Things to Remember While Mounting an LCD Or Plasma TV

March 8th, 2010 by admin

People love the latest electronic devices meant for entertainment purposes. LCD and Plasma Televisions are on top of the chart of favorite entertainment devices. Therefore, if you have planned to replace your prototyped television with a new LCD or Plasma one, then it is a wise decision. To make it a wiser decision, you need to fix it to a proper place in your home.

Mounting Your LCD/Plasma Television

You have invested heavy amount in buying an LCD or Plasma TV, for their perfect placement you need to buy a mount bracket of good quality, compromising with the price is not a wise decision. A TV bracket will decide the usability and durability of your hi-tech television set. Another thing, which you need to focus, is installation of mount brackets at your home. This is a very sensitive task, because any failures in proper installation may damage your LCD or Plasma television set. Therefore, consulting a professional and skilled installer, who is expert in providing such services, will be the best option.

Some important guidelines during installation of mount brackets:

1. Be sure to subcontract the installation to licensed contractors and keep small children away during the installation process to avoid any kind of accidents during installation.

2. Even moving or dismounting of LCD or Plasma televisions should be assigned to licensed contractors.

3. Do not spill any kind of liquids on LCD or Plasma TV. Any kind of wetness may result electric shocks.

4. Do not play with your mount bracket settings. That means do not remove any screws etc., after mounting your LCD or Plasma TV.

5. Do not try to disassemble or alter the parts of wall mount brackets. It may damage mount brackets and may fall resulting damage to your costly LCD/Plasma TV.

6. Do not mount any other equipment other than the specified product. These mount brackets are specially designed for use with specified product only. Any other equipment may not be compatible to your mount bracket, and it may fall or cause damage.

7. Do not cover ventilation hole of the television.

8. Do not apply any other load on mount brackets.

All the above guidelines are helpful from the installation to handling and maintenance of your mount brackets. It will help you in getting a pleasant experience with your LCD/Plasma TV and TV brackets.

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Making an Educated Decision on Your Next Automated Plasma Shape Cutting Machine

March 7th, 2010 by admin

Whether you are a first time buyer or have existing installations of plasma and/or oxy-fuel shape cutting systems, continuous advancements in technology and a growing landscape of low-cost manufacturers and integrators has clouded the automated plasma shape cutting machinery landscape.

Plasma cutting is the result of introducing an electrical arc through a gas that is blown through a nozzle at high pressure, causing the gas to turn into plasma and producing a focused flame that reaches temperatures of 50,000 degrees Fahrenheit. Automated plasma cutting systems are classified as either conventional or precision (high-definition), based on the characteristics of the cutting flame. Precision plasma systems are capable of producing parts to tighter tolerances, achieving faster cut rates, and producing less kerf and bevel than conventional plasma systems. The cost of these units can also be significantly higher than conventional plasma systems. It is therefore extremely important to properly match the shape cutting machine with the appropriate plasma cutting system.

One of the most common and costly pitfalls buyers encounter is when manufacturers or integrators mismatch machines and power sources. This is often the result of manufacturers not taking the time to understand the buyer’s requirements, having a limited or single-product line of machines, limited OEM access to power sources, and/or a lack of industry/application knowledge. These manufacturers will then often sell with a focus on lowest price instead of lowest cost of ownership, highlighting the strong point of the plasma system or the machine without regard to the limitations of the other. The best precision plasma power source available will not provide users with the desired cut quality and accuracy if it is not mated to an appropriate base machine.

There are many types of plasma shape cutting machines available in the market today. The most common machines are bridge or gantry style machines made from either fabricated steel or extruded aluminum. Construction of the machine is extremely important relative to your application. Machines constructed of extruded aluminum are typically considered to be hobbyist or artisan machines and most appropriate when doing a limited amount of cutting or when cutting light gauge materials. The plasma and oxy-fuel cutting processes create large amounts of heat which is retained in the materials being cut and can cause deflection or warping of aluminum machine components traveling over the hot cutting surfaces, greatly effecting accuracy and cut quality. Fabricated steel machines are highly recommended for any type of continuous cutting process, cutting of plate steel, and where auxiliary oxy-fuel torches may be used. Auxiliary heat shields may also be available to further protect the machine and components from extreme heat conditions.

Cutting machines are available with a variety of drive systems including single-side drive, single-motor dual-side drive, and true two-motor dual-side drive systems. A well constructed single-side drive system or single-motor dual-side drive system will perform extremely well in conventional plasma applications. The benefit of the extra precision offered by two-motor dual-side drive systems will not be realized in conventional plasma applications due to the limitations in the precision of the conventional plasma cutting process itself. Two-motor dual-side drive systems will provide the accuracy and performance required to achieve optimal results from a precision plasma process.

Sizing of the motors and gear boxes relative to the mass of the machine is also extremely important. Undersized motors and gearboxes will not be able to effectively change the direction of the mass of the machine at high traverse and cut speeds, resulting in un-uniform cut quality and washed-out corners. This not only affects the cut quality, but will also lead to premature mechanical failures.

The CNC control is the unit that ties together all of the functionality and features of the machine and plasma source. There are basically two classes of controls used on most of these machines today. Most industrial applications use industrial PC-based control systems such as those produced by Burny or Hypertherm. These units have user-friendly touch screen control panels and are housed in enclosures that can stand up to the harsh environments they operate in. Smaller machines of the hobbyist or artisan types often utilize standard PCs with I/O cards to control the drives and plasma systems. Industrial based controls are highly recommended for any application, are designed for industry specific requirements, are less prone to the typical PC problems, but can be cost prohibitive in smaller applications.

