Nys Public Service Commission
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NYS Public Service Commission
Becoming bipartisan in the nineteen seventies, the New York State Public Service Commission is headed by up to five members. The NYS Public Service Commissions main goal is to provide and protect the water, electric, gas, and telecommunication utilities in the state. The department has been organized into twelve branches in order to more easily manage the massive task that it is required to work on.
The telecommunications branch of the NYS PSC controls everything from cable television, local and long distance phone service, and payphone service, to internet (data network) related communications such as cable internet, Digital Subscriber Lines, and dialup. The telecommunications branch is further divided into four sections: Intercarrier Operations and Market Analysis, Carrier Performance, Municipal Assistance, and Telecommunications Technology. The Intercarrier Operations and Market Analysis section is mainly responsible for the resolution of issues that may arise between multiple carriers or competing telephone companies. It also observes the overall growth in New York States telecommunications. The Carrier Performance section has the chief task of making sure that the service that is being supplied is of an acceptable quality. It also reviews the money that telephone companies spend on their buildings and equipment. The focus of the Municipal Assistance section is cable television. Its job is to help cities, towns, and villages by introducing franchises and resolving conflicts between multiple cable television companies. Finally, the Telecommunications Technology section has a unique role. It conducts field studies of telecommunications companies. It also evaluates them to make sure that theyre observing proper technical and safety standards.
One of the primary focuses of the New York State Public Service Commission is to ensure competition where it is available,
Dorell Wright And Earl Barron summary and response essay help
Life On The Dl
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MIAMI, March 3 – The high end condos, the fancy hotels, the private plane rides, the hussle-and-bussle of Miami. All those things were taken away from Dorell Wright and Earl Barron – momentarily. For two weeks the two HEAT youngsters got a glimpse at how life would be if they hadnt made it to the NBA. On January 3, Barron and Wright were assigned to play for the Florida Flame of the National Basketball Developmental League. And for that time, Wright and Barron were just like the thousands of basketball players who are working hard to live out their dreams of reaching the NBA.
Wright appeared in six games for the Flame, averaging 12.2 points, 3.8 rebounds and 1.8 assists in 20.7 minutes per game, while shooting 51.6 percent from the field. He had his best game of his stint when he recorded a team-high 32 points off the bench for the Flame, while shooting 15-for-22 from the field, and grabbed nine rebounds in 32 minutes on January 13 against the Roanoke Dazzle.
Barron also appeared in six games, starting in three contests. He averaged 17.0 points, 9.7 rebounds and 2.2 assists in 29.2 minutes per game, while shooting 51.2 percent from the field. In his last three games, all starts, he recorded consecutive double-doubles, scoring 23 points and grabbing 13 rebounds on January 13 vs. Roanoke, 25 points and 13 rebounds on January 15 vs. the Fayetteville Patriots and 22 points and 11 rebounds on January 16 vs. the Arkansas RimRockers.
But for Wright and Barron, trading the HEAT colors of black and red for the Flame colors of green and white, wasnt the only transition for the HEAT youngsters. From the minute they exited off I-75 and stepped foot in rural Fort Myers, the two quickly discovered theyre a long way from Miami.
The Initial Reaction
Dorell Wright: “I wasnt discouraged. I knew it wasnt the NBA, but I couldnt look at it as a
Radioactive Wastes And Production Of Borosilicate Glass nursing essay help: nursing essay help
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Nuclear Energy Radioactive wastes, must for the protection of mankind be stored or disposed in such a manner that isolation from the biosphere is assured until they have decayed to innocuous levels. If this is not done, the world could face severe physical problems to living species living on this planet. Some atoms can disintegrate spontaneously. As they do, they emit ionizing radiation. Atoms having this property are called radioactive. By far the greatest number of uses for radioactivity in Canada relate not to the fission, but to the decay of radioactive materials – radioisotopes. These are unstable atoms that emit energy for a period of time that varies with the isotope. During this active period, while the atoms are decaying to a stable state their energies can be used according to the kind of energy they emit. Since the mid 1900s radioactive wastes have been stored in different manners, but since several years new ways of disposing and storing these wastes have been developed so they may no longer be harmful. A very advantageous way of storing radioactive wastes is by a process called vitrification. Vitrification is a semi-continuous process that enables the following operations to be carried out with the same equipment: evaporation of the waste solution mixed with the borosilicate: any of several salts derived from both boric acid and silicic acid and found in certain minerals such as tourmaline. additives necessary
for the production of borosilicate glass, calcination and elaboration of the glass. These operations are carried out in a metallic pot that is heated in an induction furnace. The vitrification of one load of wastes comprises of the following stages. The first step is Feeding. In this step the vitrification receives a constant flow of mixture of wastes and of additives until it is 80% full of calcine. The feeding rate and heating power are adjusted so that an aqueous phase of several litres is permanently maintained at the surface of the pot. The second step is the Calcination and glass evaporation. In this step when the pot is practically full of calcine, the temperature is progressively increased up to 1100 to 1500 C and then is maintained for several hours so to allow the glass to elaborate. The third step is Glass casting. The glass is cast in a special container. The heating of the output of the vitrification pot causes the glass plug to melt, thus allowing the glass to flow into containers which are then transferred into the storage. Although part of the waste is transformed into a solid product there is still treatment of gaseous and liquid wastes. The gases that escape from the pot during feeding and calcination are collected and sent to ruthenium