The first 200 lines.
Water... the most common substance on Earth.
It is with us every moment of our lives.
Like the human body, the Earth maintains a constant amount
of water.
If the quantity of water is reduced, or at least one
of its amazing features is changed, then life on Earth
will vanish.
Just like you, Earth is a living, dynamic being.
It has veins and arteries with water
flowing through it, which are connected
to one large thriving heart, the ocean.
It evaporates water and returns it back
to the hydrologic cycle as rain, falling down
on mountain tops, which again form veins and arteries that
return to the ocean.
It is this constant water circulation
that keeps the planet alive.
We are just like the surface of the Earth... at least 70% water.
We also have a heart and 60,000 miles of veins and arteries.
And like our planet, it is water that
gives us life, replenishing ourselves in a continuous water
cycle.
The system of the universe exists
as a single, perfect organism.
All of its parts, including us and our Earth,
are inseparably bound together by huge streams of information.
And on our planet, water plays the key role
in how the information is exchanged.
In effect, it is the medium through which
all nature is governed.
Our Earth is a giant container of water in which
all forms of life arose.
And every living thing is, itself, essentially a container
of water.
Depending on age, a human being is made up of 70 to 90% water.
An adult drinks approximately 2.5 liters of water each day
in order to sustain his normal life functions.
Another 1.5 liters is absorbed through the skin
during bathing or showering.
Science has not yet been able to answer the question of why
water is the only substance on the planet that
can exist in three states... Liquid, solid, and gaseous.
Why does water have the highest surface tension of all liquids?
Why is it the most powerful solvent on Earth?
And how in defiance of the Earth's gravity
is water able to rise through the trunks of gigantic trees
against tens of atmospheres of pressure?
In a seed, for example, it reaches 400 atmospheres
at the moment of germination.
That's why a plant shoot can break through asphalt
with ease.
The water, of course, remains water.
But its structure, like a nervous system,
reacts to any irritation.
The water molecule is a dipole.
One end is charged more negatively
and the other more positively.
This is a well known phenomenon.
A molecule acting through its negatively charged end
can attract another molecule by its positively charged end.
And then another molecule.
This is how the structure of water is formed.
It is fluid and short lived.
Somehow, among the changing forms,
one can see stable formations.
These are called clusters.
It is within these structures that water retains
information it has captured.
Any substance coming into contact with water
leaves a trace in the water.
Had our ancestors guessed this when
they used silver vessels to turn ordinary water into healing
water?
In the 1960s in a closed laboratory in Germany,
something inexplicable occurred.
A laboratory assistant dropped a vacuum
sealed ampule containing virulent poison into a vessel
with distilled water.
Trying to conceal her blunder, she just left it in the water.
The ampule was discovered only three days later.
Since it was sealed, it did not pose any special hazard
and the matter was closed.
Later, the water was given to laboratory mice...
And they died.
Immediately the water was thoroughly tested.
Chemically, it proved to be impeccably clean.
It meant that the water without direct contact with the poison
somehow adopted its properties.
In other words, it received negative information
from the poison.
A fantastic hypotheses was put forward,
a hypotheses that could explain water's unpredictable behavior.
Water has memory.
Experiments done in many countries around the world
have shown that water receives and makes
an imprint of any outside influence, remembering
everything that occurs in the space that surrounds it.
It makes no difference where the water is located.
If you transport water to outer space,
it remains sensitive to what it encounters.
NASA scientists discovered this when they released water
in a low gravity environment.
Pure water is hard to make, it's hard to get,
and it's kind of reactive.
It's very polar liquid.
And so it tends to dissolve things and grab things,
and they become what we call surface active.
If you take a drop of oil or something like that,
it won't do that.
Ethanol or alcohol won't do that.
But water is a highly contaminable surface.
If you fill up a water balloon, there
was some junk on the mandril that they
used to make the balloon in the first place that's
on the inside of the balloon that's instantly in the liquid.
Now, when you deploy that, that junk that's in the liquid then
goes to the surface.
And so it changes the surface properties somewhat.
Water drops oscillate in reaction
to the burst balloon membrane.
It takes 45 minutes for it to stabilize and form
a perfect sphere.
Further experiments at low gravity
allowed astronauts to study a sphere of water 75 millimeters
in diameter with an air bubble inside.
When water droplets were injected into the bubble,
they created collision dynamics in action.
Most of the collisions were created
in a rebound or elastic fashion, bouncing off
each other and the wall.
But on occasion, an internal bubble would oscillate
and the momentum would carry it across the interface
in a mass transfer.
The structure of water means how its molecules are organized.
We can see how water molecules join together into groups.
Scientists came up with the idea that these clusters
work as memory cells of a certain sort in which water
records the whole history of its relationship with the world
as if on magnetic tape.
If you consider a cluster as a group of specific molecules,
then it can survive only a short amount of time.
But if you consider it as a structure whereby molecules can
leave and other molecules come in,
the cluster can last effectively for a very long time.
The stability of the cluster structures
confirm the hypothesis that water
is capable of recording and storing information.
It may be the single most malleable computer, which can...
It's like a computer memory.
It's a memory of information.
You must know how it is arranged.
It is like the alphabet.
If I give you the alphabet, you don't know a word,
you don't a letter, you don't know a sentence.
So the molecular structure is the alphabet of water.
And you must make a sentence out of water.
And you can change the sentence.
This leads us to the idea that information is either made up
of water or exists in it.
Like sculptures that have not yet
been created are present in a piece of clay,
so the images of all future living organisms
were present in the water.
Water merely brought to life a preexisting conception.
But for any process to begin requires an impulse.
Wise men of ancient times believed that for life to arise
was a primordial divine spark.
This spark imprinted in the water
the sequence of future development.
The entire course of evolution provides evidence of this.
There are such animals, for example, jellyfish.
Jellyfishes are 99.9% water.
And we as biologists study the left 0.1%
of these jellyfish in order to understand how this bulk water,
why it is a life.
Probably this water is alive, and this 0.1%
simply allows it to be a life.
We ourselves when we're newborns or when we were fetuses,
we were 95 or even more percent of water.
We're already alive.
I think that scientists should look more closely at how water
interacts with their molecules.
At a molecular level, it creates the structure of DNA.
We wouldn't have the DNA helix without water.
It creates the structure of proteins.
So our bodies wouldn't work without the water.
Water is a universal computer that
reveals any biological program, and thus water
is the only thing that can change it.
Water has a life cycle of its own,
flowing from melting glaciers down steep mountain slopes.
During the journey down, the crystal streams
are filled with the energy of the sun.
They absorb information about the properties of the soil,
about the composition of minerals and rocks.
The impressions of such water are full of fresh air.
These impacts change water structurally.
Meanwhile, for a human being, water
remains the same: Without taste, without color,
and without odor.
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