Another important, and often overlooked, feature to consider when selecting a machine is the construction of the rail system. Plasma cutting machines produce and reside in a harsh environment. It is therefore important that the components used in the construction of the rail system be robust enough to exist in this environment. All rail surfaces should be constructed of hardened materials and cleaned frequently so that they do not become pitted and gouged by the splatter of molten steel that will inevitably fall on them. Self-cleaning wheels are also a recommended feature to keep the wheels clean between regular preventive maintenance (PM) cycles. Sizing of the rails should also be robust enough to prevent deflection as the machine travels across them.

The combination of all of the above factors results in the precision and accuracy of a system. Unlike other mechanical machining processes, it is difficult to assign a standard tolerance to plasma cutting processes. Many manufacturers will strongly promote the fact that their machines have positional accuracy of +/-0.007 in. and repeatability of +/-0.002 in.. The fact is that just about any machine on the market can hold tolerances that far exceed the tolerance and capability of the plasma cutting process itself. There are many factors that will influence the cut quality you will achieve on your parts including: the characteristics of the part itself, power settings, consumables, gases used, material type, gauge/thickness of material, part layout on plate, etc.. Ask the manufacturer to provide you with cut samples of your parts or parts that closely approximate the parts you will be cutting, made on a machine/plasma combination that is comparable to what you are looking at. This will give you the most realistic representation of what to expect from a specific machine/plasma combination and the plasma cutting process itself.

Before talking to any cutting machine manufacturer, clearly identify your requirements:

Identify the types of materials will you be cutting with your system (ferrous/non-ferrous, mild steel, stainless steel, aluminum, etc.).

Identify the range of material thicknesses you will be cutting.

If you will be cutting a variety of materials and thicknesses, estimate the percentage of each type and identify the primary types and thicknesses.

Determine the size (length, width, and thickness) of plate you will be purchasing in order to properly size the table, effective cutting area, and weight capacity of your new system.

You may also want to look to the future in anticipation of any future types and sizes of materials you may need to process. The upfront cost of anticipating these requirements may be substantially less than upgrading or retrofitting your system in the future.

Identify the tolerances you will need to maintain. This will help determine whether you need a conventional or precision plasma system, as well as the type and construction of the base machine.

Determine how many hours-per-day and days-per-week the machine will be operated. This will determine the type of base machine construction you will need, help estimate the cost of operation, and allow you to compare the cost/benefit of consumables life of various manufacturer’s power supplies.

Determine how you will exhaust your equipment. Water tables do not require exhaust systems, but down-draft tables do. If there is an existing exhaust system in place, identify the capacity of the system in cubic feet per minute (CFM).

Determine if you will need the flexibility to expand the system or add additional plasma and/or oxy-fuel cutting stations in the future. Some machines are capable of only carrying one or two torches, while others can accommodate slave stations for up to a combination of 10 plasma and oxy-fuel torches. Likewise, some machines have fixed cutting areas while others can be extended in length to increase cutting area or accommodate multiple cutting tables.

Define the area in your facility where the machine will be located. Make note of any obstructions, hazards, or access points that will need to be taken into consideration when laying out the new system. Also, identify how your material will be handled in and out of the area (forklift or crane, aisle locations, etc.).

Identify the power you have available, both voltage and amperage.

A reputable manufacturer should ask you for most of this information before making any proposals on a system. If a manufacturer does not have this information, they cannot adequately evaluate your requirements and propose a system that will best work for you and your specific application. Spending the time to identify your requirements up front will not only save you countless hours of frustration resulting from living with the wrong machine, but also save you money by not over- or under-buying a system to meet the requirements of your specific application.

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Bioplasma Bodies – Formation of Plasma Vortexes and Nodes Along the Spine (Absorptive State)

March 6th, 2010 by admin

Formation of Polar Vortexes

It was noted in the author’s article Bioplasma Bodies: Formation of the Central Pranic and Kundalini Currents that the helical currents generate an axial magnetic field which is aligned with the spine. This axial magnetic field is really the “straight” part of a dipole magnetic field. For convenience, we will designate the location of the “North” pole of this magnetic field to above the human head and the “South” pole below the groin. The magnetic flux lines of this magnetic field will flare outwards at the North pole, circle the bioplasma body and enter the South pole. Within the bioplasma body, the field lines from the South pole will move upwards towards the North pole. The part of the magnetic field that is within the bioplasma body is fairly straight and uniform. The polar vortexes are plasma vortexes that form around the North and South poles. The North polar vortex of a person who is standing would be facing the sky and the South polar vortex would be facing the ground.

Absorption of Super particles

Charged particles in an ionized environment have a tendency to follow magnetic field lines. If the path of the particle is at an angle, i.e. neither parallel nor perpendicular to the magnetic field lines, the particle will spiral around the magnetic field lines using a helical path. If the particle’s path is parallel (i.e. 0 degrees) to the magnetic field line it will move along the magnetic field line like beads on a string. If the particle’s path is perpendicular (i.e. 90 degrees) to the field line it will circumambulate around the field lines. Most particles, however, would come in at an angle between 0 and 90 degrees and hence would follow a helical path. When the particles plunge they collide with other particles in the ovoid (the “atmosphere” of the bioplasma body), generating a light phenomenon similar to the auroras in the atmosphere at Earth’s magnetic poles.

As the magnetic field density increases, the radius of the spiral or the “gyro radius” reduces and the velocity decreases (due to the loss in kinetic energy), in accordance with the formula R = mv/Bq that shows that R, the gyro radius, is proportional to the velocity ‘v’ and inversely proportional to the strength of the B-field. This process will generate a helical path that will have a cone shape when viewed from the side, with the apex of the cone meeting the surface of the bioplasma body. Dynamically, this can be described as a vortex. Since there are many particles streaming down into the bioplasma body, taking slightly different trajectories, smaller vortexes can also appear within a large vortex. Experimental metaphysicist Barbara Brennan has observed that within each chakra there are also small rotating vortexes spinning at very high rates.

