Storm Kennedy
@Storm1721
01 February, 07:27
4734
17-Sep-2020 4:40:53 PM EDT
8kun/qresearch10685190
Focus on content [information].
Research for yourself.
gatekeeper
noun
a person that controls access, as to information, often acting as an arbiter of quality or legitimacy:
an open internet allows innovators to bypass traditional gatekeepers and promote their work on its own merit.
a guardian; monitor
Deploy camouflage.
Drop all references re: 'Q' 'Qanon' etc. to avoid ban/termination _censorship install.
Algos [sniffers] bypass.
Keep charging, Midnight Riders!
[Revere's 'Midnight' Ride]
Delivery of free-information.
[bypa
17-Sep-2020 4:40:53 PM EDT
8kun/qresearch10685190
Focus on content [information].
Research for yourself.
gatekeeper
noun
a person that controls access, as to information, often acting as an arbiter of quality or legitimacy:
an open internet allows innovators to bypass traditional gatekeepers and promote their work on its own merit.
a guardian; monitor
Deploy camouflage.
Drop all references re: 'Q' 'Qanon' etc. to avoid ban/termination _censorship install.
Algos [sniffers] bypass.
Keep charging, Midnight Riders!
[Revere's 'Midnight' Ride]
Delivery of free-information.
[bypa
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The Mac
@TheMac
01 February, 07:33
In response Storm Kennedy to his Publication
The process of making
or declaring a person legitimate.
Le gi ta ma cy
opposite: Joe Biden is delegitamate.
or declaring a person legitimate.
Le gi ta ma cy
opposite: Joe Biden is delegitamate.
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The Mac
@TheMac
01 February, 07:35
In response The Mac to his Publication
algos (sniffers) bypass?
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The Mac
@TheMac
01 February, 07:36
In response The Mac to his Publication
a road that passes around something, such as a residential area· a circumvention· a section of pipe that conducts a fluid around some other fixture an electrical shunt (medicine) an alternative passage created to divert a bodily fluid around a damaged organ; the surgical procedure to construct such a bypass·to avoid an obstacle etc, by constructing ...
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The Mac
@TheMac
01 February, 07:38
In response The Mac to his Publication
circumvention (countable and uncountable, plural circumventions)
The act of evading by going around (bypassing).
The act of prevailing over another by fraud or deception
Synonyms: deception, fraud, imposture, delusion
The act of evading by going around (bypassing).
The act of prevailing over another by fraud or deception
Synonyms: deception, fraud, imposture, delusion
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The Mac
@TheMac
01 February, 07:39
In response The Mac to his Publication
circumvent (third-person singular simple present circumvents, present participle circumventing, simple past and past participle circumvented)
(transitive) to avoid or get around something; to bypass
(transitive) to surround or besiege
(transitive) to outwit or outsmart
(transitive) to avoid or get around something; to bypass
(transitive) to surround or besiege
(transitive) to outwit or outsmart
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The Mac
@TheMac
01 February, 07:39
In response The Mac to his Publication
circumventable (comparative more circumventable, superlative most circumventable)
Capable of being circumvented.
Capable of being circumvented.
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The Mac
@TheMac
01 February, 07:41
In response The Mac to his Publication
outwit (third-person singular simple present outwits, present participle outwitting, simple past and past participle outwitted)
(transitive) To get the better of; to outsmart, to beat in a competition of wits.
Synonyms
outfox, outguess, outsmart, overreach
(transitive) To get the better of; to outsmart, to beat in a competition of wits.
Synonyms
outfox, outguess, outsmart, overreach
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The Mac
@TheMac
01 February, 07:42
In response The Mac to his Publication
outsmart (third-person singular simple present outsmarts, present participle outsmarting, simple past and past participle outsmarted)
(transitive) To beat in a competition of wits.
(transitive) To beat in a competition of wits.
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The Mac
@TheMac
01 February, 07:44
In response The Mac to his Publication
The design of smart dust sensors is a new frontier in the miniaturisation of lab-on-a-chip devices, since the traditional model of a passive cartridge inserted into a hand-held or desktop device has to be abandoned. The smart dust concept originated in the 1990s, but the size of the assembled microelectronic devices exceeded a cubic millimetre.
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The Mac
@TheMac
01 February, 07:46
In response The Mac to his Publication
Biosensors can be miniaturized by either injecting smaller volumes into micro- and nanofluidic devices or immersing increasingly sophisticated particles known as 'smart dust' into the sample.
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The Mac
@TheMac
01 February, 07:47
In response The Mac to his Publication
Smartdust is a system of many tiny microelectromechanical systems (MEMS) such as sensors, robots, or other devices, that can detect, for example, light, temperature, vibration, magnetism, or chemicals.
