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Frequently Asked Questions

What is ......?

What is M E?

What is the Uncertainty principle?

What is the Observer effect ?

What is the Wave - particle duality?

What is Space time?

What is Quantum physics?

What is Torsion field?

What is the Wave function collapse?

What is Parallel universes?

What is the Heart space?

What is the Zero point field?

What is the Measurement problem?

What is Now?

What is Morphic fields?

What is Quantum light and information?

What is faster-than-light time travel?

What is Scalar waves?

What is Quantum entanglement?

What is Consciousness technology ?

What is imaginedesigned?

What is Resonance?

What is the Holographic universe?

What is the White hole?

What is the Vortex?

What is Matter?

What is Thought ?

What is Imagination?

What is Reality?

What is Perception?

What can I expect?

What is the wave front or pilot-wave ?

What is Master Harmonic Resonance Technology (MHRT)

What is Psycho Emotional Energetics

What is Scalar Energy

According to many scientific studies, scalar energy benefits humans, animals and plants. Here are some health benefits of scalar energy:

- Increases cell energy.
- Boosts energy levels.
- Opens the Chakra.
- Slows aging.
- Enhances body circulation.
- Relieves high blood pressure.
- Unclumps blood cells.
- Reduces pain and inflammation.
- Helps with arthritis and injuries.
- Accelerates body metabolism and weight management.
- Stimulates our natural immune function to kill viruses and bacteria.
- Speeds up natural healing.
- Improves permeability of cell walls.
- Enhances cell nutrient absorption and waste detoxification.
- Normalizes cancer cells.
- Protects our body from cancer.
- Manages stress.
- Improves sleep quality.
- Heals nerves.
- Helps with depression.
- Clears mind.
- Enhances focus and concentration.
- Improves memory.
- Relieves Migraine.
- Reduces the harmful effects of EMF (Electro Magnetic Field) from cell phones, computers, wifi, etc.
- Repairs DNA.
- Protects DNA from damage.
- Enhances plant health and growth.

answers -

What is M E?

The art and science of letting go, using the Quantum access technology to the field of event possibilities in the grid pattern of light & information field to go netual and access infinite possibilites. Suggesting new possibilities to accept and TRUST & give permission for the pattern to show up, certainly increasing the probability expectation for a pathway to transformation with a shift.. M E sometimes appears magical in its expression but is based on the laws and expression of subtle energy physics, the concepts and laws of quantum physics, superstring theory, torsion fields physics and Morphic Resonance theory.. A Quantum access technology.

USE Disclosure - The information presented on this website is educational in nature and is provided only as general information. By viewing this website, you understand that you will be introduced to transformational and consciousness techniques based on quantum physics. To date, M E has yielded remarkable results and appears to have promising benefits. The prevailing premise is that M E with focused attention accesses the “Zero Point Energy Field” where change and transformation shift may occur. By viewing this website you understand that M E could be considered experimental and does not know how you will personally respond to M E and whether M E will help you with a particular concern. Due to the experimental nature of M E, and because it is a relatively new approach and the extent of its effectiveness, as well as any changes that benefit are not fully known, you agree to assume and accept full responsibility for any and all changes associated with using M E and viewing this website. You understand that if you choose to use M E it is possible that sensations or additional unresolved feelings may surface which could be perceived by you as needing change.. You must do your own research before you accept responsibility to start changing with M E. and if you are truly ready for any changes. *All images, video, audio, & text rights to respective owners.

What is the Uncertainty principle?

In quantum mechanics, the uncertainty principle is any of a variety of mathematical inequalities asserting a fundamental limit to the precision with which certain pairs of physical properties of a particle, such as position x and momentum p, can be known simultaneously. The more precisely the position of some particle is determined, the less precisely its momentum can be known, and vice versa

What is the Observer effect ?

In physics, the term observer effect refers to changes that the act of observation will make on the phenomenon being observed. This is often the result of instruments that, by necessity, alter the state of what they measure in some manner. A commonplace example is checking the pressure in an automobile tire; this is difficult to do without letting out some of the air, thus changing the pressure. This effect can be observed in many domains of physics.

the bottom line of quantum physics is: We create the worldwe perceive. Whenever you open your eyes and look around, you are not seeingreality, you are only seeing what your human senses (taste, touch, smell,hearing, sight) are allowing you to see, through your belief system. Sciencehas found out that you are aware of only 2000 bits of information out of the400 Billion bits of information your brain is processing per second. Think about that for a moment…

Where does that other information go?