Impact of Super particles on Surface of Bioplasma Body

When the particle reaches the bioplasma body, which is much denser than the rest of the ovoid, it impacts the surface of the body at supersonic speeds, producing 3-dimensional shock waves which generate Mach cones. The impact generates circular wave fronts that radiate out from the point of impact (forming a “wave train”) and also straight lines from the center to the circumference (like spokes on a wheel). This is similar to what happens when a meteoroid smashes into the surface of the Moon causing impact craters which show similar features. It will exhibit circular wave fronts (which generate concentric circular mountain ranges) and bright streaks of materials (often called “rays”) which radiate out from the centre. These impact features are also seen when a bullet hits the windscreen of a car. After impact, the particle is absorbed into the bioplasma body.

These impact features are consistent with features observed by experimental metaphysicist Charles Leadbeater. Based on a scenario where the path of the particle is perpendicular to the surface of the bioplasma body (i.e. parallel to the magnetic field line), Leadbeater explains that the circular wave fronts are caused by secondary forces, as follows: “This divine energy, which pours into each center from without, sets up at right angles to itself secondary forces in undulatory circular motion…” This identifies the concentric circular waves that radiate out on impact which are at right angles to the trajectory of the incoming particle. He also identifies the orthogonal distribution of radiation energy from the centre as follows: “The primary force itself, having entered the vortex, radiates from it again at right angles, but in straight lines, as though the center of the vortex was [sic] the hub of a wheel, and the radiations of the primary force its spokes.”

Bioplasma bodies are composed of complex plasma, also called dusty plasma, which consists of not only negative and positive particles, but also macroscopic dust particles. Scientific researchers found that Mach cones were produced when a particle was fired at dusty plasma at supersonic speeds. According to A Piel, longitudinal waves form circular wave-fronts with an orthogonal distribution of radiation energy in plasma crystals. Both these features, circular wave-fronts and spokes radiating out orthogonally from the centre, together with the shock wave that produces the Mach cone, are consistent with Leadbeater’s observations.

Formation of Lateral Vortexes

Development of Other Magnetic Fields in the Perpendicular Direction

The current flows of pranic particles within the central vertical section of the bioplasma body are not entirely in one direction. Both kundalini and pranic particles can enter via the North and South poles. Hence, pranic particles can flow from the North pole to the South and also in the reverse direction. However, the current in the reverse direction will be weaker due to the preponderance of pranic particles in the North which generate repulsive forces. This means that the magnetic field generated by this reverse current will also be weaker than the magnetic field generated by the stronger current, flowing from the North pole to the South.

According to Biot-Savart law, two currents flowing in opposite directions will repel each other. Imagine two straight currents, flowing in opposite directions, emanating from the ground and extending upwards to a height of 1 meter, perpendicular to the ground. If you were looking down at it, you would see that the two loops of magnetic field lines actually form a dipole magnetic field perpendicular to the direction of the currents. Similarly, smaller magnetic fields, perpendicular to the central axial current and magnetic field, will develop. The axis of these magnetic fields will merge with the central axial magnetic field, forming nodes along the axis of the central axial magnetic field.

If the North pole of this smaller dipole magnetic field is on the front side of the bioplasma body, the South pole will be on the back side. A double-vortex system will eventually evolve when particles, taking helical paths, plunge-in at the North and South poles on the two broad sides of the bioplasma body. They will be transported in a flux tube after absorption to the node along the central vertical axial current.

The magnetic field lines will flare out of the North pole on the front broad side of the body, curve outwards and enter the South pole on the back side of the body. Hence, there will be field lines and field aligned currents circling the body in a plane perpendicular to the central vertical axial magnetic field and current. These lines would be analogous to the lines of latitude on a globe of the Earth.

Basket-like Network of Currents

We know that field lines emerge out of the North pole, curve downwards, and enter the South pole in a simple bar magnet. Inside the magnet, however, the field lines move upwards from the South pole to join the North pole. Hence, if there are field-aligned currents, the currents inside the magnet (in this case, inside the bioplasma body) will be opposite in direction to the field lines outside the magnet (in this case, outside the bioplasma body but still inside the ovoid). The lines from the central vertical magnetic field would flare out from the North pole, curve downwards and connect to the South pole. These lines would be analogous to the lines of longitude on a globe of the Earth.

With the criss-crossing of the analogous horizontal lines of latitude and vertical lines of longitude, the bioplasma body will possess a basket-like network of currents. This configuration of currents has been confirmed by experimental metaphysicist Barbara Brennan who notes, “The main vertical power current induces other currents at right angles to it to form golden streamers that extend directly from the body. These in turn induce other currents that circle around the field, so that the entire auric field and all the levels below it are surrounded and held within a basket-like network.”

Formation of Vortexes connected to Central Vertical Currents

Super particles with a net magnetic polarity plunge into the ovoid, taking mainly helical paths. On impact with the surface of the bioplasma body, they generate impact features, similar to what has been described for the polar chakras, above.

On entry into the body, after impact, the particles migrate to the node along the central vertical pranic currents, generating over time, a flux tube between the point of impact and the node. This is consistent with experimental metaphysicists Leadbeater’s observations, who noted, “Though the mouth of the flower-like bell of the chakra is on the surface of the etheric body, the stem of the trumpet-like blossom always spring from a center in the spinal cord.” The “flower-like bell” is the vortex (with its apex situated on the surface of the bioplasma body at the point of impact and its broad end facing the environment) and the “stem” is the flux tube connecting the point of impact on the surface of the bioplasma body to the node along the central vertical pranic currents. This configuration is confirmed by Brennan who notes, “Their tips point into the main vertical power current and their open ends extend to the edge of each layer of the field they are located in.”

Chakra System

Based on the above analysis the “chakra system” has four components:

a. The vortex generated by the particles taking helical paths. This produces the cone structure;

b. The impact basin which is produced by the particle when it impacts the surface of the (relatively) dense bioplasma body.

c. The flux tube (or “stem”) that connects the impact basin to the node.

d. The node along the central vertical currents.

