of vessels. The policy of 15 years is not maximizing the profits and returns of the investments. A more optimal policy can be identified to maximize the returns and profits – using the solver calculation the optimal policy tend to be the 19 years use of vessels. 3) Suppose Ocean Carriers pays fixed annual dues of $500‚000 to an association of ship owners that provides

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    cards using method number two? What is the cheapest option and how much profit will they make? Support your answer with calculations and/or a graph. Answer Break Even Analysis Option #1 Cost Formula   -     COST = $200 + $2Q = $200 + ($2/unit * 1000units) = $2200 Option #2 Cost Formula   -   COST = $500 + $1Q = $500 + ($1/unit * 1000units) = $1500 According to this calculation‚ the organization should utilize method #2 because the total cost $700 cheaper than method #1.   Make vs. Buy Decision

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    this mean for the firm? Deliverable: By Tuesday‚ November 26‚ 2013‚ submit the completed assignment to the W5: Assignment 2 Dropbox. Use a Microsoft Excel spreadsheet that illustrates your calculations. You may use the formulas embedded in Microsoft Excel and/or a financial calculator for these calculations. Name your document SU_FIN2030_W5_A2_part1_LastName_FirstInitial. Part Two: Final Project 4: Portfolio Return and Risk; Report and Presentation Part A: Portfolio Return and Risk

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    Drilling Formulas

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    Formulas Calculations for Drilling‚ Production Work-over Norton J. Lapeyrouse and and Formulas and Calculations CONTENTS Chapter 1 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15. 16. 17. 18. 19. Basic Formulas P. 3 Pressure Gradient Hydrostatic Pressure Converting Pressure into Mud Weight Specific Gravity Equivalent Circulating Density Maximum Allowable Mud Weight Pump Output Annular Velocity Capacity Formula Control Drilling Buoyancy Factor 12. Hydrostatic Pressure Decrease

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    Newtons Second Law

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    Data Analysis: ( a vs F data table‚ minimum of 7 rows of varied F ( a vs m data table‚ minimum of 7 rows of varied m ( sample calculation of F using mg which is derived using F = ma and Fg = mg ( sample calculation of mtotal ( sample calculation of F/m ( sample calculation of a using a=2t2/d which is derived using 1 to 3 of the equations of motion ( sample calculation of the %difference between a versus F/m ( a vs F/m plot which is titled‚ labeled and includes a best-fit line. ( use the slope

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    Optical Activity of Carvones Kyle Peterson Chem. 243a Matt Judd‚ Sec. 25 Date Performed: 10/29/03 Abstract: The objective of this experiment is to use Gas Chromatography to distinguish between two enantiomers of carvone from caraway oil and spearment oil and to find the 2 carvone’s optical activity as well as percent carvone in spearment and caraway oil. It was found that S-carvone had an optical activity of 0.0047 and R-carvone had an optical activity of 0.516 and that spearment oil is 59%

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    application 3.0 THEORY 3.1 In a statically indeterminate truss‚ static equilibriumalone cannot be used to calculated member force. If we were to try‚ we would find that there would be too many “unknowns” and we would not be able to complete the calculations. 3.2 Instead we will use a method know as the the flexibility method‚ which uses an idea know as strain energy. 3.3 The mathe‚atical approach to the flexibility method will be found in the most appropriate text books. Basically the flexibility

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    Name: Beatrice Yeo Zi Hui Lab Group: B1 Fume Hood Number: B4 Matriculation Number: A0102491R Email Address: a0102491@nus.edu.sg Date: 1st February 2013 CM1191 Experiment 1: Study of Solubility Equilibrium 1. Abstract The aim of this experiment is to determine the relationship between the solubility of potassium hydrogen tartrate (KHC4H4O6) and temperature. Titrate a known concentration of NaOH against a saturated solution of KHC4H4O6 at different temperatures to obtain the concentrations

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    geetha@tmu.ac.jp. ABSTRACT We present quantum-chemical calculations for the ground and some low-lying excited states of isolated LiCa and LiSr molecules using multi-state complete active space second-order perturbation theory (MS–CASPT2). The potential energy curves (PECs) and their corresponding spectroscopic constants‚ obtained at the spin-free (SF) and spin-orbit (SO) levels‚ agree well with available experimental values. Our SO–MS-CASPT2 calculation at the atomic limit (R = 100 a.u.) with the largest

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    Hello

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    in chemical reactions are described‚ and exothermic reactions and endothermic reactions are discussed in terms of bond energies - including calculations of energy transfers for GCSE/IGCSE/O Level and basic stuff for GCE Advanced Level AS students. Methods of obtained vales for energy changes in chemical reactions are described and how to do the calculations based on calorimeter experiment results. Also discussed are activation energies‚ reaction profiles‚ catalysts. If you are an A Level student

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