What is around you right now, that you are not aware of?

What are you not perceiving, that you could be?

Is everyone aware of the same 2000 bits of information,or do we each perceive a slightly different reality?

the role of the observer becomes very important in theHeisenberg uncertainty principle. This scientifically proven principle statesthat the conscious act of observation is a key factor in the formation of ourreality. When you observe something, you affect it. Everyday, you are affectingyour reality. Although, you don’t really change reality, since reality isabsolute. Instead you change how you perceive reality.

What is the Wave - particle duality?

Wave–particle duality postulates that all particles exhibit both wave and particle properties. A central concept of quantum mechanics, this duality addresses the inability of classical concepts like "particle" and "wave" to fully describe the behavior of quantum-scale objects. Standard interpretations of quantum mechanics explain this paradox as a fundamental property of the Universe, while alternative interpretations explain the duality as an emergent, second-order consequence of various limitations of the observer. This treatment focuses on explaining the behavior from the perspective of the widely used Copenhagen interpretation, in which wave–particle duality is one aspect of the concept of complementarity, that a phenomenon can be viewed in one way or in another, but not both simultaneously

What is Space time?

In physics, spacetime (or space–time, space time or space–time continuum) is any mathematical model that combines space and time into a single continuum. Spacetime is usually interpreted with space as existing in three dimensions and time playing the role of a fourth dimension that is of a different sort from the spatial dimensions. From a Euclidean space perspective, the universe has three dimensions of space and one of time. By combining space and time into a single manifold, physicists have significantly simplified a large number of physical theories, as well as described in a more uniform way the workings of the universe at both the supergalactic and subatomic levels.

What is Quantum physics?

The quantum field is basically the sum of all waves of possibilities. Everthing consists of energy and therefore produces a wave. All these waves together interfere with each other and create new combinations of waves. Sometimes particular waves increase in their amplitude (getting bigger) and sometimes waves completely disappear.

Therefore yes, everything contributes to infecting the quantum field. Actually, there is nothing you can do, not to influence it. Every thought, every feeling and every action has its effect in the quantum field.

Quantum mechanics is the body of scientific principles that explains the behavior of matter and its interactions with energy on the scale of atoms and subatomic particles and how these phenomena could be related to everyday life (see: Schrodinger's cat).

Quantum mechanics (QM – also known as quantum physics, or quantum theory) is a branch of physics dealing with physical phenomena at microscopic scales, where the action is on the order of the Planck constant. Quantum mechanics departs from classical mechanics primarily at the quantum realm of atomic and subatomic length scales. Quantum mechanics provides a mathematical description of much of the dual particle-like and wave-like behavior and interactions of energy and matter.

What is Torsion field?

A torsion field (also called axion field, spin field, spinor field, and microlepton field) is a theory of energy in which the quantum spin of particles can be used to cause emanations lacking mass and energy to carry information through a vacuum at one billion times the speed of light.

The behavior of atoms and smaller particles is well described by the theory of quantum mechanics, in which each particle has an intrinsic angular momentum called spin and specific configurations (of e.g. electrons in an atom) are described by a set of quantum numbers. Collections of particles also have angular momenta and corresponding quantum numbers, and under different circumstances the angular momenta of the parts couple in different ways to form the angular momentum of the whole. Angular momentum coupling is a category including some of the ways that subatomic particles can interact with each other.

In atomic physics, spin-orbit coupling, also known as spin-pairing, describes a weak magnetic interaction, or coupling, of the particle spin and the orbital motion of this particle, e.g. the electron spin and its motion around an atomic nucleus. One of its effects is to separate the energy of internal states of the atom, e.g. spin-aligned and spin-antialigned that would otherwise be identical in energy. This interaction is responsible for many of the details of atomic structure.

What is the Wave function collapse?

In quantum mechanics, wave function collapse (also called collapse of the state vector or reduction of the wave packet) is the phenomenon in which a wave function—initially in a superposition of several different possible eigenstates—appears to reduce to a single one of those states after interaction with an observer. In simplified terms, it is the reduction of the physical possibilities into a single possibility as seen by an observer. It is one of two processes by which quantum systems evolve in time, according to the laws of quantum mechanics as presented by John von Neumann.[1] The reality of wave function collapse has always been debated, i.e., whether it is a fundamental physical phenomenon in its own right[2] or just an epiphenomenon of another process, such as quantum decoherence.[3] In recent decades the quantum decoherence view has gained popularity and is commonly taught at the graduate level (e.g. Cohen-Tannoudji's standard textbook[4]). Collapse may be understood as an update in a probabilistic model, given the observed result. The quantum filtering approach[5] [6] [7] and the introduction of quantum causality non-demolition principle[8] allowed for a derivation of quantum collapse from the stochastic Schrödinger equation.

