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tv   [untitled]    December 22, 2011 7:30pm-8:00pm EST

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good early morning to you it's four thirty am here in the russian capital i'm lucy catherine of when you're watching our t.v. . now russia needs democracy but not chaos those words from president dmitri beethoven in his last state of the union address the president said that the country is on the brink of a new political era where every voice will be heard he also outlined plans for widespread reforms to the country's political system first in line. and arab league observers arrived in syria as a conflict there seems it's bloodiest week yet more than two hundred are thought to
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have been killed despite international war international sanctions imposed against a mosque. and over seventy people killed us to rocky capital wrong to by a wave of terrorist bombs less than one week after the american military's withdrawal from the war torn country the raging violence that is raising questions already over the entire u.s. invasion and eight year campaign. that is where the headlines all nocs technology update and all the latest breakthroughs and innovations in the high tech world. hello and welcome to technology update as you can see from the decorations at the department store. it's that time of year again now this artificial tree.
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of my childhood new materials are replacing natural and traditional ones left and right and that's especially true with carbon fibers which are increasingly finding their way into gadgets and playthings. actually been around for decades. or everyday things like. cars. and here are a refurbished car plant. came to moscow to check out the opening of. the plant is expected to become the country's largest. overall global tendency by many or both indicative of the fact that in the near future possibly in
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a matter of a few years the demand for these materials. and this may bring about changes to the entire global economic system we are talking about millions of tons as soon as this breakthrough that is to say quantum leap occurs it will mean a revolution in technology a new world and russia must be prepared for it. we can get to the carbon in products. first we have to make. which looks like. there are several ways to go basically are mixed with a. two
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types of car. is produced with the help of. threads are made. by oxygen molecules from the air.
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they're put through to furnish most of the. depending on their intended use they're either carbonized or. carbon content. each fiber is. percent carbon. there's a few more steps to go and that takes us back to the production facilities here at each. plant the carbon fibers. a whole new production outfitted with three. will be able to churn out six hundred kilograms of. will produce an additional one hundred thirty kilos a day by two thousand and fifteen this factory could produce.
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material tests for customers. these materials are designed to be subject to. very thorough testing. the world standard for materials is to sixty to. sixty to seventy thousand various. different kinds of design to check a full range of the materials properties. for those textiles can find their way. impregnated material they're basically intermediate before they're ready to be used in a whole host of things in this so-called stage specialized equipment precisely introduced
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. to the right thing. to be shipped to. china are no doubt attractive markets but nonetheless we mainly focus on russia we monitor external markets for benchmarking purposes such as to work out the pricing or to compare technologies in order to be able to produce a competitive product. tell
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you. early.
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he had to come here. to produce. the institute manufactures its own uranium targets. in the. reactor
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the facilities here and have been turning out over a quarter of a century supplying to just about all of the isotopes that the country's needed up until very recently the institute has produced ninety nine percent of them used in the russian market. given the fact that we're essentially dealing with highly enriched uranium extremely limited number of places can be produced. we started producing. after that. physics. production. as it reached the end of its service to. commercial producers the.
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current supply production is dominated by just a handful of reactors the two largest account for over sixty percent of global demand those two reactors are both over fifty years old and beyond their intended service life when they're eventually decommissioned will have to be found several alternatives are being explored including one in russia. especially for isotopes. takes us to where a new look production site has been set up late last year a company called isotopes began pumping out the radio at the research institute of atomic reactors not yet up to full capacity is already started deliveries to clients like one of the world's leading isotopes. norty and ensuring reliable deliveries of molybdenum is so important because it accounts for over eighty percent of all nuclear medicine operations worldwide and here in the meter of grad
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such a vital issue required a new solution. this technology has not only been reworked in the chemical sense but also in terms of the equipment and in this regard it's a new technology not available anywhere else as far as i'm aware and at the moment we're currently at the production startup stage. after the targets are cooled they're transported to hot cells for processing that involves dissolving the whole . residues are filtered out and is extracted using. here new technology saves time which is important because every hour after about one percent of the isotope is lost to radioactive decay. our production target is eight hundred units today we produced one hundred sixty there was a shipment yesterday that's the first phase of our production at the same time we
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continue working on the second stage and expected to reach its design capacity in two thousand and twelve. target here is very high about two thousand four hundred juries per week. is estimated at one hundred. doctors should have. a need. to care. for some medical conditions the radiation isotopes can be harnessed to destroy functioning. by choosing the appropriate isotope radiation can be localized in a specific tissue. another isotope produced alongside. thirty
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one can be taken orally. with christmas and new year presence and with presence comes trash in many countries much of it just ends up in municipal landfills but as the rubbish piles up people are increasingly looking for alternatives. landfills have been a common way to dispose of trash according to some thirty five million tons. is generated every year. and. they also. every year russian. leaders of the. waste management pressing issues in. producing. something we.
