Nanoparticle Analysis show atomic particles inside the nanoparticles,  Only Major Research Institutions such as Stanford, that have Multi-Million Dollar equipment can produce 2nm particles
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Topics Discussed: The most potent colloidal silver 3000 to 18000 PPM
Learn why atomic particles make sense:

  • Check Our Large Product Line: In addition to our superior quality, 3000 to 18000 PPM Colloidal Silver, we also offer MANY other Metallic Elements with Atomic Size Particles in various concentrations. We are not limited to just Silver and Gold.

GoldenGevity High PPM Products
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Understanding the Particle Size of Atoms vs Nanoparticles
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Imagine:  TRILLIONS of individual Silver atoms, attached to water molecule clusters, and when in the blood stream, the water molecules dissolve and release hundreds of thousands silver atom "microbullets" that produces a "Cluster Bomb Effect" on those stubborn bugs!

The Rice University has confirmed that Low PPM Products do not work efficiently and that they cause pathogens to build immunity instead of killing them, there is just not enough PPM to kill off the pathogens.

Understanding Why You Need Colloidal Silver NOW.
Nanoparticle Analysis show atomic particles inside the nanoparticles,  Only Major Research Institutions such as Stanford, that have Multi-Million Dollar equipment can produce 2nm particles
Stanford Engineering Analysis of 2 nm and 5 nm silver nanoparticles with visible silver atoms - proof that nanoparticles contain hundreds of thousands (or more) atomic silver particles. Please note: Only major research institutions like Stanford have multimillion dollar equipment to make and view such particle sizes. 
All viruses and bacteria vary in size:
Virus and Bacteria Size
Particle Size is extremely significant when it comes down to dealing with pathogens.

Atomic particles in distilled water cannot be analyzed using the conventional analytical processes that apply to nanoparticles. The reason for this is because atomic size particles are too small to be seen even with an electron microscope, they are so small that they do not reflect light because they are smaller than light waves. A destructive test needs to be done to verify metal content, with ICP Plasma Arc Spectrometer.

Many companies promote their Low PPM Products with images that 
are done with an electron Microscope.

If you look carefully, you will see that their particles sizes are not 
consistent and can be tiny specs to massive nanoparticles that are 
over 300 nm.

That is because their electrolysis is basically two silver electrodes 
under the water that barely touch, the electricity breaks down the
 particles, but it does not do it uniformly. 

There is NO way to control what the electrodes produces in the Ionic and 
nanoparticle products, and that is why you see color variations from 
opaque to dark colors.  

Then there is the "Zoom Factor" in their pictures
 to consider; they can zoom out, and "screen capture" the image  to make 
it look like their products have super small particles.

​Here are the facts:

  • A Micrometer is a thousand times larger than a nanometer, being 1 millionth (1,000,000) of a meter in size. Micrometers are also referred to as microns and are 1/25, 250th of an inch.
  • A Nanometer is 1/25.4 millionth of an inch (1/25,250,000th) or 1 billionth (1,000,000,000) of a meter in size.
  • An Atom is approximately 1/250 millionth (1/250,000,000) of an inch in size.
  • Nanoparticles are particles that are measured in nanometers (1 billionth of a meter).
  • Nanoparticles that are 1 nanometer in size are 25,250,000th of an inch.
  • Micro-particles are particles measured in micrometers (1 millionth of a meter) or microns.
  • Micro-particles that are 1 micrometer in size are 1/millionth of a meter or 1/25,250th of an inch in size.
  • Colloidal silver nanoparticles were measured as small as 8 nanometers in size (which is 8 billionths of a meter), but mosnanoparticles are much larger than this.
  • Ionic and nanoparticle solutions of silver were found to contain particles as large as 200 nanometers (or 200 billionths of a meter) in size.
  • In an inch sized area126,250 particles would fit if they were as big as 200 nanometers.
  • Singular digit sized nanoparticles (those between 3-9 nanometers in size), of silver could penetrate some larger kinds of bacteria if they remained as monatomic ions, but few of them do for long because of magnetic particle attraction.
  • Monatomic ions of colloidal silver are usually unstable and quickly change into polyatomic ions and then later transform into molecular ions.
  • Molecular ions are groupings of large, micrometer size particles that are built from many layers of nanometer sized, polyatomic ions that have gathered together. Molecular ions are as large as or larger than many viruses, bacteria and pathogens and therefore are unable to penetrate them (which would cause the most damage).
  • Ionic and nanoparticle colloidal silver solutions currently for sale, contain mostly molecular ions of silver made of large particles with a big surface areaThis is not a desirable quality.
  • Atomic particles of colloidal silver are at least 10 times smaller than the smallest nanoparticles that are from 3-9 nanometers in size.
  • Atomic sized particles of colloidal silver are often hundreds or thousands of times smaller than ionic or nanoparticle colloidal silver due to these particles forming large molecular ion groups.