Contents

What is Parallel universes?

The correct quantum mechanical definition of parallel universes is "universes that are separated from each other by a single quantum event."

A parallel universe or alternative reality is a hypothetical or fictional self-contained separate reality coexisting with one's own. A specific group of parallel universes is called a "multiverse", although this term can also be used to describe the possible parallel universes that constitute reality. While the terms "parallel universe" and "alternative reality" are generally synonymous and can be used interchangeably in most cases, there is sometimes an additional connotation implied with the term "alternative reality" that implies that the reality is a variant of our own. The term "parallel universe" is more general, without any connotations implying a relationship, or lack of relationship, with our own universe. A universe where the very laws of nature are different – for example, one in which there are no relativistic limitations and the speed of light can be exceeded – would in general count as a parallel universe but not an alternative reality.

The multiverse (or meta-universe) is the hypothetical set of multiple possible universes (including the historical universe we consistently experience) that together comprise everything that exists and can exist: the entirety of space, time, matter, and energy as well as the physical laws and constants that describe them. The term was coined in 1895 by the American philosopher and psychologist William James.[1] The various universes within the multiverse are sometimes called parallel universes.

The structure of the multiverse, the nature of each universe within it and the relationship between the various constituent universes, depend on the specific multiverse hypothesis considered. Multiple universes have been hypothesized in cosmology, physics, astronomy, religion, philosophy, transpersonal psychology and fiction, particularly in science fiction and fantasy. In these contexts, parallel universes are also called "alternative universes", "quantum universes", "interpenetrating dimensions", "parallel dimensions", "parallel worlds", "alternative realities", "alternative timelines", and "dimensional planes," among others.

The many-worlds interpretation is an interpretation of quantum mechanics that asserts the objective reality of the universal wavefunction and denies the actuality of wavefunction collapse. Many-worlds implies that all by SavingsSlider">possible alternative histories and futures are real, each representing an actual "world" (or "universe"). It is also referred to as MWI, the relative state formulation, the Everett interpretation, the theory of the universal wavefunction, many-universes interpretation, or just many-worlds.

What is the Heart space?

The heart’s electromagnetic field contains certain information or coding, which researchers are trying to understand, that is transmitted throughout and outside of the body.

The heart, like the brain, generates a powerful electromagnetic field, The heart is actually an electronic organ. It produces the strongest source of electricity in our body, forty to sixty times as much as the brain, which is the second biggest producer. When you have an EKG, that's what's being measured. So we have this bioelectricity coming from the heart, and it permeates every single cell in our body.

What is the Zero point field?

Zero-point energy is the lowest possible energy that a quantum mechanical physical system may have; it is the energy of its ground state. All quantum mechanical systems undergo fluctuations even in their ground state and have an associated zero-point energy, a consequence of their wave-like nature. The uncertainty principle requires every physical system to have a zero-point energy greater than the minimum of its classical potential well. This results in motion even at absolute zero. For example, liquid helium does not freeze under atmospheric pressure at any temperature because of its zero-point energy.

Vacuum energy is the zero-point energy of all the fields in space, which in the Standard Model includes the electromagnetic field, other gauge fields, fermionic fields, and the Higgs field. It is the energy of the vacuum, which in quantum field theory is defined not as empty space but as the ground state of the fields. In cosmology, the vacuum energy is one possible explanation for the cosmological constant.[3] A related term is zero-point field, which is the lowest energy state of a particular field.[4]

Zero-point energy is fundamentally related to the Heisenberg uncertainty principle. Roughly speaking, the uncertainty principle states that complementary variables (such as a particle's position and momentum, or a field's value and derivative at a point in space) cannot simultaneously be defined precisely by any given quantum state. In particular, there cannot be a state in which the system sits motionless at the bottom of its potential well, for then its position and momentum would both be completely determined to arbitrarily great precision. Therefore, the lowest-energy state (the ground state) of the system must have a distribution in position and momentum that satisfies the uncertainty principle, which implies its energy must be greater than the minimum of the potential well.

What is the Measurement problem?

