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Ours is a living body… Don’t misuse, don’t overuse, don’t abuse..
Learn how to use and enhance its skills to save from early age injuries,ill health, and diseases. Let’s save our future generation from catastrophe.Make them superior.

Ours is a living body… Don’t misuse, Don’t overuse, Don’t abuse..
Learn how to use, how to improve, and enhance its skills to save from early age injuries, early degenaration, ill health, and diseases.

Let’s save our future generation from catastrophe. Make them superior.

We must understand first how our own body works, which has universal laws and works accordingly within our physical body to prevent us from ill health and diseases first to improve , enhance, and evolve further.

Treating signs and symptoms with chemical and physical mimicry, we just can’t enhance our physiological and psychological state, and therefore, spiritual state and genetic evolution are far away from us.
Physical/ Mechanical defects in our own body which we bring because of our own ignorance with our own fault with its automated use, overuse, misuse, and abuse is more in today’s lifestyle.

Lack of understanding about Laws of Nature as the same is applied to the human body, too, which governs our physical body.
How to apply it on our body to improve and enhance its function, Which seems , is ignored more because of giving Physical mimicry in the name of Physical activities and methods of exercises and stretches which are from joint movement,reflex actions.
I know, in such lifestyle, we are using our body, which has gone into automation, stuck into reflex actions of joints, which are defensive mechanisms of our own body . Therefore, we have lost and forgotten its natural behaviour pattern ( known as ” Dharma”) .
It seems it is not our priority. Hence, maybe we do not want to know, understand, and learn its ideal natural mechanism without understanding . Even though we are suffering, deteriorating But learning to live happily with acceptance. We need to come out of this vicious circle of which is leading us fast towards deformation and diseases .
In today’s lifestyle, it is not easy to understand as it’s not difficult at all, only the pathway and efforts have to be in the right direction.
One must understand the mechanism of this human body and how its automation works . Then only if we really want , can we save human species from diseases. Distortion of inner spaces, inner forces with the outer strong forces acting on our physical body.

To fight with outer forces, our body’s inner defence system and homeostasis/ inner environment is getting disturbed in many ways. Because of its overload of working ,how long will it pull on. It becomes chaos within.
Our uneasiness,illness,sickness, and diseases are signs and symptoms of this anatomical distortion.
Which slows down the physiological function of organ systems, which further leads towards pathological changes. We have to treat these with symptomatic syndromes.
This is high time for us in today’s world. We have to work within our body physically.
It’s not just about feeling good factors giving physical mimicry, mental mimicry, and chemical mimicry..
On the pathway towards health, if necessary, we need chemical mimicry, but physical and mental mimicry is not preventing us and not improving our organ systems.
Otherwise, our world is in a vicious circle of consuming prescribed drugs and its addiction.
Choice is ours.
Engineers, Architects know this better..as I was searching the same as with our body…read it as I can’t explain better…
Mechanical failure arises from the application of external forces that cause a product or component to deform, crack, or break when the yield strength of the material is exceeded. Right.
This applied force may be tensile in nature, compressive, torsional, or impact – with the force being applied over short or long time spans and at varying temperatures and/or humidity conditions.
Any engineered system or individual component can fail from the application of a single overload force. Single (or traumatic) overload can produce either a ductile or a brittle fracture mode. Ductile and brittle failures are terms that simply describe the amount of macroscopic deformation that preceded fracture.

A ductile failure is one where there is substantial distortion or plastic deformation of the failed part. Normally, a component will fail in a ductile manner when it deforms, and the steadily reducing cross-section can no longer carry the applied service load.

Ductile failure can be identified from:
The high degree of deformation and distortion will be present around the fracture zone.
Tearing of material accompanied by appreciable gross plastic deformation and exhibit necking.

The term ‘brittle fracture’ is used when a part is overloaded and breaks with no visible distortion and little or no plastic deformation. Here, a crack will form:
•with little or no necking
•the fracture surface sometimes appears smooth and polished.
In a brittle overload failure, the crack will begin at a point of maximum stress and then grow across the section. Separation of the two halves isn’t quite instantaneous, but crack speeds are very high, approaching the speed of sound in the material. One of the results of this is that the direction of the fracture path is sometimes indicated by Chevron marks that point toward the origin of the failure. The type of fracture, ductile or brittle, should be compared with the nature of the material. Brittle fractures often appear in ductile materials normally. This indicates that either the load was applied very rapidly or some change has occurred in the material, such as low temperature embrittlement or degradation, where the material will no longer act in a ductile manner.

At ambient and elevated temperatures, most materials can fail at a stress, which is much lower than its ultimate strength. This group of failure modes is time-dependent and termed creep deformation and creep rupture. More generally, materials or components undergoing continuous deformation over time under a constant load or stress are said to be creeping. Elastic and viscoelastic deformation can all be included in the creep process, depending on the material, service temperature, and time of deformation.
# Swati Joshi

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