Actual Observations

Many of the diagrams in the metaphysical literature are idealized and highly symmetric to aid understanding. Actual observations may not reveal such “perfect” configurations due to a number of complications, as discussed below.

Superposition of Vortex on Mach Cone

Two features have been discussed above. Firstly, the formation of helical trajectories by super particles which generates a vortex, prior to reaching the surface of the bioplasma body, and secondly, the impact features on the surface of the body that are generated when the super particle impacts the surface of the bioplasma body. Experimental metaphysicists who observe chakras from the front side of the body will observe a complicated pattern with the helical pattern superimposed on the impact features. It will be like seeing a pattern at the bottom of a pool through a vortex on the surface of the water. Hence, the images from this view may be fragmented and radially distorted.

Warped Magnetic Field Lines

Magnetic field lines trapped within the bioplasma may be dragged or twisted due to various forces within the bioplasma. The usual diagrams in the metaphysical literature of structures within the subtle bioplasma body are idealized and show much more symmetry than would be actually observed in an average person. The actual field lines and field-aligned currents (known generally as meridians or nadis in the metaphysical literature and Birkeland currents in plasma metaphysics) may frequently be warped and filamentary.

Skewed Impact Basins

The symmetry of an impact crater depends on the angle of impact of the projectile that formed it. Craters produced by an impact that is normal to the surface tend to be radially symmetric. However, most impact craters are produced by projectiles with trajectories that are oblique to the surface and produce craters which are not radially symmetric. Since super particles have the highest probability of impacting the surface of the bioplasma body between 0 and 90 degrees, the impact basins on the surface of the bioplasma body would generally be somewhat skewed and only in rare occasions be radially symmetric.

© Copyright Jay Alfred 2007

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What You Need to Know on LCD and Plasma TV Standards

March 5th, 2010 by admin

You finally made up your mind to get yourself a new television but you cannot decide whether to buy a plasma or an LCD TV. Manufacturers have already improved the built of the plasma to level up with LCD. When buying, you might want to consider the glare, screen size, and the refresh rate. These are some guidelines that might help you decide what kind of TV to buy.

1. Size of the Screen

If you want a large screen, plasma is the answer. Plasma TVs are built to be large. As big as 50 inches while the LCD technology is still trying to catch up with this size, and vice versa, since plasma manufacturers will soon be releasing 32-inch televisions. If you prefer a small screen television, you can get an LCD.

2. Ambient Light from the Room

Is the room where you will be placing your TV dark or brightly lit? Yes, this should be considered because of the factor of ambient light. Light is one of the vital factors to consider when choosing between an LCD and a plasma television. In a bright rooms, the LCD TV performs better than a plasma. A plasma delivers a lower quality of image when it is in a bright room. This is due to the ambient light which is being reflected on your screen. But this has now become a slight problem that plasma television manufacturers have found a way to solve it. Anti-glare screens are now being used with plasma televisions which has greatly reduced the effect of the ambient light on the image quality produced. Manufacturers have found a way to put a special treatment to the glass panel of the plasma screen so that it has the ability to resist the reflections and the glare from the ambient light. If you often watch TV with the lights on, it is advisable to use a plasma. But when you will be watching mostly in a dimly lit room, you can get an LCD or a plasma with anti-glare coating. In this way, the surrounding lights in the dark room will not be reflected in your screen.

3. Refresh Rate

If you just love watching movies or shows that are fast paced, plasma will be more appropriate for you because it has a faster refresh rate. If you watch these high speed scenes in an LCD TV, you will most likely see some blurring at the edge of the image. For gaming purposes however, it is wiser to have the LCD TV because it has no chances for burn-ins. There are now LCD TVs with lower response time. As low as five milliseconds. What you should be looking for is a high refresh rate and a crystal clear picture.

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Plasma TV Stands and Organized Entertainment Rooms

March 4th, 2010 by admin

If you have been worried about organizing your entertainment system, these plasma TV stands will provide you with an easy solution to accomplish this task. You will surely find it easy considering the great features of these plasma television stands.

For starters, Modern plasma TV stands come in a variety of designs that can instantly improve the way your home looks. You can actually choose from TV stands made from steel, wood or glass. You will be delightfully-overwhelmed with the numerous television stands to choose from. Naturally, your choice will depend on the current décor of your home.

These plasma TV stands are usually perfect for modern entertainment system. They are as sleek as your plasma television and stylish as your surround sound system. It would certainly complement your other modern furniture and appliances if you choose to get one of these plasma television stands.

When it comes to saving space, you will be pleased with how efficient these plasma stands are. These stands will allow you to maximize space, allowing you to enjoy a more comfortable room where you will be able to move easier. If you like, you can choose on of the swiveling TV stands for plasma that will allow you to watch your favorite shows wherever you are. It would certainly make you enjoy watching television in your home better.

Choosing one of these Plasma TV Stands is also simple. You can buy from any modern home appliance store. You will just need to look for one that will fit perfectly in your home. It would be better if you take the right measurement with you to the store so that you will not make any mistake.

On the other hand, you can always purchase one of these plasma TV stands from an online store. You should just make sure that you transact with a reliable seller to avoid any inconvenience.

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What to Look For When Buying a Plasma Cutter

March 3rd, 2010 by admin

Plasma cutters come in a variety of shapes and sizes so it can be confusing as to what one to buy. Generally speaking, the first thing to take into consideration is what you want it to do most of the time. This will determine the type and the size of your need.

For some people, a plasma cutter may seem slow, depending on the material you will cut. You need to know that they will cut precisely and some thicknesses of metals may take longer than others to cut in this way.

Some plasma cutters will need a compressor for some things so you will need to know whether you need this before you purchase one. You will also want to choose one that can cut thicknesses greater than what you expect to do most of the time, so you have some flexibility.