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The Mac
@TheMac
01 February, 07:48
In response The Mac to his Publication
Bio-MEMS is an abbreviation for biomedical (or biological) microelectromechanical systems. Bio-MEMS have considerable overlap, and is sometimes considered synonymous, with lab-on-a-chip (LOC) and micro total analysis systems (μTAS). Bio-MEMS is typically more focused on mechanical parts and microfabrication technologies made suitable for biological applications. On the other hand, lab-on-a-chip is concerned with miniaturization and integration of laboratory processes and experiments into single (often microfluidic) chips.
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The Mac
@TheMac
01 February, 07:50
In response The Mac to his Publication
In this definition, lab-on-a-chip devices do not strictly have biological applications, although most do or are amenable to be adapted for biological purposes. Similarly, micro total analysis systems may not have biological applications in mind, and are usually dedicated to chemical analysis. A broad definition for bio-MEMS can be used to refer to the science and technology of operating at the microscale for biological and biomedical applications, which may or may not include any electronic or mechanical functions.
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The Mac
@TheMac
01 February, 07:50
In response The Mac to his Publication
The interdisciplinary nature of bio-MEMS combines material sciences, clinical sciences, medicine, surgery, electrical engineering, mechanical engineering, optical engineering, chemical engineering, and biomedical engineering. Some of its major applications include genomics, proteomics, molecular diagnostics, point-of-care diagnostics, tissue engineering, single cell analysis and implantable microdevices.
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The Mac
@TheMac
01 February, 07:51
In response The Mac to his Publication
Optical engineering is the field of study that focuses on applications of optics. Optical engineering deals with design of optical instruments such as lenses, microscopes, telescopes, and other equipment that utilizes the properties of light using physics and chemistry.
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The Mac
@TheMac
01 February, 07:52
In response The Mac to his Publication
Optical physics is the study of the generation of electromagnetic radiation, the properties of that radiation, and the interaction of that radiation with matter, especially its manipulation and control. It differs from general optics and optical engineering in that it is focused on the discovery and application of new phenomena.
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The Mac
@TheMac
01 February, 07:53
In response The Mac to his Publication
There is no strong distinction, however, between optical physics, applied optics, and optical engineering, since the devices of optical engineering and the applications of applied optics are necessary for basic research in optical physics, and that research leads to the development of new devices and applications. Often the same people are involved in both the basic research and the applied technology development, for example the experimental demonstration of electromagnetically induced transparency by S. E. Harris and of slow light by Harris and Lene Vestergaard Hau.
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The Mac
@TheMac
01 February, 07:54
In response The Mac to his Publication
Researchers in optical physics use and develop light sources that span the electromagnetic spectrum from microwaves to X-rays. The field includes the generation and detection of light, linear and nonlinear optical processes, and spectroscopy. Lasers and laser spectroscopy have transformed optical science.
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The Mac
@TheMac
01 February, 07:54
In response The Mac to his Publication
Major study in optical physics is also devoted to quantum optics and coherence, and to femtosecond optics. In optical physics, support is also provided in areas such as the nonlinear response of isolated atoms to intense, ultra-short electromagnetic fields, the atom-cavity interaction at high fields, and quantum properties of the electromagnetic field.
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The Mac
@TheMac
01 February, 07:55
In response The Mac to his Publication
Other important areas of research include the development of novel optical techniques for nano-optical measurements, diffractive optics, low-coherence interferometry, optical coherence tomography, and near-field microscopy. Research in optical physics places an emphasis on ultrafast optical science and technology. The applications of optical physics create advancements in communications, medicine, manufacturing, and even entertainment.
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The Mac
@TheMac
01 February, 07:57
In response The Mac to his Publication
Electrons form notional shells around the nucleus. These are naturally in a ground state but can be excited by the absorption of energy from light (photons), magnetic fields, or interaction with a colliding particle (typically other electrons).
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The Mac
@TheMac
01 February, 07:57
In response The Mac to his Publication
Electrons that populate a shell are said to be in a bound state. The energy necessary to remove an electron from its shell (taking it to infinity) is called the binding energy. Any quantity of energy absorbed by the electron in excess of this amount is converted to kinetic energy according to the conservation of energy. The atom is said to have undergone the process of ionization.
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The Mac
@TheMac
01 February, 07:58
In response The Mac to his Publication
In the event that the electron absorbs a quantity of energy less than the binding energy, it may transition to an excited state or to a virtual state. After a statistically sufficient quantity of time, an electron in an excited state will undergo a transition to a lower state via spontaneous emission.
