consolidated edison company of new york

Course 2, Version 2: Same as Version 1, in addition; students will be able to: demonstrate a basic understanding of the characteristics of alternating-current circuits and the devices contained in the circuits; describe the methods for generation of alternating-current and related terminology; describe self-induction and mutual induction; describe inductive reactance and the relationship between voltage and current in inductive circuits; use vectors to show the voltage and current relationship in an AC series circuit; describe the current-voltage relationship in an AC parallel circuit containing resistance and capacitance; and describe the concepts associated with power, power factor, and power correction factor in AC circuits. *NOTE: An earlier version of this course, dating from January 1983 to June 1986, has been recommended for credit. Laboratory exercises, using supplied schematics and wiring diagrams, emphasize the installation, maintenance, testing, troubleshooting of these devices. Course 1 and 2, Version 1, 2, and 3: Topics include: safe operation of oxy-acetylene equipment and accessories; flame cutting techniques; preparation of joints for welding; types of boilers; causes and types of tube failure; repair methods; and boiler tube expanding procedures. NOTE: Course 1, 2, 3 and 4 must all be completed to receive credit (5/96 revalidation). AC and DC generators and connections; transformers (principles and connections); reactance; impedance; single and three-phase induction. In the lower division baccalaureate/associate degree category, 1 semester hour in Mechanical Engineering Technology (5/88) (5/93) (12/98) (1/04 revalidation). Laboratory exercises emphasize the installation, maintenance, and testing of these devices. Version 2: Upon successful completion of the course, students will be able to: discuss the interface between the Master and Remote Stations and explain the logic functions performed by the Remote Thermal Unit; state and explain the three functions of supervisory equipment; state the methods in which information may be input into  Summary of Component Control Status (SOCCS); explain the functional interface between the Master Station and the Remote Terminal Unit; and state the points that are monitored and/or controlled by the Remote Terminal Units and define the concepts of telemetering. Version 2: May 1987 - September 1992. », « Con Edison distributes natural gas to 1.1 million customers in Manhattan, the Bronx, Queens, and Westchester County, making us one of the larger gas distribution companies in the United States. Course 4: Principles of controls for AC and DC motors; protective devices; troubleshooting basics; motor types; starters, controls and overloads; dynamic and electronic breaking. Course 2: 16 hours (2 days). Course 2, Version 1 and 2: Major topics include: dielectrics; insulation testing; dielectric proof testing; specification review; testing procedures and safety rules; work permits and test permits. Version 2: April 1996 - January 2009. Course 1, 2, 3, and 4: Upon successful completion of the course, students will be able to: explain basic principles of electricity; perform electrical circuit calculations; following schematics, wire, operate, and test electrical circuits, including motors and controls. The messages remind customers to be prepared and to report an outage by simply replying OUT to the text. Course 1, Version 4: December 2003 - Present. Course 1: Topics include: Ohm’s law; series, parallel, series/parallel circuits; power and energy; batteries; magnetism, electromagnetism, generation of EMF, and DC motor principles; types and applications of electrical instruments; safety. The energy company cautions everyone to stay away from downed wires. Version 1, 2, and 3: In the lower division baccalaureate/associate degree category, 2 semester hours in Electrical Power Technology or Industrial Technology (4/91) (5/96 revalidation) (8/01 revalidation) (8/06 revalidation) (10/14 revalidation) (9/19 revalidation). If you’ve recently registered, please log in using your email address. * Version 3: October 1992 - May 2002. L'entrepris… Course 1: Major topics include: safe work practices and procedures; introduction to system protection; zones of protection; types of faults and their causes; types of relays; instrument  transformers; relay device numbers and symbols; relay drawings and nameplates; relay construction and operating principles; and relay trip circuitry. Please consult the 1992 edition for further information. Major topics include: automatic controls; physical laws applying to pneumatic instrumentation, static fluids, dynamic fluids, and the conversion of units; operation of pneumatic controllers including the percentage gauges, differential pressure to pressure transmitter, and proportional plus reset (two mode) controller; transferring a process from automatic to manual operation and reverse; calibration, and