yugioh beyond the end of the roof deck

10 June 2010

First of all, please ignore my mistake its late and tired anyway xD This is my new (better) end dragon deck destiny just get a camera I'm going to do a real video deck list: Destiny End Dragoon x3 desinty Prisma x2 Elemental Hero – Dogma x2 Destiny Hero – Plasma x2 Elemental Hero Stratos x1 desinty Hero – Dasher x2 Destiny Hero – Defender x3 Destiny Hero – Diamond Dude x2 desinty hero – fear monger x3 Phantom of Chaos x1 Polymerization x3 Fusion Gate x1 x1 future fusion power plants FusionRecovery x1 x2 destiny draw charm of darkness x2 Reinforcements of the Army x1 The Warrior Returning Alive x1 storm x1 Crush Card Virus x3 Chain Material attack x1 Dark Illusion x1 x2 Torrential Tribute x1 Mirror Force x1 deny

http://www.youtube.com/watch?v=823EFrYIOtM&hl=en

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Elemental accouter vid allotment 1

8 June 2010

Here it is Grievousrocks And I’ll throw in a list for the heck of it. Normal monsters:6 Elemental hero neos x2 elemental hero burstinatrix x1 elemental hero avian x1 elemental hero sparkman x1 elemental hero clayman x1 Effect:12 The six samurai Nisashi x1 the six samurai Irou x1 The Six Samurai Yaichi x1 The Six Samurai Yariza x1 The Six Samurai Zanji x1 The Six Samurai Kamon x1 Elemental Hero Bladedge x1 Elemental Hero Wildheart x1 Elemental Hero Bubbleman x1 Elemental Hero Necroshade x1 Neo-spacian Flare Scarab x1 Neo-spacian Aqua Dolphin x1 Magic:17 H-Heated Heart x1 E- Emergency Call x1 R-Righteous Justice x1 O-Oversoul x1 HERO Flash!! x1 Future Fusion x1 Polymerization x2 Miracle Fusion x1 Fake Hero x1 Pot of Avarice x1 The A. Forces x1 Heavy Storm x1 Lightning Blade x1 Reinforcement of The Army x1 Neo Space x1 Skyscraper x1 Traps:5 Change of Hero- Reflector Ray x1 Draining Shield x1 Elemental Recharge x1 Hero Barrier x1 Negate Attack x1 Fusions:12 Elemental Hero Aqua Neos x1 Elemental Hero Flare Neos x1 Elemental Hero Flame Wingman x1 Elemental Hero Shining Flare Wingman x1 Elemental Hero Pheonix Enforcer x1 Elemental Hero Shining Pheonix Enforcer x1 Elemental Hero Rampart Blaster x1 Elemental Hero Thunder Giant x1 Elemental Hero Mariner x1 Elemental Hero Steam Healer x1 Elemental Hero Wild Wingman x1 Elemental Hero Necroid Shaman x1

http://www.youtube.com/watch?v=ka2×4K4snC4&hl=en

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Looking For Turnkey Fine Chemical Manufacturers?

6 June 2010

For turnkey fine chemical manufacturers, UK has options that work for you, whether it is a small project or a large scale one. There are many industries that require offsite chemical manufacturing as this facet of production can be cost prohibitive to a business. Maximise your financial bottom line and trust in an expert manufacturer with experience in all facets of chemicals from dispersants to acids to special polymers.

Look for a Full Range of Services

To narrow down your selection of chemical manufacturers, UK options should include a full range of services. Contract manufacturing services should include the ability to produce fine chemicals, polymers and even chemical drying. Being able to carry a product from the laboratory stages through full scale production is important too. Flexibility and the ability to meet deadlines is another essential part.

Choose a manufacturing plant that can adapt to your needs – both small and large production. Do you need the manufacturer to have the ability to store raw materials in bulk for you? What about packaging? You want to look for a company that can do these things for you using cost effective strategies. The capability to conduct product isolation, chemical drying from flammable solvents, polymerization, and the management and usage of viscous items can be significant, depending on your particular end product needs.

Look for the Latest Technology and Equipment

A manufacturer in the chemical field is only as good as their research and development, use of technology and their equipment. If one aspect falls short, the company does too. This is one of the reasons why you should outsource to a chemical manufacturer that keeps up with the latest innovations – so you don’t have to.

Reactors, centrifuges, chemical dryers and even the analysis features should be a constant work in progress in terms of keeping up and even surpassing the latest and greatest technology. Does the manufacturer maintain the strictest testing and maintenance to ensure the equipment is performing optimally? Do they promote continuing education to ensure the plant workers are up to date on the latest safety procedures? All of this is important too when shopping for a chemical manufacturing plant to handle your work.

