Details of the Project Sample Clauses

Details of the Project. (i) The barrage is located about 3 miles upstream of Hanuman Nagar town.
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Details of the Project. Provide information as to its requirements for the Project.
Details of the Project. The Project supports the Recipient in the modernization of the urban network infrastructure and in piloting an innovative renewable energy component. The purpose of the Project is to improve the electricity supply situation, safety and the framework conditions for the integration of electricity generation from renewable energy sources into the Xxxxxx Xxxxxxx Bay Municipal grid (Project objective). This is to contribute to the distribution and use of renewable energy sources and efficiency measures in order to sustainably improve the energy security of the country and to make economic growth climate-friendly. The criteria for reaching these objectives, the Project results and the required Project activities as well as the assumptions underlying the Project purpose and the Project results are contained in Annex 1. The design of the Project is based on the feasibility study dated 29th of April 2019, available to KfW and the Recipient and on the agreements made between KfW and the Recipient during the local Project appraisal and its results documented in the minutes of meeting dated 31st of May 2019. It is noted that the content of the feasibility study and the minutes is not contractually binding and is intended for reference purposes only. Accordingly, to the extent that any inconsistency may arise between the provisions of this Separate Agreement and that provided in the feasibility study and/or the minutes, the provisions of this Separate Agreement shall prevail. The Project activities financed from the Grant include three network projects (component 1), a Renewable Energy (RE) component (component 2) and an Implementation Consultant (TA component). Component 1 includes three network projects namely Mount Road 132 kV substation, Xxxx Road 6.6 kV network and Fifth Avenue 6.6 kV network. These three projects will be further supplemented by component 2, which includes a innovative RE component, for which 3 alternatives have been identified. The Implementation Consultant will support the preparation of the three network projects, and will assess technical considerations and will provide an assessment of the environmental and social implications of all phases of the Project. Furthermore, the Implementation Consultant will support choosing the appropriate alternative for component 2. The financed activities will be fully commercially operational from 2025 onwards.
Details of the Project. Pursuant to the terms of the Development Agreement, Xxxxxxx Government agreed to grant to the Company exclusive rights to (a) develop and construct a photovoltaic power plant of 50MW in Xxxxxxx County*( 微山縣), Jining City*( 濟寧市), Shandong Province, the PRC; and (b) operate and manage the Power Plant during the Operation Period.
Details of the Project. 2.1 Background information of TESB TESB was incorporated on 4 October 2011 under the Companies Act, 1965. Its registered office is at Xxxx 00-00, Xxxxx 30, Tower A, Vertical Business Xxxxx, Xxxxxx 0, Xxxxxxx Xxxxx, Xx. 0, Xxxxx Xxxxxxxx, 00000 Xxxxx Xxxxxx with its principal place of business at Suite 02-01, Level 2, Wisma Teras Eco, Xx.00, Xxxxx Xxxxx Xxxxxxx, Xxxxx xxxxxxx, 00000, Xxxxx Bahru. The principal business of TESB is construction and property development. The directors of TESB are Xx. Xxx Xx Xxx and Mr. Xxx Xxxx Xxxx. TESB is a wholly owned subsidiary of AB.
Details of the Project. The number of amputees world-wide is estimated to be 20 million, and for most amputees finding a well fitted prosthesis is far from easy. Traditional methods of design, manufacture and fitting of a prosthetic socket are typically carried out by “artisan” techniques but unfortunately often result in ill-fitting devices that make wearing a prosthesis almost intolerable for a large number of amputees. A prosthetic socket is a custom-made “cone” that connects the rest of the prosthesis (foot, shank and knee) to an amputee’s residual limb. Sockets generally need to be replaced once or twice a year. While many significant technological advances have been made with the design and manufacture of prosthetic components, such as electronic knee assemblies and feet, socket design has not kept up. Over the past 20 years a great deal of research has been undertaken to automate the process of socket design and manufacturing, but it has met with limited success. Most sockets continue to be created with hand-sculpted plaster moulds made by the Prosthetist or a technician hours or days after examining the amputee. The result is that, typically, one in four sockets are discarded because of their poor fit. Many prosthetists, (if not all), are frustrated by the lack of an objective method that would ensure an optimum fit of the socket. This ‘need’ for assistance instigated the advent of industrial sector technologies to be taken up in the field, even though these systems, in reality, lack the necessary ‘ingredient’ to allow the optimum socket to be produced. They merely attempt to replicate current practices in a digital manner (CAD-CAM systems), without taking into account the biomechanical or anatomical characteristics of the residual limb. The key element of the project is work done by Xx. Xxxxxxxx Xxxxxxx to improve the nature of the data used in socket modeling software. Finite element analysis has been used widely in a variety of applications, including prosthetics. But its prosthetics applications have suffered from the fact that only external boundary data and limited information on the nature of the internal tissue was provided. The results were not promising. By including far more data on the nature of the internal anatomy as well as, for the first time ever (to our knowledge) data on the bio-mechanical properties of the tissue to the FEA, a system can be created that enables prosthetists to build a socket that evenly distributes weight, provides enhanced comfort, an...
Details of the Project. Name of the Project : Establishment of Internet Data Center (IDC) Location : 1st, 2nd and 3rd floor of Telecommunications Station Building, Xxxxx Xxxxx Software City. Initial Investment Capital of the Project : (CONFIDENTIAL TREATMENT REQUESTED) Operation term of the Project : (CONFIDENTIAL TREATMENT REQUESTED) years from the date possession of the Location is delivered to Party A..
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Details of the Project. Name of the Project : Establishment of xxx.xxxx.xx Initial Total Investment Capital of the Project : US $ 1,000,000 (One Million US Dollars) Operation term of the Project : 50 (fifty) years from the date of this Agreement Progress of the Project : - Expected launch of commercial services on XXXX.XX: 3-4 months - Expected launch of social network: 7-9 months Main services of the Project : -News and Entertainment; -Online Business Directory; -Social Media; and -Online Advertising
Details of the Project. 2.1 Information on the Agreement Both MPay and MYTV agree to enter into the Agreement for the purpose of formally establishing and defining the respective rights and obligations with respect to the provisioning of the Services and the manner in which both the parties will manage and organise the respective scope of work, services and relationship in providing the Services to the customers. Leveraging on the access license obtained from MYTV Agreement, MPay has entered into a second agreement (“CoShip Agreement”) with CoShip Technology on 25 April 2019 to undertake and perform the design, assembly, integration, commissioning, testing, acceptance, completion, supply and delivery of the STB, the provision and performance of the Warranty Services, Support and Maintenance Services and all necessary and incidental works and services so that the STB is able to connect, interoperate, integrate or interface with MYTV System.
Details of the Project. The general layout of the barrage, the areas within afflux bank, flood embankments and the lines of communication are shown in the plan annexed to this agreement as Annexure A.
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