operation of a closed loop negative feedback control system; operation of pneumatic control simulators; safety practices. Version 4: In the lower division baccalaureate/associate degree category, 1 semester hour in Marine/Mechanical Technology or Power Plant Technology (8/02 revalidation) (9/07 revalidation) (3/16 revalidation). Version 1: In the lower division baccalaureate/associate degree category, 1 semester hour in Engineering Technology (8/02) (9/07 revalidation) (10/14 revalidation). Course 1 and 2, Version 1, 2, and 3 under new title: Upon sucessful completion of the course, students will be able to explain the theory and function of protective devices in power plant operation. Electrical Fundamentals (PG-010), 2. Boiler Tube Repair (PG-043), Formerly DC Fundamentals (TLC-1010) and Formerly AC Fundamentals (TLC-1011), Formerly Basic Power Plant Operator (PS-001 or PG-001), Formerly Rebuilding Centrifugal Pumps (FMM-0307), also (PG040), Formerly Control Room Procedures (PG-004, PG-004-1, PS-004B or PG-004B), Formerly Alignment - Basic (FMM-0301); also Coupling Alignment  ([PG-026), Formerly High Pressure Air and Gas Systems (CSM-2030); also (CS203-0), Formerly High Voltage Circuit Breakers CSO-3020); also (CS302-0), Formerly Intermediate Electrical/Brushgear (TLC-1040); also Intermediate Electrical (TLC-1040), and Formerly Motor/Motor Controls (TLC-1030), Formerly Intermediate Performance (PG-059-2), Formerly Intermediate Power Plant Operator (PS-002 or PG-002), Formerly Investigative Techniques I (CS106-0), Formerly Investigative Techniques II (CS204-0), Formerly Low and High Voltage Testing (CS301-0), Formerly (CS102-0) and Formerly Basic Tools (FMG-0103) or Hand and Power Tools (CS101-0) or (CSG1010), Formerly Power Plant Fluid Mechanics (PG-090), Formerly 1. For further information, please refer to exhibit that begins with the title DC Fundamentals in the Inactive Learning Experiences section. Course 3: Grinding wheels; tool bits; lathe operations; thread cutting; knurling; boring bars; shop safety practices. Version 1: Upon successful completion of the course, students will be able to: select, calibrate, install, and safely operate appropriate standard test equipment for industrial applications, such as electrical properties, flow, temperature, and pressure. Course 2, Version 1: 16 hours (2 days). Version 1: April 2002 -  August 2019. Version 3: March 1994 - July 2018. Strong winds can knock trees and branches onto power lines, causing customers to lose service. NOTE: Complete information on this course last appeared in the 1996 edition. Boiler Tube Repair (FMG-0113), Basic Electric for Substations (CSG-1012), 1. NOTE: Course 1 and 2 must both be completed to receive credit. Care should be taken to avoid awarding duplicate credit. Version 3: May 1987 - September 1997. Instrument and Control Intermediate Course (PS-053 or PG-053), Introduction to Microprocessors (FIC-0210), Introduction to Protective Relays (TLC-1000), Machine Shop I, II, III (FMG-0111, FMM-0304, FMM-0305), Power Plant Hazards/Work Permits and Operating Orders (FPE-0103), Test Equipment for I and C Technicians (FIC-0101), 1. Version 2: May 1990 - February 1994. Introduction to Protective Relays I and II (TLC-1000 and TLC-1001); also FIC-2060 Introduction to Protective Relays for I and C Technicians (PG-124) and Formerly 2. Il sera plus tard converti en studio d'enregistrement nommé "The Power Station", en raison de son affiliation passée avec Con Edison. Version 4 and 5: Upon successful completion of the course, students will be able to explain the primary principles of power plant design and describe the methods and techniques of power plant operation. Course 1 and Course 2, Version 4: In the lower division baccalaureate/associate degree, 4 semester hours as DC/AC Electrical Systems or Electromechanical, Mechanical, or General Technology (8/18 revalidation). Version 2: Students will be able to: define and describe the terminology and basic electrical theory associated with power distribution systems in general, and relay protection systems in particular; and safely install, maintain, test, and operate apparatus utilized on network systems. In the lower division baccalaureate/associate degree category OR in the upper division baccalaureate degree category, 2 semester hours in Thermal Sciences (5/88) (5/93 revalidation) (12/98 revalidation) (1/04 revalidation) (3/16 revalidation). Course 1, Version 2: October 1994 - December 2000. The phone number is (212) 460-8418. Course 1, Version 2: Topics include: safe work practices and procedures; introduction to system protection; zones of protection; types of faults and their causes; types of relays; instrument transformers; relay device numbers and symbols; relay drawings and nameplates; relay construction and operating principles; auxiliary and special purpose relays; relay trip circuitry; equipment misoperations and errors.

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