The right chemical company will be able to handle a diverse number of projects whether you are in the petrochemical, paint, pharmaceutical or even electronic field. Look for turnkey operations when you interview chemical manufacturers. UK choices are plentiful but finding the right company can help you with your productivity and profitability.

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The Different Types of Plastics and Their Uses

4 June 2010

ABS : a terpolymer made from three monomers, acrylonitrile, butadiene and styrene. Acrylonitrile and styrene provide chemical resistance, butadiene adds impact resistance and makes the plastic suitable for furniture, computer housings etc.

Acrylic: a hard thermoplastic made from acrylic acid or a derivative of acrylic acid. Best known as a glass substitute, typically under the trade names Perspex, Lucite and Plexiglas.

Amino plastics: Plastics made from ammonia based compounds, namely urea formaldehyde and melamine formaldehyde.

Bakelite : really a trade name but frequently used as a generic name for phenol formaldehyde (phenolic).

Cellophane : A Du Pont trade name for film made from regenerated wood pulp (cellulose).

Cellulose : The fibrous matter in all plant cells, with a long chain molecular structure. The most common sources used for making plastics are cotton fibres and wood pulp

Cellulose acetate: A tough thermplastic made from cellulose in the form of cotton linters, treated with acetic acid and acetic anhydride. Used for many domestic mouldings such as spectacle frames, toothbrush handles, and as transparent packaging film.

Cellulose acetate butyrate: A thermoplastic made from cellulose treated with acetic and butyric acids. Transparent, opaque or coloured, with excellent moulding qualities, used where more moisture resistance and dimensional stability than cellulose acetate is required.

Copolymer: A plastic made by polymerizing two monomers, eg styrene and acrylonitrile .

Elastomer: A synthetic plastic with the flexible properties of rubber.

Epoxy resin: A very tough thermosetting resin used as a coating, or reinforced to make mouldings or laminates.

Ester : A compound produced by the reaction between an acid and an alcohol.

GRP : Glass reinforced polyester, ie polyester resin strengthened by glass fibres, making the resin, which has no strength of its own, into a very tensile material. Widely used to build boats, furniture and cars.

HIPS : High impact polystyrene

LLDPE : Linear low density polyethylene, a new type of low density polythene.

Melalmine : Melamine formaldehyde, a thermoset produced by reacting (triaminotriazine) with formaldehyde. A tough glossy plastic usually strengthened with a filler of wood pulp.

Monomer: A simple low molecular weight compound. Polymerization links monomers together to form high molecular weight polymers.

Nylon: Not one material but a group of very tough and flexible materials called polyamides. Thermoplastic and usually found as fibres or used solid, as gears, zips and more recently as dyed jewellery.

Phenolic: abbreviated version of phenol – formaldehyde. Phenolic is usually reinforced with a filler, but cast phenolic has no filler and can be translucent. It can be easily coloured and is used decoratively for jewellery, radio cabinets and all kinds of ornaments.

Polycarbonate : A very tough thermoplastic, usually found as a substitute for glass, eg: vandal proof telephone kiosks,bullet proof shields, baby bottles and picnicware.

Polyesters : Complex ester compounds which are thermosetting and can be polymerized at room temperature, eg GRP.

Polymer : Another word for a plastic material: one which has been made from chains of molecules of one or more monomers. Polymers (plastics) are organic substances, made from hundreds or thousands of molecules linked together in a repeating chain pattern (also known as macromolecules).

Polymerization : The chemical process of linking monomers to form new compounds called polymers. For example,ethylene is polymerized into polyethylene, (polythene for short).

Polypropylene : A thermoplastic polymerized from propene, very close to polythene in molecular structure, but harder, stronger and less flexible.

Polystyrene : A brittle.water white thermoplastic polymerized from styrene – (phenylethylene). The brittleness is overcome by adding some butadiene, which results in toughened polystyrene also known as high impact polystyrene (HIPS), a copolymer of butadiene and styrene. Expanded polystyrene is the rigid white foam used for packaging.

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Recycling Plastic

1 June 2010

A large number of plastic containers and bags are used on a daily basis. Plastic waste is one of the biggest causes for increased water and soil pollution. Plastic recycling offers one of the best solutions to the increased plastic waste in the environment. Plastic recycling is the process of breaking down used scrap and waste plastics to recover usable material for the manufacturing industry. Plastic comprises of a large number of resins and complex chemical structures that are melted down to create new fibers.