The measurement problem in quantum mechanics is the unresolved problem of how (or if) wavefunction collapse occurs. The inability to observe this process directly has given rise to different interpretations of quantum mechanics, and poses a key set of questions that each interpretation must answer. The wavefunction in quantum mechanics evolves deterministically according to the Schrödinger equation as a linear superposition of different states, but actual measurements always find the physical system in a definite state. Any future evolution is based on the state the system was discovered to be in when the measurement was made, meaning that the measurement "did something" to the process under examination. Whatever that "something" may be does not appear to be explained by the basic theory.

To express matters differently (to paraphrase Steven Weinberg [1][2]), the Schrödinger wave equation determines the wavefunction at any later time.If observers and their measuring apparatus are themselves described by a deterministic wave function, why can we not predict precise results for measurements, but only probabilities? As a general question: How can one establish a correspondence between quantum and classical reality?[3]

What is Now?

The present (or now) is the time that is associated with the events perceived directly and in the first time,[1] not as a recollection (perceived more than once) or a speculation (predicted, hypothesis, uncertain). It is a period of time between the past and the future, and can vary in meaning from being an instant to a day or longer. In radiocarbon dating, the "present" is defined as AD 1950.

It is sometimes represented as a hyperplane in space-time,[2] typically called "now", although modern physics demonstrates that such a hyperplane can not be defined uniquely for observers in relative motion. The present may also be viewed as a duration (see specious present).[3][4]

The present is contrasted with the past and the future. Modern physics has not yet been able to explain the perceived aspect of 'the present' as 'eliminator of possibilities' that transfers future into past. A complicating factor is that whilst a given observer would describe 'the present' as a spatial structure with a zero-length time lapse, other observers would associate both time and space to this structure and therefore disagree on what constitutes 'the present'.

The direct experience of the present for each human is that it is what is here, now. Direct experience is of course subjective by definition yet, in this case, this same direct experience is true for all humans. For all of us, 'here' means 'where I am' and 'now' means 'when I am'. Thus, the common repeatable experience is that the present is inextricably linked to oneself.

In the time aspect, the conventional concept of 'now' is that it is some tiny point on a continuous timeline which separates past from future. It is not clear, however, that there is a universal timeline or whether, as relativity seems to indicate, the timeline is inextricably linked to the observer. Thus, is 'now' for me the same time as 'now' for you on a universal timeline, assuming a universal timeline exists? Adding to the confusion, in the physics view, there is no demonstrable reason why time should move in any one particular direction.

Adding substance to the supposition that the timeline view of 'now' may not hold the full picture, the qualities of 'now' or the 'present' in the human direct experience are very different from the qualities of past and future available through memory or anticipation. In the human direct experience, 'now' has a certain aliveness, reality and immediacy not present in our concepts of past and future. Indeed, any experience is always happening 'now', even a re-living of some past event. Thus, there is a deep philosophical case for saying that the present moment is all there ever is, from moment to moment.

What is Morphic fields?

Morphogenetic fields are defined by Sheldrake as the subset of morphic fields which influence, and are influenced by living things.

"Morphic field" is a term introduced by Sheldrake. He proposes that there is a field within and around a "morphic unit" which organizes its characteristic structure and pattern of activity.[19] According to Sheldrake, the "morphic field" underlies the formation and behaviour of "holons" and "morphic units", and can be set up by the repetition of similar acts or thoughts. The hypothesis is that a particular form belonging to a certain group, which has already established its (collective) "morphic field", will tune into that "morphic field". The particular form will read the collective information through the process of "morphic resonance", using it to guide its own development. This development of the particular form will then provide, again through "morphic resonance", a feedback to the "morphic field" of that group, thus strengthening it with its own experience, resulting in new information being added (i.e. stored in the database). Sheldrake regards the "morphic fields" as a universal database for both organic (genetic) and abstract (mental) forms.

That a mode of transmission of shared informational patterns and archetypes might exist did gain some tacit acceptance when it was proposed as the theory of the collective unconscious by renowned psychiatrist Carl Jung. According to Sheldrake, the theory of "morphic fields" might provide an explanation for Jung's concept as well. Also, he agrees that the concept of akashic records, term from Vedas representing the "library" of all the experiences and memories of human minds (souls) through their physical lifetime, can be related to "morphic fields",[20] since one's past (an akashic record) is a mental form, consisting of thoughts as simpler mental forms (all processed by the same brain), and a group of similar or related mental forms also have their associated (collective) "morphic field". (Sheldrake's view on memory-traces is that they are non-local, and not located in the brain.)[21]

Essential to Sheldrake's model is the hypothesis of morphic resonance.[22] This is a feedback mechanism between the field and the corresponding forms of morphic units. The greater the degree of similarity, the greater the resonance, leading to habituation or persistence of particular forms. So, the existence of a morphic field makes the existence of a new similar form easier.