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The Mac
@TheMac
01 February, 07:58
In response The Mac to his Publication
The change in energy between the two energy levels must be accounted for (conservation of energy). In a neutral atom, the system will emit a photon of the difference in energy. However, if the lower state is in an inner shell, a phenomenon known as the Auger effect may take place where the energy is transferred to another bound electrons causing it to go into the continuum. This allows one to multiply ionize an atom with a single photon.
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The Mac
@TheMac
01 February, 07:59
In response The Mac to his Publication
There are strict selection rules as to the electronic configurations that can be reached by excitation by light—however there are no such rules for excitation by collision processes.
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The Mac
@TheMac
01 February, 08:00
In response The Mac to his Publication
Photon polarization is the quantum mechanical description of the classical polarized sinusoidal plane electromagnetic wave. An individual photon can be described as having right or left circular polarization, or a superposition of the two. Equivalently, a photon can be described as having horizontal or vertical linear polarization, or a superposition of the two.
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The Mac
@TheMac
01 February, 08:01
In response The Mac to his Publication
The connection with quantum mechanics is made through the identification of a minimum packet size, called a photon, for energy in the electromagnetic field. The identification is based on the theories of Planck and the interpretation of those theories by Einstein. The correspondence principle then allows the identification of momentum and angular momentum (called spin), as well as energy, with the photon.
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The Mac
@TheMac
01 February, 08:03
In response The Mac to his Publication
An ideal birefringent crystal transforms the polarization state of an electromagnetic wave without loss of wave energy. Birefringent crystals therefore provide an ideal test bed for examining the conservative transformation of polarization states. Even though this treatment is still purely classical, standard quantum tools such as unitary and Hermitian operators that evolve the state in time naturally emerge.
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The Mac
@TheMac
01 February, 08:04
In response The Mac to his Publication
A birefringent crystal is a material that has an optic axis with the property that the light has a different index of refraction for light polarized parallel to the axis than it has for light polarized perpendicular to the axis. Light polarized parallel to the axis are called "extraordinary rays" or "extraordinary photons", while light polarized perpendicular to the axis are called "ordinary rays" or "ordinary photons".
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The Mac
@TheMac
01 February, 08:05
In response The Mac to his Publication
If a linearly polarized wave impinges on the crystal, the extraordinary component of the wave will emerge from the crystal with a different phase than the ordinary component. In mathematical language, if the incident wave is linearly polarized at an angle
θ with respect to the optic axis, the incident state vector can be written
θ with respect to the optic axis, the incident state vector can be written
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The Mac
@TheMac
01 February, 08:06
In response The Mac to his Publication
Birefringence is the optical property of a material having a refractive index that depends on the polarization and propagation direction of light. These optically anisotropic materials are said to be birefringent (or birefractive). The birefringence is often quantified as the maximum difference between refractive indices exhibited by the material. Crystals with non-cubic crystal structures are often birefringent, as are plastics under mechanical stress.
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The Mac
@TheMac
01 February, 08:07
In response The Mac to his Publication
Birefringence is responsible for the phenomenon of double refraction whereby a ray of light, when incident upon a birefringent material, is split by polarization into two rays taking slightly different paths.
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The Mac
@TheMac
01 February, 08:08
In response The Mac to his Publication
The Sagnac effect manifests itself in a setup called a ring interferometer. A beam of light is split and the two beams are made to follow the same path but in opposite directions. On return to the point of entry the two light beams are allowed to exit the ring and undergo interference.
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The Mac
@TheMac
01 February, 08:10
In response The Mac to his Publication
The central idea is that when the resulting setup is rotated, a path difference between the beams is created, thus changing the interference pattern.
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The Mac
@TheMac
01 February, 08:12
In response The Mac to his Publication
If two waves coincide with peaks and troughs matching they are said to be in phase.
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The Mac
@TheMac
01 February, 08:19
In response The Mac to his Publication
No-one has ever been able to define the difference between interference and diffraction satisfactorily. It is just a question of usage, and there is no specific, important physical difference between them. The best we can do, roughly speaking, is to say that when there are only a few sources, say two, interfering, then the result is usually called interference, but if there is a large number of them, it seems that the word diffraction is more often used.
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The Mac
@TheMac
01 February, 08:20
In response The Mac to his Publication
In optics, a diffraction grating is an optical component with a periodic structure that splits and diffracts light into several beams travelling in different directions.
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The Mac
@TheMac
01 February, 08:21
In response The Mac to his Publication
Gratings that modulate the phase rather than the amplitude of the incident light are also produced, frequently using holography.
