It’s Shifted/At the PRECIPICE💥⚠️WWG1WGA the way to the finish line🏁 👉In The Right Lane for GOD & Country🙌🏻JESUS/TRUMP/AWAKE PATRIOT/STC

In response The Mac to his Publication

This is extremely familiar. Where would i have seen this previously? 🤔

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It’s Shifted/At the PRECIPICE💥⚠️WWG1WGA the way to the finish line🏁 👉In The Right Lane for GOD & Country🙌🏻JESUS/TRUMP/AWAKE PATRIOT/STC

In response The Mac to his Publication

well at first I thought it looked like something I previously saw in an Elon Musk rabbit hole. But, Digging further into the rabbit hole, I found ties to the gov, Which started sounded suspicious in itself. Then i found this👇Right direction? http://thegipster.blogspot.com/2016/01/serco-corporate-octopus-with-tentacles.html?m=1

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Ultrasound waves can be generated by material with a piezoelectric effect. The piezoelectric effect is a phenomenon exhibited by the generation of an electric charge in response to a mechanical force (squeeze or stretch) applied on certain materials.

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In response The Mac to his Publication

by A Schroeder · 2009 · Cited by 420 — Recently, the ability of ultrasound to induce localized and controlled drug release from liposomes, utilizing thermal and/or mechanical effects, has been shown. This review, deals with the interaction of ultrasound with liposomes, focusing mainly on the mechanical mechanism of drug release from liposomes using LFUS.

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Among the various particulate delivery systems, liposomes—bubble-like nano/microsized lipidic bilayer structures—have shown great promise as an antigen-carrying vehicle. Few liposomal vaccines have been introduced to the market. The key advantages of liposomes as a vaccine delivery system are their ability to protect antigens against degradation, carry single or multiple hydrophilic and lipophilic antigens, control the release of antigens, enhance cellular uptake, and improve antigen-specific immune responses.

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Physicochemical properties of liposomes such as size, charge, and membrane fluidity can be modified to improve their ability to target antigen-presenting cells. Understanding how the different physicochemical properties of liposomes affect the overall immune response is important for the development of successful liposome-based vaccines. This chapter discusses the use of liposomes as vaccine carriers, the impacts of formulation parameters on liposome-mediated immunity, the different types of liposomes, and their manufacturing perspectives from the bench to large scale.

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In response The Mac to his Publication

A liposomal influenza vaccine (INFLUSOME-VAC) was developed with the objective of overcoming the major drawbacks of the currently used influenza vaccines: their relatively low efficacy in certain high-risk groups (the elderly, infants, the immunosuppressed) and the need for annual immunization.

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The incorporation of ultra-fine particles into a Portland-cement paste within a concrete mixture in accordance with top-down approach of nano technology alters the concrete's material properties and performance by reducing the void space between the cement and aggregate in the cured concrete. This improves strength, durability, shrinkage and bonding to steel reinforcing bars.

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Decorative plate made of Nano concrete with High-Energy Mixing (HEM)

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The photon avalanche (PA)

mechanism uses photon pump intensity thresholds

to control the luminescence intensity, and can therefore have the highest upconversion efficiency with

strong emissions.

This phenomenon exploits cross-relaxation to increase the

excited state population.

Cross-relaxation is a process in which an excited state ion transfers energy to a

ground state

ion of the same type producing two excited ions of intermediate energy.

Although PA is seen in some systems, it is the least observed mechanism for

upconversion.

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The ground state

of a quantum-mechanical system is its lowest-energy state; the energy of the ground state is known as the

zero-point energy of the system.

An excited state is any state with energy greater than the ground state.

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ground zero
noun

1.
the point on the earth's surface directly above or below an exploding nuclear bomb.

2.
a starting point or base for an activity.

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n. (General Physics) the splitting of an atomic nucleus into approximately equal parts, either spontaneously or as a result of the impact of a particle usually with an associated release of energy. Sometimes shortened to: fission Compare nuclear fusion.

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An artificial physical system containing electrons in discrete quantum states (resembling those of electrons within atoms); specifically = "quantum dot".

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dipole moment
PHYSICS•CHEMISTRY
the mathematical product of the separation of the ends of a dipole and the magnitude of the charges.

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The magnitude of charge carried by an electron or proton is called the fundamental unit of charge. The fundamental unit of charge has the value 1.602 × 1 0 − 19 C 1.602 times {10^{ - 19}}C 1. 602×10−19C. It is also called the elementary charge.

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the magnitude of the electric field (E) produced by a point charge with a charge of magnitude Q, at a point a distance r away from the point charge, is given by the equation E = kQ/r2, where k is a constant with a value of 8.99 x 109 N m2/C2.

Magnitude is the quantitative value of seismic energy. It is a specific value having no relation with distance and direction of the epicentre. We can say that magnitude is the size of an earthquake. ... It is a logarithmic scale in which magnitude increases 10 times with each increase in number.

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Only people mentioned by @TheMac in this post can reply

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An earthquake (also known as a quake, tremor or temblor) is the shaking of the surface of the Earth resulting from a sudden release of energy in the Earth's lithosphere that creates seismic waves.

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Seismic waves are waves of energy that travel through Earth's layers, and are a result of earthquakes, volcanic eruptions, magma movement, large landslides and large man-made explosions that give out low-frequency acoustic energy. Many other natural and anthropogenic sources create low-amplitude waves commonly referred to as ambient vibrations. Seismic waves are studied by geophysicists called seismologists. Seismic wave fields are recorded by a seismometer, hydrophone (in water), or accelerometer.

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