You might also find it helpful to know that any metal that is a conductor of electricity can be cut by a plasma cutter. These are metals like copper, aluminum, stainless and other types of steel.

You will need some type of gas for cutting and most people use compressed air. This type of air comes as an air compressor or you can by it by the bottle. You will want to know the Cubic Foot per Minute (CFM) that the compressor will do because this is what keeps your plasma machine consistently running. You will also want to check the plasma cutting machine’s Pounds Per Square Inch (PSI) because it tells you how much pressure you need to run your machine.

Another thing you will want to purchase for your plasma cutter is dry air because it keeps moisture out of the line by traveling with it and helping it get out of the end of your torch. This can help you maintain your consumables longer.

To figure out how large a machine you need, you will want to determine the speed you want the machine to cut your metal. You will also want to decide the type of metal and its thickness because these will determine the overall speed of your plasma cutter’s performance.

You will also want to know the power that you will need to run your particular machine; this also varies depending on what you are doing. Depending on the plasma cutter, you can get small voltages or ones that are specifically created for a wide range of voltages and some can be used in the field. If you need a plasma cutter that is portable, then the weight and the size of the machine will be important.

Finally, be sure to wear proper safety equipment and clothing when you are using the plasma cutter. As an example, you will want to use a full face shield to protect you from the beam of light; usually a number 5 or 6 shade protection will work. Make sure you the area where you are working is ventilated and take precautions for noise, temperatures, high voltages and fumes.

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Angels, Ghosts, Deities and Their Magnetic Plasma Bodies

March 2nd, 2010 by admin

The appearance and characteristics of the bodies of angels, ghosts and deities show marked similarities and suggest that they are composed of the same substance – magnetic plasma. Magnetic plasma, besides generating electromagnetic fields, is a good conductor of electricity and radiator of electromagnetic waves.

1. Emission of Light and Colorful Auras

Unlike our physical bodies which are visible because of reflected light; angels, ghosts and deities emit light as a result of interactions between particles in their bodies and high energy particles in the environment — similar to what happens in auroras and inside fluorescent lamps. This is why angels, ghosts and deities glow brightly in the dark.

The aura that is radiated by these higher energy entities is generated in the same way that an aurora is generated. In the case of an aurora, electrons passing through space are captured by the Earth’s magnetic field and follow spiral or helical tracks about the magnetic lines of force and in the process collide with gases in the neutral atmosphere generating the aurora. Similarly, charged particles (popularly referred to as particles of ‘qi’, ‘prana’ or ‘kundalini’ in the metaphysical literature) are captured by the electromagnetic fields of the bodies of angels, ghosts and deities; which then flow down (or up) twisted magnetic (helical or spiral) lines of force into their higher energy bodies generating colorful auras as they react with the particles in the environment and in the subtle bodies. Furthermore, their bodies are also ‘thermochromic.’ A thermochromic body produces color changes in response to the heat generated by electrical currents within the higher energy subtle bodies.

2. Features Associated with Magnetic Plasma

Angels, ghosts and deities also have features associated with the Sun. This is not surprising as the Sun is a big ball of magnetic plasma. Coronal auras and discharges, granulation and spicules are all features associated with the Sun and magnetic plasma bodies. The coronal aura is even more pronounced for angels and in apparitions of saints or deities. Coronal discharges and flares can occur suddenly on the Sun. The various particles that are discharged, together with these flares, are carried by the Sun’s plasma wind to cause magnetic storms on Earth. Similarly, the coronal auras of saints and deities blast-out particles that may have a harmful or positive effect on the observer’s body. Spicules are short-lived phenomena, corresponding to rising jets of gas that move upward and last only a few minutes on the Sun. Spicules can also be seen in the coronas of angels, ghosts and deities.

3. Balls of Light

The natural stable shape of magnetic plasma bodies is ovoid. The membrane of this ovoid may be transparent. Within the ovoid, composed of low density magnetic plasma, a holographic thought-form may be generated. On May 13, 1917 a sudden strong wind on a calm day startled three peasant children out of a game they were playing and they saw across the valley a dazzling globe of light, like a miniature Sun, gliding slowly towards them. As it approached, the ball of light gradually resolved itself into a brilliantly shining young man. According to the children they saw “a light whiter than snow in the shape of a transparent young man, who was more brilliant than a crystal struck by the rays of the Sun.”

When internal frequencies change, magnetic plasma can become translucent or transparent (this is a natural property of magnetic plasma). In other words, the opacity of the bodies of angels, ghosts and deities can be manipulated electromagnetically – allowing the bodies to apparently appear, disappear or fade away. Ghosts, angels and religious figures have frequently been reported to be transparent or translucent and casting faint shadows. This betrays the fact that their bodies are composed of magnetic plasma.

Ghosts also have been reported to be in the form of vortices (like a moving cyclone) or vapor. All these forms are compatible with descriptions of magnetic plasma and its dynamics.

4. Passing through Objects

Being composed of low density plasma, ghosts can pass through you, walls and other ghosts. They are composed of ‘collisionless plasma‘ – just like Earth’s plasmasphere. This is also a characteristic of collisionless dark matter. Ron Cowen says, “Evidence indicates that when speeding fragments of dark matter meet, they don’t collide as other matter do but pass right through each other, ghostlike.” According to plasma metaphysics a lot of dark matter is in the form of a plasma of super (i.e. supersymmetric) particles and objects. You are unlikely to ‘collide’ with ghosts but electromagnetic effects can be felt if their bodies glide near or through your own magnetic plasma body. There could be changes in frequencies (which correspond to changes in energy levels) and distributions of charges over your own subtle magnetic plasma body.