Plastic recycling is a complex procedure. Plastic recycling industries can face a large number of unique challenges. One of the key principles to be followed while recycling plastic is that different types of plastics cannot be mixed before recycling. Plastics of different polymer structures and resin composition are identified by using standard codes on the basis of their melting and crushing capacity. Plastic materials identified under a particular code can be mixed and recycled with other plastics of the same code. Plastic materials consist of a few dyes, fillers, and additives, which are not easily recyclable.

The obstacles of recycling plastic can be overcome by using an elaborate monomer recycling process wherein the polymer undergoes an inverse polymer reaction of what was used to manufacture it. The end product of this procedure is a mix of chemicals that form the original polymer, which is further purified and synthesized to form a new polymer of the same type. Another solution to the problem is the use of a thermal de-polymerization process, which involves conversion of assorted polymers into petroleum. The procedure accepts the mixing of any type of polymer.

Plastic recycling can be used to recycle plastic container of different types. Plastic containers such as milk bottles, soapboxes, and juice and water bottles are recycled on a common basis. Grocery sacks and plastic bags are some of the other plastic products that can be recycled.

A plethora of websites on the Internet provides detailed information about recycling plastic along with its benefits.

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Foam Building Materials

30 May 2010


Image : http://www.flickr.com

Although there are many metal foams made up of solid metals like aluminum, their high price prevents them from being used in normal household constructions Commonly used foams are plastics, which are primarily made up of polyurethane and polystyrene. Most of these materials are low density elastomers, polymers and other materials with various porosities. Foam building materials are characterized by their high density, tensile strength and thermal conductivity and dielectric strength. They are used in roofing membranes, insulation, pipe covers, vapor barriers, crack suppressant membranes and as installed flooring protection.

Polyurethane is polymer with bubbles produced at the time of foaming from one polyols and one isocyanate — usually TDI (Toluene diisocyanate). There are rigid and flexible polyurethane foams available.

The most simple and common process to manufacture foams is by adding water to the liquid precursors of polyurethane. Water will react with the isocyanate of TDI. This will result in the production of carbon dioxide, which can create relatively uniform bubbles that harden through the polymerization process producing solid foam.

One other important polymer used to make household foams is polystyrene. Most polystyrene foams are made by adding little amounts of volatile materials known as blowing agents. The commonly used blowing agents in the past were CFCs (Chlorofluorocarbons). Other agents like acetone and methylene chloride have replaced this.

When polyurethane foams are required in soft form, they are mixed with resin. These soft foams are generally heavier than rigid foams. Forcing a pressurized gas, usually nitrogen or carbon dioxide, into the polymerizing mixture, produces large amounts of polyurethane and polystyrene foams. Some surfactants are also used for reducing the surface tension of foams, which are mainly silicone-based.

The machinery used to produce polyurethane foam depends on the application of foam. The most commonly used machinery is a spray foam gun, which are available in different sizes.

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Dit908’s Hero Deck ( Elemental and Evil) Part 1

27 May 2010

This video has terrible quality. I had to make it that way to fit the time in. This shows ( quickly ) the fusions (which are in video 3 in more detail) and part of the deck. Here is the deck list (50) (8): Fusions (8): Elemental Hero Mariner Elemental Hero Grand Neos Evil Hero Dark Gaia x 2 Elemental Hero Flare Neos Elemental Hero Marine Neos Elemental Hero Rampart Blaster Elemental Hero Plasma Vice Monsters (19) Evil Hero Infernal Gainer The Light – Hex sealed Fusion Enraged Muka Muka Neo – Spacian Flare Scarab Neo – Spacian Air Humming Bird Armor Breaker Phantom of Chaos Elemental Hero Burstinatrix Elemental Hero Avian Neo – Spacian Dark Panther Elemental Hero Clayman Elemental Hero Neos x 2 Elemental Hero Bubbleman Elemental Hero Neos Alius Gigantes Evil Hero Malicious Edge Elemental Hero Bladedge Elemental Hero Sparkman Spells (18) Megamorph Dark Fusion x 3 Contact Out R – Righteous Justice Malevolent Nuzzler Twin swords of flahsing light – Tryce Fusion Weapon E – Emergency Call Polymerization x 2 Neo Space Spell Chronicle O – Oversoul Reverse of Neos Common Soul Instant Neo Space Traps (13) Destruction of Destiny Anti – Fusion Device Acid Trap Hole Hero Ring Shield Spear Dark Bribe 2x Hero Counterattack Hero Barrier Chaos Burst Mirror Gate Dimension Wall Draining Shield Heores Rule 2 I know this vid has poor quality. Sorry. I do not own Yugioh !!!!!!!!! Please Rate the Deck, not the vid. 2&3 coming soon.

http://www.youtube.com/watch?v=59kEDzMxeWQ&hl=en

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Osteoporotic Vertebral Fractures – Vertebroplasty & Kyphoplasty

25 May 2010

An elderly lady presents to Casualty with complaints of acute onset, severe pain in the mid back while getting out of bed in the morning. X ray shows collapse of the height of D12 vertebra.

