financial measures in this role. In recent years‚ however‚ there has been increasing recognition that financial measures alone will not provide managers with sufficient information to manage a business effectively. Non-financial measures The balanced scorecard 323 must also be used in order to gain a deeper understanding of the business and to achieve the objectives of the business‚ including the financial objectives. Financial measures portray various aspects of business achievement (for ex
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The following paper presents a balanced scorecard for the supply chain management in a hospital. Hospitals strive to operate efficiently while providing the best patient care. By managing the supply chain strategically‚ hospitals can save costs‚ provide better patient care‚ better serve the demands of professional staff and also maintain a sound relationship with its suppliers. According to my understanding‚ the main goal of the hospital that I previously worked was not profitability‚ but to provide
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Module: Supply Chain Management Exercise: Balanced Scorecard Session 4: Supply Chain Performance Management Instructor: Perry Davidson Candidate: Meg (Hongman) Liang Date: Oct 7th‚ 2013 1. State your organization’s supply chain strategy‚ e.g.‚ “to provide customerwith high level of service while contributing to corporate profitability.” The company’s supply chain strategy is “to meet customer needs and advance our technology leadership while creating value for our customers
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| | | | |Topic |The Scope of Hydro Power in India | | | | |Paper
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requirements of the world including India are increasing at alarming rate and the power demand has been running ahead of supply. It is also now widely recognized that the fossil fuels and other conventional resources‚ presently being used for generation of electrical energy‚ may not be either sufficient or suitable to keep pace with ever increasing demand of the electrical energy of the world. Also generation of electrical power by coal based steam power plants or nuclear power plants causes’ pollution. The
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Hydro Electric Power Plant in Tamil Nadu Amaravathi Dam at Amaravathinagar‚ 25 km south on SH 17 from Udumalpet‚ is located in Indira Gandhi Wildlife Sanctuary in Coimbatore district‚Tamil Nadu‚ India. The 9.31 km²‚ 33.53 m deep[1] Amaravathi Reservoir was created by this steep dam. It was built primarily for irrigation and flood control and now also has 4 megawatts of electric generating capacity installed. It is notable for the significant population of Mugger Crocodiles living in its reservoir
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WOULD BE MOST USEFUL AND DESIRABLE FOR INDIA AND WHY? Run of the river with pondage would be the best suited option in India because * Operational‚ running and maintenance costs are low compared to other schemes of hydroelectricity. * It is a clean‚ pollution free and eco-friendly source of energy. * It is the only source of electricity generation in hilly and remote‚ inaccessible areas where generation from other sources or transmission of power over long distances would not be feasible
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capacity and 60 % of Nepal’s population is still deprived of electricity. It is fascinating to note that Nepal’s start in 1911 in the hydropower generation almost dates back to a century. As a cheap renewable source of energy with negligible environments impacts‚ small hydropower has an important role to play in Nepal’s future energy supply. Accordingly‚ micro-hydro system is becoming increasingly popular as an energy source in rural Nepal. Use of environmental friendly technologies and implementation of
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The development of the Balanced Scorecard as a strategic management tool 2GC Conference Paper Ian Cobbold and Gavin Lawrie Presented at PMA Conference‚ Boston‚ USA‚ May 2002 © 2003 2GC Ltd. All rights reserved. This document is protected under copyright by 2GC Ltd. The following terms and conditions apply to its use: Photocopying - single photocopies may be made for personal use as allowed by national copyright laws. Permission from 2GC and payment of a fee is required for all other photocopying
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Power: Hydro power is created by capturing the energy of falling water. The following is the basic calculation for determining the hydropower potential of a given site: kW = 9.8 Q H g where Q = flow (m3/sec)‚ H = height (m) and g = overall efficiency. Energy: Energy is the amount of power delivered over time‚ often expressed as kilowatt-hours (kWh). Average annual energy is calculated by multiplying the average annual usable flow by 8‚760‚ the number of hours in a year. Project Cost: Project
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