5. Electromagnetic Nature and Radiation of Long-Range “Radio” Waves

In encounters with ghosts, lights may go on and off without any mechanical change in the position of the light switch. Similarly, messages may appear on a computer screen without any movement of keys on the computer keyboard. Some have even claimed that broadcasts of various beings residing in parallel planes have been transmitted and received by television. This is not inconceivable — considering that ghosts have magnetic plasma bodies which are good radiators of electromagnetic waves, analogous to long range radio waves. When these waves are modulated by the thoughts of the owner, telepathy can take place. The radio waves become part of the remotely-sensed electromagnetic spectrum of these bodies – just like visual, infrared, or ultraviolet emissions. This allows these entities to communicate their mental and emotional states to human beings through our higher energy (magnetic plasma) bodies.

6. Appearing and Disappearing

The bodies of these entities are generally not composed of standard particles (i.e. particles that are currently known to Science and included within the physicists’ ‘Standard Model’.) They are composed of much higher energy super (or supersymmetric) particles and objects. These higher energy particles cannot be observed by scientists currently – using particle accelerators which can only probe lower energy particles. Human beings or animals that use the sensory systems of their higher energy bodies can see these plasma-based life-forms.

Alternatively, higher energy entities can ’step-down’ the frequencies of the waves they radiate intermittently; intentionally or unintentionally; thereby becoming momentarily visible to those who are sensing them through their physical-biomolecular bodies. In these cases, these ordinarily invisible entities composed of dark matter become temporarily visible to most of us. The frequency of electromagnetic waves is related to its energy. As the energy of the body (particularly bodies in the lowest energy plane – which is usually referred to as the ‘physical-etheric’ plane by metaphysicists) drops, the body becomes visible momentarily in our low energy world.

7. Changing Appearances

The psychological states of angels, ghosts and deities can modify their appearances in an instant. A being which is depressed would appear differently from one who is happy. From a dark evil-looking appearance, an entity can be transformed to a bright and beautiful angel in minutes when the internal psychological state changes. Changes in psychological states can change the brightness, clarity, shape and colors of the thermochromic bodies of angels, ghosts and deities by effecting changes in the electromagnetic field of the body. The holographic thought-form generated within the ovoid also changes if another persistent thought-form replaces the current one. Since your own magnetic plasma body radiates electromagnetic waves, an entity can also change its appearance in accordance with your expectations by tuning into these frequencies.

Conclusion

There is much evidence that ghosts, angels and deities are composed of magnetic plasma. Once this is accepted more widely, a more rigorous scientific framework can be formulated for the study of these entities. This framework will significantly increase our understanding of angels, ghosts and deities and may even allow us to communicate with lower frequency entities in the near-future.

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Understand what to know about plasma TVs

February 28th, 2010 by admin

If you've ever thought about buying one of those big plasma TV, now is the time to do so. I've never been so cheap and still with many new features. Plasma TV offers a picture quality unmatched in combination with low image distortion, all in a space-saving flat-screen.

As an added bonus for us, the prices of these TVs have never been so low. It 'simply the best value among thin and flat televisions for your buck.> Plasma TV make it an ideal choice for quality television, and find the right one requires a little 'knowledge and understanding of your needs while remaining within the budget. Here are some steps you can follow when buying a new plasma television.

A decision on what you want. What are you comfortable viewing experience? Can EDTV or "true will" of HDTV. The difference is that an EDTV will be less than one pixel screen HDTV andonly in 42 "or smaller screens. Some people have a difficult time, the difference between the cheaper EDTV Plasma and HD high resolution, but one look at them side by side and you can tell the difference immediately.

Make sure the television is to check the contrast ratio. Try a TV with a higher number because the higher the ratio between "real", the image appears to buy. They range from 800:1 to some as the lowest with a ratio of 3000:1 for newer models.

CheckIf there is a difference between the various television series from the approximate distance from the house. This will help you decide what you want to buy for the price.

Make a list of the types of features that are going to determine those which are important and which are not affected. There are two basic kinds of sets you are looking at: Consumer-set, the best features and more style, and then the other commercial quantities, providingPQ very good for the money, but not much in design and functionality. You end up with more money for things like Brackets, HDMI / DVI series inputs, tuner and speakers with a trade.

Limit the list of templates that you are throwing in those who are not interested in all the criteria and requirements.

What is a little 'research on what other experts and thought patterns on your list. Not only read but also verification of the comments from users for further comments. Start asinformation as possible is important in such costly decisions.

If you have questions or doubts about the picture settings, ambient lighting and the quality of video feed, control other electronic transactions on their TV screens for research.

Not with the number of options that are out of your mind, with new options and features. There will always be a couple of new features and toys on the market at any time. The prices will fall throughout the week.

Notethe fact that by buying from an online retailer you can avoid paying VAT on the TV screen to save hundreds of dollars. Of course you can set for free transport.

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Plasma life forms – Dark Panspermia

February 27th, 2010 by admin

The rise of life on Earth

One goal of Astrobiology is to understand how life began on Earth. Anaxagoras suggested 2500 years ago, a greek philosopher, a hypothesis has emerged as "panspermia" (from the greek "all seeds), which posits that all life, and that permeates everything from the combination of tiny seeds of the cosmos. Astrobiology at NASA and elsewhere are now seriously consider the possibility that life on Earth arose outside of the planetand was taken from space debris impacts on their surface for long periods of time. Recent discoveries are lending more support to the hypothesis of panspermia.

Researchers have discovered a meteorite from Mars that was pretty cool inside, when they reached the earth to support life, eg in the form of bacteria. Another group was able to revive the bacteria more than 250 million years. In 2004, the Stardust mission has discovered a series of complex hydrocarbon molecules, the building blocksfor life on the Wild 2 comet discovered in 2005, the Deep Impact mission, a mixture of clay and organic particles in the comet Tempel 1 Researchers at NASA's Johnson Space Center, Houston, discovered organic materials that form the most distant regions of the system preserved in the solar carbon chondrite Tagish Lake, a rare type of meteorite that is rich in organic (carbon containing) compounds.