A diagnosis of Osteoporosis is made by the Casualty doctor.

What do we do?

This is a common scenario in Orthopedic practice. The treatment options include:

1. Bed rest for 6 weeks,

2. Ambulation with Brace- Taylor brace/ Anterior spinal Hyper-extension brace

3. Kyphoplasty

4. Vertebroplasty

In elderly population, keeping the patient on bed rest for 4-6 weeks will invite a spectrum of issues like bed sores, hypo-static pneumonia, urinary tract infections, and accentuation of Osteoporosis.

So, we need to keep the patient ambulatory, unless the fracture configuration is unstable.

The principle behind bracing is to prevent flexion at the site of fracture, as this will increase the deforming forces. But the collapse that has already occurred, does not revert.

This eventually leads to progressive dorsal curvature of the spine with the fracture level acting as apex. This may further produce secondary narrowing of the spinal canal, producing risk to the spinal cord and nerve roots.

So, something needs to be done that takes care of the pain and maintains the vertebral height.

The answer lies in Kyphoplasty.

This technique involves inflating the interior of the collapsed vertebral body to restore the contour, and then injection of bone cement to fill the space.

Kyphoplasty is theoretically superior to Vertebroplasty. The latter involves injection of cement into the collapsed vertebra without elevating it.

Thus Vertebroplasty can produce pain relief in a Vertebral collapse fracture by de-nervation using bone cement heat of polymerization, but it does not prevent a subsequent kyphotic deformity.

However, the drawback of Kyphoplasty lies in its cost.

Further study needs to be performed regarding the cost- benefit analysis between Vertebroplasty and Kyphoplasty.

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Polyurethanes – Introduction

24 May 2010

Polyurethanes are around us, play an important role in many areas – from shipbuilding to footwear, construction to cars. Appear in an astonishing variety of forms, a diversity that continues to grow.

Polyurethane foam is one of the most effective practical materials for thermal insulation in buildings used in applications ranging from small home refrigerator. Comfortable and durable mattresses and car seats and interiors are made with flexibleFoam. Items such as shoe soles, sports equipment, soft bumper and front ends are different types of polyurethane elastomers products. And many of us rely on Polyurethanes – elastic threads of the material found in his underwear and other clothing.

All polyurethanes are based on the exothermic reaction of polyisocyanates with polyol molecules, hydroxyl groups. A relatively few basic isocyanates and polyols, or a number of different molecular weights and functionalitybe used to produce the full range of polyurethane materials. Also used several other chemical reactions of isocyanates change or expand the range of isocyanate-based materials, plastic. The chemical reaction catalyzed efficient polymer can be chosen so that the extremely fast cycle times and production volume. No side-products are turned off and given because the market reacts completely, which no treatment is necessary after treatment.

Even if the only advantage of usingPolyurethanes is the variety of high-performance plastics, which can be produced, polyurethane elastomers can often compete with low cost. This is because the cost of raw materials is not the only considerations in the production of total OD in an article.

Polyurethanes also vary from different materials, because the processor to control the nature and characteristics of the final product. This is possible because most uses polyurethane reactive managementMachines. This mixture of polyurethane chemicals to react, to make the polymer required. The polymer is usually formed in response to recent articles in this polymerization. This explains much of the versatility of polyurethanes can be adapted with remarkable accuracy for a given application to meet the needs.

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Elemental Hero Deck Version 4.0

18 May 2010

This is Mockester’s new E- Hero Deck Witch has been updated a lot since the last video and about half the spells and traps have been taken out and he has more new hero’s such as knospe and voltic. Also If anyone has any of the following cards and lives in the UK make and offer and i might respond:- E-Hero Woodsman E-Hero Stratos E-Hero Ocean E-Hero Poison Rose E-Hero Prisma x2 E-Hero Terra Firma E-Hero Air Neos E-Hero Electrum E-Hero Mudballman E-Hero Magma Neos E-Hero Darkbright E-Hero Choas Neos Polymerization Miracle Fusion x2 Terrafirma Gravity

http://www.youtube.com/watch?v=-FGQJS0aceI&hl=en

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