filters, condensers and scrubbing columns. The ruthenium filters consist of a bed of condensacate: product of condensation. glass pellets coated with ferrous oxide and maintained at a temperature of 500 C. In the treatment of liquid wastes, the condensates collected contain about 15% ruthenium. This is then concentrated in an evaporator where nitric acid is destroyed by formaldehyde so as to maintain low acidity. The concentration is then neutralized and enters the vitrification pot. Once the vitrification process is finished, the containers are stored in a storage pit. This pit has been designed so that the number of containers that may be stored is equivalent to nine years of production. Powerful ventilators provide air circulation to cool down glass. The glass produced has the advantage of being stored as solid rather than liquid. The advantages of the solids are that they have almost complete insolubility, chemical inertias, absence of volatile products and good radiation resistance. The ruthenium that escapes is absorbed by a filter. The amount of ruthenium likely to be released into the environment is minimal. Another method that is being used today to get rid of radioactive waste is the placement and self processing radioactive wastes in deep underground cavities. This is the disposing of toxic wastes by incorporating them into molten silicate rock, with low permeability. By this method, liquid wastes are injected into a deep underground cavity with mineral treatment and allowed to self-boil. The resulting steam is processed at ground level and recycled in a closed system. When waste addition is terminated, the chimney is allowed to boil dry. The heat generated by the radioactive wastes then melts the surrounding rock, thus dissolving the wastes. When waste and water addition stop, the cavity temperature would rise to the melting point of the rock. As the molten rock mass increases in size, so does the surface area. This results in a higher rate of conductive heat loss to the surrounding rock. Concurrently the heat production rate of radioactivity diminishes because of decay. When the heat loss rate exceeds that of input, the molten rock will begin to cool and solidify. Finally the rock refreezes, trapping the radioactivity in an insoluble rock matrix deep underground. The heat surrounding the radioactivity would prevent the intrusion of ground water. After all, the steam and vapour are no longer released. The outlet hole would be sealed. To go a little deeper into this concept, the treatment of the wastes before injection is very important. To avoid breakdown of the rock that constitutes the formation, the acidity of he wastes has to be reduced. It has been established experimentally that pH values of 6.5 to 9.5 are the best for all receiving formations. With such a pH range, breakdown of the formation rock and dissociation of the formation water are avoided. The stability of waste containing metal cations which become hydrolysed in acid can be guaranteed only by complexing agents which form water-soluble complexes with cations in the relevant pH range. The importance of complexing in the preparation of wastes increases because raising of the waste solution pH to neutrality, or slight alkalinity results in increased sorption by the formation rock of radioisotopes present in the form of free cations. The incorporation of such cations causes a pronounced change in their distribution between the liquid and solid phases and weakens the bonds between isotopes and formation rock. Now preparation of the formation is as equally important. To reduce the possibility of chemical interaction between the waste and the formation, the waste is first flushed with acid solutions. This operation removes the principal minerals likely to become involved in exchange reactions and the soluble rock particles, thereby creating a porous zone capable of accommodating the waste. In this case the equired acidity of the flushing solution is established experimentally, while the required amount of radial
Media Company And Marketing Strategies ccusa autobiographical essay help
Personal StatementEssay Preview: Personal StatementReport this essayBar Team MemberDear Sir or Madam,I am writing to express my interest in the position of a Bar Team Member in EUSA bar outletsadvertised on www.jobcentre.com. I feel certain that my qualifications and experience make me a strong candidate for the position.
I am a motivated and proactive postgraduate student of Social Anthropology at the University of Edinburgh. I have around 2 years extensive experience in administration and business environment. I have recently worked for one of the top Recruitment Agencies in the UK where I was responsible forgeneral administrative and clerical roles. The vacancy has enabled me to interact constantly with peoplewhich I think would be a huge advantage when working for EUSA Bar Outlets. Apart from that, I previously workedfor a marketing and media company, as a Marketing and Communication Executive where my duties involved,but were not limited to, conducting researches, creating marketing strategies, budget planning etc. Moreover, I possess excellent team working and organisational skills gained by different assignments at the University and at the workplace. I have also worked as a domestic assistant for NHS where I always had to maintain a high standard of person hygiene. Apart from that, I have around 1 year catering experience and therefore I would feel confident in preparing any sort of meal for clients.
I am keen on expanding my horizons by working for EUSA Bar Outlets.Thank you for your consideration.Yours faithfully,August 30, 2011Front of house Team MemberDear Sir or Madam,I am writing to express my interest in the position of a Front of house Team Memberat The EUS Aadvertised www.jobecentre.com. I feel certain that my qualifications and experience make me a strong candidate for the position.
I am a motivated and proactive postgraduate student of Social Anthropology at the University of Manchester. I have around 2 years extensive experience in administration and business environment. I have recently worked for one of the top Recruitment Agencies in the UK,where I was responsible forgeneral administrative and clerical roles. The vacancy has enabled me to interact constantly with peoplewhich I think would be a huge advantage when working for EUSA. Apart from that, I previously workedfor a marketing and media company, as a Marketing and Communication Executive where my duties involved,but were not limited to, conducting researches, creating marketing strategies, budget planning etc. Moreover, I possess excellent team working and organisational skills gained by different assignments at the University and at the workplace.
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