The discovery of organic matter in meteorites is of great interestThe scientists created because the material was likely to be on the threshold of the solar system some 4.6 billion years ago and may have seeded the young Earth with the building blocks of life. Scott Messenger, NASA scientist, said: "The organic globules most likely source of the cold molecular cloud, the birth of our solar system, or were at the outermost reaches of the solar system." Mike Zolensky, NASA cosmic mineralogist, says: "If, as suspected, this type of meteoritesown fall to the ground throughout their history, then the earth was with these organic globules at the same time, life was created here. "I suppose all this seeding" is not yet complete.

Primitive meteorites represent the material of the solar system. Every day, hundreds of tons of meteorites fall to earth question. Many asteroids come from the asteroid belt between Mars and Jupiter. Their orbits are large eccentricities and inclinations. There is ample evidence thatAsteroids causing many craters formed on Earth when the planet's surface, including the impact crater of Tunguska in Siberia in 1908, the Barringer Meteorite Crater in Arizona 50,000 years ago and the crater to the north of the Yucatan Peninsula in Mexico before 65 million years ago. Comets have elliptical orbits and take different lengths of time to orbit the sun – some take 3 years, others can take hundreds of years. Millions of comets are probably the Oort cloud, the shape is beyond the orbit of Neptune, and half the distance to the nearest star. Therefore, they may come from the farthest corners of the solar neighborhood.

Dark Meteorites

Dr. Robert Foot of the University of Melbourne, argues that some meteorites, such as those that caused the Tunguska crater is the issue of the Mirror (a component of dark matter is composed, in which particles of different particle equal physicists have tabulated in the "standard model or what> Metaphysics plasma as the particle "standard") and the land without interference from fragments of ordinary matter.

Dark Panspermia

It is possible that space debris containing seeds of life on earth, that dark matter? If so, will revolutionize our theories of evolution.

Let's review the facts. The first thing to consider is whether it is plausible that meteorites, asteroids and comets, in fact, dark matter might harbor.

Why someContaining meteorites, asteroids and comets might Dark Matter

Our galaxy halo of dark matter is assumed that its visible ordinary matter of more than 20 times higher. While the visible galaxy (a disk) is about 120,000 light years across and about 1000 light years thick, the dark halo (a ball) to more than 3 times the distance of more than 300,000 to 400,000 light years from the galactic center. In terms of volume, so the halo is much larger than the visible galaxy.The galaxy is visible as a thin rotating CD sitting in the middle of a large beach ball. Count most of matter in our galaxy is so dark there. Only a very small part is composed of ordinary matter.

The sun and its surroundings are currently grappling with the Local Interstellar Cloud. Went to Cloud about 100,000 years (only in our early human ancestors moved from Africa) and is expected to remain within it for another 10,00020,000 years ago. Leo Blitz of the University of California, and David Spergel of Princeton University believe that the interstellar clouds in the port of dark matter.

The shape of the curve, the rotation of the Milky Way was found to be flat, at distances beyond the edge of the disk of the Milky Way. The rotation curve is plotted with the velocity of the star on one axis and the distance from the galactic center of the radius () on a different axis. Measurements show that after rising from zero in the center to about 200km / s in the interior region, the rotation curve has remained relatively constant, reaching a speed of 200 km / s, 225 km / s to 15 kpc from the galactic center. The sun is about 8.5 kpc from the galactic center and its orbital velocity around the galaxy is about 220 km / s. The orbital speed is much faster than that, what to expect at the same distance from the galactic center within the visible galaxy, suggesting the direct effect of dark matter in the sun.

The density of matter inClose to the sun can, through the sampling of a homogeneous population of bright stars that stretches across the disk of the galaxy are estimated. The average speed of stars and vertical distances through the hard disk provides a measure of the gravitational force that keeps the stars in the disk. The strength of this force throughout the matter density can be estimated. Measurements showed that accounted for the actual number of (visible) stars only half the density. Thisis further proof that dark matter must be close to the sun, in order to eliminate the budget deficit and out to measure the density.

E 'therefore suggested that the comet in its journey to the far reaches of the solar system (beyond the orbit of Neptune) and then on the opposite side, close to the sun, a growing number of dark matter, like sweeping through the solar system and over. Meteorites and asteroids in a similar way to collect the dark matter in the solar system, as it sweepsthrough their orbits. We expect, therefore, that the earth will be affected by space debris, with dark matter every day.

Dark Evolution

After a decline in the habitable zone, meteorites, asteroids and comets, both dark and visible building blocks of life, single and later scored the first multicellular organisms, which developed both normal and dark matter bodies were coupled to together.

After the plasma theory dark, darkMatter consists mainly of a very high energy plasma particles super (sometimes a different parity) – or "plasma dark. By their very high energy (equal or different, these particles) only weakly with ordinary matter (communicated other words, there are only a subtle interaction between the bodies of ordinary and dark matter), or that do not interact with ordinary matter at very high energies. It is assumed that the lowest frequency (orEnergy), dark matter (which may be related, which would be a metaphysician as a "physical-etheric matter") subtle interaction with the biochemical aspects of biological organisms, while the highest frequency are the dark matter (which may be related with what is called the metaphysical "Astral" and other more high-energy-matter) can not interact with ordinary matter.

Meteorites from the dark side scored the first bioplasma contain plasma cells, which are the precursors ofbiochemistry of cells (as Erzilia Lozneanu and Mircea Sanduloviciu Cuza University in 2003, has supported and signed by VN Tsytovich and his colleagues at the Russian Academy of Sciences in 2007). It 'been shown that the plasma can also learn to be self-organization as electronic charges and the plasma becomes polarized. As argued Tsytovich, acted in plasma cell as a form or template for the formation of cell biochemistry. This is consistent with theObservation, often in the literature metaphysics (as Barbara Brennan, and others) that represents the subtle body bioplasma body for the morphogenesis of the biochemical model in 3 +1 dimensional space. This is also in line with the theories of dark matter suggests that dark matter constitutes the framework for the ordinary matter (as Richard Massey, California Institute of Technology and others have reported). But physicists Chung-Pei, associate professor of astronomy at UCBerkeley, concluded that "the Spirit of the visible universe, dark matter universe model.

