CITY DISTRIBUTION SYSTEM - The Contractor Sample Clauses

CITY DISTRIBUTION SYSTEM - The Contractor must respond to any defective City owned distribution system within ten (10) consecutive calendar days of receipt of the EIU generated work order or pick-up, and shall show on the work order details of the repair(s) made. If the Contractor is unable to make repairs on time, it must submit a work schedule acceptable to the Engineer and will be required to provide temporary wiring, as directed by the Engineer, pending permanent installation. The Contractor is obligated to perform tests, including fault finding without additional compensation, in lamppost bases, luminaires, junction boxes and control cabinets, in order to locate a fault. Compensation will be made for performing trouble shooting in High Voltage Systems. Failure to respond to perform a repair within time allowed may result in Liquidated Damages being assessed as described in 4.2.6.3.2.
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Related to CITY DISTRIBUTION SYSTEM - The Contractor

  • Distribution System The Transmission Provider's facilities and equipment used to transmit electricity to ultimate usage points such as homes and industries directly from nearby generators or from interchanges with higher voltage transmission networks which transport bulk power over longer distances. The voltage levels at which Distribution Systems operate differ among areas. Distribution Upgrades – The additions, modifications, and upgrades to the Transmission Provider's Distribution System at or beyond the Point of Interconnection to facilitate interconnection of the Small Generating Facility and render the transmission service necessary to effect the Interconnection Customer's wholesale sale of electricity in interstate commerce. Distribution Upgrades do not include Interconnection Facilities.

  • Unbundled Sub-Loop Concentration System (USLC 2.9.1 Where facilities permit and where necessary to comply with an effective Commission order, BellSouth will provide <<customer_name>> with the ability to concentrate its sub-loops onto multiple DS1s back to the BellSouth Central Office. The DS1s will then be terminated into <<customer_name>>’s collocation space. TR-008 and TR303 interface standards are available.

  • Unbundled Subloop Distribution (USLD) 2.8.2.1 The USLD facility is a dedicated transmission facility that BellSouth provides from an End User’s point of demarcation to a BellSouth cross-connect device. The BellSouth cross-connect device may be located within a remote terminal (RT) or a stand-alone cross-box in the field or in the equipment room of a building. The USLD media is a copper twisted pair that can be provisioned as a 2-wire or 4-wire facility. BellSouth will make available the following subloop distribution offerings where facilities exist: USLD – Voice Grade (USLD-VG) Unbundled Copper Subloop (UCSL) USLD – Intrabuilding Network Cable (USLD-INC (aka riser cable))

  • Reactive Power and Primary Frequency Response 9.6.1 Power Factor Design Criteria

  • COSTS DISTRIBUTED THROUGH COUNTYWIDE COST ALLOCATIONS The indirect overhead and support service costs listed in the Summary Schedule (attached) are formally approved as actual costs for fiscal year 2020-21, and as estimated costs for fiscal year 2022-23 on a “fixed with carry-forward” basis. These costs may be included as part of the county departments’ costs indicated effective July 1, 2022, for further allocation to federal grants and contracts performed by the respective county departments.

  • Sub-loop Elements 2.8.1 Where facilities permit, BellSouth shall offer access to its Unbundled Sub-Loop (USL) elements as specified herein.

  • Distribution Services The Distributor shall sell and repurchase Shares as set forth below, subject to the registration requirements of the 1933 Act and the rules and regulations thereunder, and the laws governing the sale of securities in the various states ("Blue Sky Laws"):

  • Primary Frequency Response Developer shall ensure the primary frequency response capability of its Large Generating Facility by installing, maintaining, and operating a functioning governor or equivalent controls. The term “functioning governor or equivalent controls” as used herein shall mean the required hardware and/or software that provides frequency responsive real power control with the ability to sense changes in system frequency and autonomously adjust the Large Generating Facility’s real power output in accordance with the droop and deadband parameters and in the direction needed to correct frequency deviations. Developer is required to install a governor or equivalent controls with the capability of operating: (1) with a maximum 5 percent droop ± 0.036 Hz deadband; or (2) in accordance with the relevant droop, deadband, and timely and sustained response settings from an approved Applicable Reliability Standard providing for equivalent or more stringent parameters. The droop characteristic shall be: (1) based on the nameplate capacity of the Large Generating Facility, and shall be linear in the range of frequencies between 59 and 61 Hz that are outside of the deadband parameter; or (2) based on an approved Applicable Reliability Standard providing for an equivalent or more stringent parameter. The deadband parameter shall be: the range of frequencies above and below nominal (60 Hz) in which the governor or equivalent controls is not expected to adjust the Large Generating Facility’s real power output in response to frequency deviations. The deadband shall be implemented: (1) without a step to the droop curve, that is, once the frequency deviation exceeds the deadband parameter, the expected change in the Large Generating Facility’s real power output in response to frequency deviations shall start from zero and then increase (for under-frequency deviations) or decrease (for over-frequency deviations) linearly in proportion to the magnitude of the frequency deviation; or (2) in accordance with an approved Applicable Reliability Standard providing for an equivalent or more stringent parameter. Developer shall notify NYISO that the primary frequency response capability of the Large Generating Facility has been tested and confirmed during commissioning. Once Developer has synchronized the Large Generating Facility with the New York State Transmission System, Developer shall operate the Large Generating Facility consistent with the provisions specified in Articles 9.5.5.1 and 9.5.5.2 of this Agreement. The primary frequency response requirements contained herein shall apply to both synchronous and non-synchronous Large Generating Facilities.

  • Please see the current Washtenaw Community College catalog for up-to-date program requirements Secondary / Post-Secondary Program Alignment Welding HIGH SCHOOL COURSE SEQUENCE 9th Grade 10th Grade 11th Grade 12th Grade English 9 Algebra I World History/Geography Biology World Language Phys Ed/Health English 10 Geometry U.S. History/Geography Physics or Chemistry World Language Visual/Performing/Applied Arts English 11 Algebra II Civics/Economics Welding English 12 Math Credit Science Credit Welding WASHTENAW COMMUNITY COLLEGE Welding Associate in Applied Science Semester 1 Math Elective(s)* 3 WAF 105 Introduction to Welding Processes 2 WAF 111 Oxy-fuel Welding 4 WAF 112 Shielded Metal Arc Welding 4 Semester Total 13 Semester 2 Speech Elective(s) 3 WAF 106 Blueprint Reading for Welders 3 WAF 123 Advanced Oxy-fuel Welding 4 WAF 124 Advanced Shielded Metal Arc Welding 4 Semester Total 14 Semester 3 Arts/Human. Elective(s) 3 Computer Lit. Elective(s) 3 WAF 215 Advanced Gas Tungsten Arc Welding 4 WAF 288 Gas Metal Arc Welding 4 Semester Total 14 Semester 4 WAF 200 Layout Theory Welding 3 WAF 210 Welding Metallurgy 3 Soc. Sci. Elective(s) 3 WAF 226 Specialized Welding Procedures 4 Semester Total 13 Semester 5 Nat. Sci. Elective(s) 4 WAF 227 Basic Fabrication 3 WAF 229 Shape Cutting Operations 3 Writing Elective(s) 3 Semester Total 13 Program Totals 67

  • Cost Responsibility for Interconnection Facilities and Distribution Upgrades 4.1 Interconnection Facilities 4.2 Distribution Upgrades

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