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as of today. having reached there are. some of them have been reclaimed. has been an alternative to city dumps but they also haven't been without their problems. cancer causing dioxins are created over the latest generation to energy plants like the. seams. it can process just over three hundred tons. every day including recyclable materials. filtered out at the preprocessing. trash passes through a shredder and dryer.
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chamber thanks to technology. but it's much better for our environment than any other. technology is unique. energy to be produced from waste. at. this technology. it produces much more energy to keep. despite temperatures reaching eight hundred fifty degrees.
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which is between. the main difficulty. required for the waste needed to be made of material. and such materials. we developed. before. searching. into the liquid.
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pretty quickly. from the control. these extreme temperatures are needed to destroy.
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forty five. that's going to help us to provide about twenty thousand homes with electricity. consumption rates and. another. by product. because. under the kyoto protocol. the first to be. another one. and then. thirty.
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years always a good time to reflect on what we've done in the past twelve months as well as what we hope to accomplish in the next. like those that recently took part in the fourth . the most important part of the. eight hundred. thirty took part in the competition. was recognized by the. thank you very much.
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first project which is. technology. between removing. the previously.
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physical impact. of several major. production costs. we have managed to develop. solutions for all of these. developments. which can be easily produced. only traditional. at the very beginning this is to take. twenty eight. easily when they come into contact with an active liquid. compressed air is used. to get rid of. completely.
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to get rid of the unique. pores of the. penetrating structure of the target. the. production units have gone through the complete from an idea to the product. through the. then we produced three units we made the manually. by the time we go to. commercial production. in innovative products. and there's apparently no shortage of interested customers especially in the energy sector. these serious build up on important parts can eat into the energy efficiency. but moving from cleaning power plants
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electricity is the topic of alexander's most recent creation. is going to be used on travel on trains planes in. cafes restaurants and users will no longer have to depend on having an electric socket around remembering to take the relevant cord with them it will be in the past i think a major potential key mobile phone manufacturer is. possibly. because switching to producing phones with wireless charging is a big competitive advantage on the market. and that's not something that's been lost on many of the world's top mobile makers a good number of them have teamed up to. there are already
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a decent number of so-called wireless charges on the market however at present all of them still require you to place your device on a charging pad and with some you need a separate charger for each device they give you a bit more freedom but our phones are still tied directly to some kind of plugged in charger. there is a number of issues around this solution among them the impact on human health. impacts another electronic devices in the vicinity the most important thing here is that we've succeeded in bringing these devices efficiency up to a very high level about eighty five percent and that's not the only thing alexander thinks his charger offers over the competition it can theoretically work with. but most importantly this russian prototype can top up your battery anywhere around the charger not just on a pad unlike with the others works effectively up to thirty centimeters away from the base of this device uses the principle of the tesla coil. the energy produced
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in. the mobile device. is equipped with a receiver designed. we have developed a special feature of the coil a very high efficiency facts about eighty five percent of this is achieved through the use of a switch mode power supply unit. of the coil in other words while any inductive system goes through the build up phase in order to build up the energy production in our device there is no buildup as such we start of the process just once and it exonerates through induction we have only given hansing impulses once in a while. a new device is still in the project stage what more do you need to do to bring it to the market. to start commercial production of these developments we need to meet three requirements first we need to complete the prototype and run it through all the necessary tests or do you then make all necessary improvements and
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changes and produce a pilot batch because. second we need to have all the patients registered and thirds we need to set up a technology company in accordance with international standards. within that wireless charger could hit the market sometime soon and we hope that it and the other developments we've showed you today make the future seem well just a little brighter so we'll see you next time and until then enjoy the ride. with. bygone days sleds were vital to get around. today more leisure than lifeline. what drives people to quit their modern lives and
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settle in remote woods. fires them up to survive in the freezing cold. beginning in russia's new discover the arctic circle on r.t.e. . it .
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