Sheldrake proposes that the process of morphic resonance leads to stable morphic fields, which are significantly easier to tune into. He suggests that this is the means by which simpler organic forms synergetically self-organize into more complex ones, and that this model allows a different explanation for the process of evolution itself, as an addition to Darwin's evolutionary processes of selection and variation.

The hundredth monkey effect is a supposed phenomenon in which a behavior or thought spreads rapidly from one group to all related groups once a critical number of initiates is reached. By generalization it means the instantaneous spreading of an idea or ability to the remainder of a population once a certain portion of that population has heard of the new idea or learned the new ability by some unknown process currently beyond the scope of science

What is Quantum light and information?

Visible light is an electromagnetic wave, consisting of oscillating electric and magnetic fields traveling through space. The frequency of the wave determines its color:

In perturbative quantum field theory, the forces between particles are mediated by other particles. The electromagnetic force between two electrons is caused by an exchange of photons. Intermediate vector bosons mediate the weak force and gluons mediate the strong force. Many of the proposed theories to describe gravities postulate the existence of a graviton particle that mediates it. These force-carrying particles are virtual particles and, by definition, cannot be detected while carrying the force, because such detection will imply that the force is not being carried. In addition, the notion of "force mediating particle" comes from perturbation theory, and thus does not make sense in a context of bound states.

In QFT, photons are not thought of as "little billiard balls" but are rather viewed as field quanta – necessarily chunked ripples in a field, or "excitations", that "look like" particles. Fermions, like the electron, can also be described as ripples/excitations in a field, where each kind of fermion has its own field. In summary, the classical visualisation of "everything is particles and fields", in quantum field theory, resolves into "everything is particles", which then resolves into "everything is fields". In the end, particles are regarded as excited states of a field (field quanta). The gravitational field and the electromagnetic field are the only two fundamental fields in Nature that have infinite range and a corresponding classical low-energy limit, which greatly diminishes and hides their "particle-like" excitations. Albert Einstein, in 1905, attributed "particle-like" and discrete exchanges of momenta and energy, characteristic of "field quanta", to the electromagnetic field. Originally, his principal motivation was to explain the thermodynamics of radiation. Although it is often claimed that the photoelectric and Compton effects require a quantum description of the EM field, this is now understood to be untrue, and proper proof of the quantum nature of radiation is now taken up into modern quantum optics as in the antibunching effect.[1] The word "photon" was coined in 1926 by physical chemist Gilbert Newton Lewis (see also the articles photon antibunching and laser).

This description of quantum mechanics can be extended to describe the behavior of multiple particles, so long as the number and the type of particles remain fixed. The particles are described by a wavefunction ψ(x1, x2, ..., xN, t) which is governed by an extended version of the Schrödinger equation. Often one is interested in the case where then N particles are all of the same type (for example, the 18 electrons orbiting a neutral argon nucleus). As described in the article on identical particles, this implies that the state of the entire system must be either symmetric (bosons) or antisymmetric (fermions) when the coordinates of its constituent particles are exchanged. These multi-particle states are rather complicated to write

What is faster-than-light time travel?

If one were able to move information or matter from one point to another faster than light, then according to special relativity, there would be some inertial frame of reference in which the signal or object was moving backward in time. This is a consequence of the relativity of simultaneity in special relativity, which says that in some cases different reference frames will disagree on whether two events at different locations happened "at the same time" or not, and they can also disagree on the order of the two events (technically, these disagreements occur when the spacetime interval between the events is 'space-like', meaning that neither event lies in the future light cone of the other).[25] If one of the two events represents the sending of a signal from one location and the second event represents the reception of the same signal at another location, then as long as the signal is moving at the speed of light or slower, the mathematics of simultaneity ensures that all reference frames agree that the transmission-event happened before the reception-event

However, in the case of a hypothetical signal moving faster than light, there would always be some frames in which the signal was received before it was sent, so that the signal could be said to have moved backwards in time. And since one of the two fundamental postulates of special relativity says that the laws of physics should work the same way in every inertial frame, then if it is possible for signals to move backwards in time in any one frame, it must be possible in all frames. This means that if observer A sends a signal to observer B which moves FTL (faster than light) in A's frame but backwards in time in B's frame, and then B sends a reply which moves FTL in B's frame but backwards in time in A's frame, it could work out that A receives the reply before sending the original signal, a clear violation of causality in every frame. An illustration of such a scenario using spacetime diagrams can be found here.[26] The scenario is sometimes referred to as a tachyonic antitelephone.