While the body of carbon-based, usually visible, was the body of the invisible dark matter. It is not excluded that there is a series of invisible bodies, the development of a range of levels of energy and dark matter is an invisible superstructure of the biological body. The bodies of higher energy and the biological body, then co-developed as a composite during the periodCarbon-based biological body.

If the biological body is dead, dark matter, however, continue to develop services on their own. At regular intervals, merged earlier this body of dark matter (with the memories accumulated) with the young bodies of dark matter counterpart embryonic biological body to continue their development with the biological body. The development of this dark matter bodies were therefore under-wand with the evolution of the biological body for long stretches of time. DarknessQuestions people are often described as "subtle body" or "bodies bioplasma" in metaphysics and off-mainstream scientific literature.

The role of water is replaced by plasma LCD

Liquid water is essential for life as a biochemical agent for the transport and protein folding. Its high heat capacity, the ability to remain a liquid in a wide range of temperatures and properties as a solvent ensures a stable and useful for the biochemicalTask. Their importance is relative to biochemical life – not electromagnetic life. It is not necessary for the life that uses electromagnetic fields to form structures and electric fields as transport agents.

Plasmas complex (which consists of bodies bioplasma plasma theory dark) can exist in a state of liquid crystal – similar to biological cells in the body. Particles in a liquid crystal phase are free to move insame way in a liquid, but as they do, so they remain aligned in a certain direction. This feature can enable more than properties of water – liquid crystal displays bioplasma, polarized by electric and magnetic fields as an array electronics, a coordinate and serve one for morphogenesis of fetal carbon model. In this role, the acts of Body bioplasma symbiotic as a catalyst for the development of the body of carbon.

Symbiotic relationship betweenPlasma and carbon-based body

"Symbiosis" is a term used for a close ecological relationship between individuals of two (or more) to describe the different types. Sometimes a symbiotic relationship benefits both species, sometimes a kind of advantage at the expense of others, and in other cases neither species benefits. It was noted by metaphysicians, that the symbiotic relationship between the bioplasma and devices based on carbon is one of "reciprocity" in which both species . Benefit

Dr Robert Foot has proposed a strong coupling between ordinary and mirror photons. He believes that one effect of this force is to see the mirror of the dark matter, as they sometimes travel through the atmosphere. To generalize the theory of metaphysics that the plasma coupling strength between the body and carbon-based organisms invisible bridge bioplasma, keeping them until the death of a body attached. This hypothesis may be cited as the> Plasma-Carbon Lifeforms Symbiotic Hypothesis

(Really) Weird Plasma-Based Life Forms

Hit Dark plasma theory of life which has been described as "ghosts," "Angels" and "gods" and other similar bodies, plasma weird life forms on the base, which are also developed in the dark matter counterparts on Earth. As noted by this writer, the appearance and characteristics of these units, which should be described by several observers have discussed, a categoryelectromagnetic life forms that do not allow controlled investigation, since the state of scientific instruments at our disposal. Much has already been linked to the anatomy and physiology of the written observations of plasma-based devices derived from a metaphysical and interpreted with physics today. You might as basic models for further scientific research is intended strange life – a project that NASA has taken over.

If NASA is to understand the seriouswhole spectrum of life strange, perhaps it should be in our house. Strange life) can not simply "out there" (in Jupiter and other giant planets, the sun and other stars, but it could well be in your living room. Team of the NASA Astrobiology forms of life that would be based, as spirits, angels and deities have been described as a plasma strange categorize living and studying in an academic context, to the extent permitted by current technology. The possible confirmation of theirThere would have revolutionized our understanding of the scale of development at different levels of existence, not just the biochemical level … and, oh yes, he would have far-reaching implications for our own existence, if necessary, after the death of our body made of carbon.

© Copyright Jay Alfred 2007

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Common Plasma TV Problems

February 26th, 2010 by admin

After readjusting the antennae or satellite on your old TV in hopes of fixing that junky picture and waiting on hold for hours with your cable company, can’t you just close your eyes and imagine the flawless picture you would get on a new plasma TV? You spend the next several months dreaming about and saving for this incredible new TV, all the while thinking of the perfect clarity in which you will be able to watch your favorite shows. But before finally choosing the TV you will take home, you should know a little more about some common problems with plasma televisions.

Mounting a plasma TV is an initial problem for many purchasers. Because of their large size, they are often unwieldy and difficult to mount. Most consumers don’t even know that mounting their plasma TV incorrectly automatically voids their warranty! Whether you install the set yourself or have a professional do it, be very careful not to grab the set in the wrong way–doing this can damage the screen and distort the images into a “starburst” pattern on portions of the screen.

A good rule of thumb is to never touch the screen, and a good way to make your investment last is to install a glass cover over the screen as a protective measure. Plasma screens don’t stand up to the wear and tear regular televisions do, especially if you plan on using your plasma television as a gaming console. The Wii system looks great on a plasma screen, but not if you hit the screen by accident! People offer differing opinions on whether the new gaming system causes “burn-in” on plasmas, but you can expect to have no problems if you take extra care during the first 100 hours that you use your TV. The screen should also be dusted on a regular basis to avoid rainbow-like arcs in your pictures.

A few other difficulties with plasma TVs have to do with display. Ghost shadows and flickering during broadcasting have been reported, but both can be minimized with additional accessories from your plasma television manufacturer.

Plasma TV has amazing potential but is still a relatively new technology. As it is still in its early stages, there are bound to be bugs to be worked out. Remember that sometimes simply turning off the set for a little while before turning it back on again can correct a problem.

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