  • In the same one inch area that you could fit 126,250 nanoparticles that were 200 nanometers in size, you could fit 200 Million (200,000,000) atomic sized particles.

  • Colloidal silver in Ionic and nanoparticle sized solutions, kill off small quantities of harmful microorganisms by repeatedly bruising, cutting, shocking and then finally poisoning the weakest ones. Minor results occur by utilizing molecular sized nanoparticles of silver. These, combined with chemicals like silver chlorides, bromides, phosphates, hydrochloric acid, cyanide and other chemical residues, overwhelm the microorganisms killing off a few in the process. Small amounts are killed off in this manner and the effects are not easily noticeable.

  • Atomic sized particles of colloidal silver kill off large quantities of harmful microorganisms by penetrating them with sufficient momentum which causes irreparable damage. In addition to causing severe penetration damage, they also have a stronger electrical charge than nano and ionic particles have. So as they penetrate viruses, bacteria and other pathogens, they simultaneously shock the microorganisms with multiple electrical jolts. These minute discharges cause further damage which serves to quicken the process of killing them.

Hundreds of Thousands of Atoms inside the Nanoparticle
Atoms Perfected Size for Pathogen Penetration
Contrary to popular belief, silver nanoparticles bounce off viruses because the particles are just too large, bulky and cumbersome since most nanoparticles are the same size as the virus.
Colloida Silver Electolysis Process Does not produce consitant particle sizes
The fundamental difference between Low 10, 20 to 40 PPM of Nanoparticles and High PPM of Atomic Particles are a few:

1. Atomic Particles are no longer in a Metallic State but are in fact Crystalline or Mineral Form, the absolute smallest particle size for dietary consumption. Nanoparticles are Metallic and still have to be broken down by stomach acids to turn them into useful nutrients.

 2. The PPM Factor: The availability of Silver Particles to attack multi-millions of viruses that have taken occupation of its host. Ridiculously Low PPM is not going to put a scratch on them!

3. Our process attaches Hundreds of Thousands of Atomic Particles to water molecule clusters. Each cluster is counted as ONE (1) PPM and is measurable with a TDS Meter. We can make 20 to 18,000 PPM which is unmatched in the Industry.

4. Each water molecule cluster (or PPM) may contain an excess of hundreds of thousands of atomic silver particles. 

That is a Monumental Breakthrough Fighting Stubborn Viruses!​

The Process that produces nanoparticle colloidal silver is unreliable in generating consistent and constant particles sizes, and when left operating too long creates toxic colloidal silver.

Nanoparticles are produced from 2nm to 200nm in the same solution, which may also include some ions. One of the known problems with nanoparticles is that they have been reported to get trapped in the kidneys, urinary tract, as well as the skin tissue and create other health problems.​
Colloidal silver atoms are by far the most powerful and lethal to viruses, bacteria and free radicals. These bugs invade the body from the inside out, and can cause severe sickness, premature aging and a possibly a quick death. 

Contrary to popular belief, silver nanoparticles bounce off viruses because the particles are just too large, bulky and cumbersome since most nanoparticles are the same size as the virus.

Imagine someone throwing a basketball at high speed at someone while hoping to do some damage. The basketball will not penetrate the person but it will cause severe bruising and pain due to the large surface area.  Now consider a bullet, it will kill or severely injure the intended target because of its tiny size. 

In this case, the atom would be comparable to a bullet penetrating into viruses, bacteria, or parasites.  

Just imagine what would occur if 3,000 to 18,000 water molecule clusters each released hundreds of thousands micro bullets (which could mean over 1 billion micro bullets), you would think that it would have a positive outcome right? They do check out our testimonials page.

That is the type of effect you can expect from the atomic size particles.These lethal particles effectively penetrate germs, viruses, bacteria and free radicals killing them quickly and efficiently.

Perfected Atomic Particle Trace Minerals 
second to none in performance and effectiveness.
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Colloidal Silver