The general theory of relativity extends the special theory to cover gravity, illustrating it in terms of curvature in spacetime caused by mass-energy and the flow of momentum. General relativity describes the universe under a system of field equations, and there exist solutions to these equations that permit what are called "closed time-like curves," and hence time travel into the past.[18] The first of these was proposed by Kurt Gödel, a solution known as the Gödel metric, but his (and many others') example requires the universe to have physical characteristics that it does not appear to have.[18] Whether general relativity forbids closed time-like curves for all realistic conditions is unknown.

What is Scalar waves?

In quantum field theory, a scalar field is associated with spin-0 particles. The scalar field may be real or complex valued. Complex scalar fields represent charged particles. These include the charged Higgs field of the Standard Model, as well as the charged pions mediating the strong nuclear interaction.[4]

In mathematics and physics, a scalar field associates a scalar value to every point in a space. The scalar may either be a mathematical number, or a physical quantity. Scalar fields are required to be coordinate-independent, meaning that any two observers using the same units will agree on the value of the scalar field at the same point in space (or spacetime). Examples used in physics include the temperature distribution throughout space, the pressure distribution in a fluid, and spin-zero quantum fields, such as the Higgs field. These fields are the subject of scalar field theory

What is Quantum entanglement?

Quantum entanglement occurs when particles such as photons, electrons, molecules as large as buckyballs,[1][2] and even small diamonds[3][4] interact physically and then become separated; the type of interaction is such that each resulting member of a pair is properly described by the same quantum mechanical description (state), which is indefinite in terms of important factors such as position,[5] momentum, spin, polarization, etc.

According to the Copenhagen interpretation of quantum mechanics, their shared state is indefinite until measured.[6] However, the Von Neumann interpretation concludes that the entire physical universe can be made subject to the Schrödinger equation (the universal wave function). Since something "outside the calculation" is needed to collapse the quantum wave function, the collapse must be caused by the consciousness of the observer. [7] Quantum entanglement is a form of quantum superposition. When a measurement is made and it causes one member of such a pair to take on a definite value (e.g., clockwise spin), the other member of this entangled pair will at any subsequent time[8] be found to have taken the appropriately correlated value (e.g., counterclockwise spin). Thus, there is a correlation between the results of measurements performed on entangled pairs, and this correlation is observed even though the entangled pair may have been separated by arbitrarily large distances.[9]In Quantum entanglement, part of the transfer happens instantaneously. [10] Repeated experiments have verified that this works even when the measurements are performed more quickly than light could travel between the sites of measurement: there's no slower-than-light influence that can pass between the entangled particles. [11]

This behavior is consistent with quantum-mechanical theory, has been demonstrated experimentally, and it is accepted by the physics community.[citation needed] However there is some debate[12] about whether a possible classical underlying mechanism could explain why this correlation occurs instantaneously even when the separation distance is large. The difference in opinion derives from espousal of various interpretations of quantum mechanics.

What is MED, MHRT, Holosets...

Master Energy Dynamics (MED) explores physiological, biochemical and energetic reactions to the stress adaptation response and teaches the body’s holographic systems to move out of those reactions and create a new, healthy, and vital state of being. The Master Harmonic Resonance Technology (MHRT) is designed to clear deep-seated energetic imbalances and harmonic interference patterns from the body’s energy field. MHRT is designed to address both structural and functional components of the Triad of Health (Structure, Organ Function, Balance components of the Auric Fields). Combining M.E.D. and MHRT clears the way for a more complete healing to occur. Master Harmonic Resonance Technology (MHRT) was developed by Dr. Richard Bartlett in a download that he received intuitively from his guides, or angels as they call themselves. This protocol is a complete system of healing designed to clear deep-seated energetic imbalances and harmonic interference patterns from the body’s energy field clearing the way for a more complete healing to occur.

Through
the Holo-Synchronous Energetic Technology systems (HOLO-SETS) we
explore further beyond Master Energy Dynamics (M.E.D.) + Master Harmonic
Resonance Technology (MHRT) and go deep into the path of the functional
adaptations to stress-related and/or disease conditions of the body
after going through the reflexes and patterns involved in M.E.D. and
then accessing specifically created Modules that work with the pathways
and energies of diseased conditions.