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The Mac
@TheMac
01 February, 08:23
In response The Mac to his Publication
Holography is the science and practice of making holograms. A hologram is a real world recording of an interference pattern which uses diffraction to reproduce a 3D light field, resulting in an image which still has the depth, parallax, and other properties of the original scene. A hologram is a photographic recording of a light field, rather than an image formed by a lens.
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The Mac
@TheMac
01 February, 08:23
In response The Mac to his Publication
The holographic medium, for example the object produced by a holographic process (which may be referred to as a hologram) is usually unintelligible when viewed under diffuse ambient light. It is an encoding of the light field as an interference pattern of variations in the opacity, density, or surface profile of the photographic medium.
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The Mac
@TheMac
01 February, 08:23
In response The Mac to his Publication
When suitably lit, the interference pattern diffracts the light into an accurate reproduction of the original light field, and the objects that were in it exhibit visual depth cues such as parallax and perspective that change realistically with the different angles of viewing. That is, the view of the image from different angles represents the subject viewed from similar angles. In this sense, holograms do not have just the illusion of depth but are truly three-dimensional images.
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The Mac
@TheMac
01 February, 08:27
In response The Mac to his Publication
The improved photostability of quantum dots, for example, allows the acquisition of many consecutive focal-plane images that can be reconstructed into a high-resolution three-dimensional image. Another application that takes advantage of the extraordinary photostability of quantum dot probes is the real-time tracking of molecules and cells over extended periods of time.
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The Mac
@TheMac
01 February, 08:30
In response The Mac to his Publication
Eigenvalues of three double quantum dots system as a function of time. The state at zero energy is triple degenerate.
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The Mac
@TheMac
01 February, 08:32
In response The Mac to his Publication
In its pure form, holography needs a laser light for illuminating the subject and for viewing the finished hologram...
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The Mac
@TheMac
01 February, 08:34
In response The Mac to his Publication
Researchers have designed a new type of laser called a quantum dot ring laser that emits red, orange, and green light.
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The Mac
@TheMac
01 February, 08:38
In response The Mac to his Publication
Voltage-gated ion channels open and close in response to membrane potential.
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The Mac
@TheMac
01 February, 08:39
In response The Mac to his Publication
Membrane potential (also transmembrane potential or membrane voltage) is the difference in electric potential between the interior and the exterior of a biological cell. For the exterior of the cell, typical values of membrane potential, normally given in units of millivolts and denoted as mV, range from –40 mV to –80 mV.
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The Mac
@TheMac
01 February, 08:42
In response The Mac to his Publication
All animal cells are surrounded by a membrane composed of a lipid bilayer with proteins embedded in it.
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The Mac
@TheMac
01 February, 08:42
In response The Mac to his Publication
The membrane serves as both an insulator and a diffusion barrier to the movement of ions. Transmembrane proteins, also known as ion transporter or ion pump proteins, actively push ions across the membrane and establish concentration gradients across the membrane, and ion channels allow ions to move across the membrane down those concentration gradients. Ion pumps and ion channels are electrically equivalent to a set of batteries and resistors inserted in the membrane, and therefore create a voltage between the two sides of the membrane.
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The Mac
@TheMac
01 February, 08:45
In response The Mac to his Publication
Voltage is the difference in charge between two points. Current is the rate at which charge is flowing. Resistance is a material's tendency to resist the flow of charge (current). So, when we talk about these values, we're really describing the movement of charge, and thus, the behavior of electrons.
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The Mac
@TheMac
01 February, 08:46
In response The Mac to his Publication
Oxidative stress is an imbalance between free radicals and antioxidants in your body. Free radicals are oxygen-containing molecules with an uneven number of electrons.
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The Mac
@TheMac
01 February, 08:48
In response The Mac to his Publication
Oxidative metabolism is itself a source of stress, in the form of reactive oxygen species (ROS) that are produced as electrons leak from the respiratory chain during synthesis of ATP.
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The Mac
@TheMac
01 February, 08:51
In response The Mac to his Publication
Over time, oxidative stress can be extremely harmful to the human body, leading to degenerative changes that accelerate aging and cause chronic disease. For true health to prevail, our goal should be to provide an environment where oxidative stress is minimized. Oxidation is the process of removing electrons from an atom or molecule.
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Oxidative attack on proteins results in site-specific amino acid modifications, fragmentation of the peptide chain, aggregation of cross-linked reaction products, altered electrical charge and increased susceptibility to proteolysis.
08:52 PM - Feb 01, 2021
In response The Mac to his Publication
Only people mentioned by TheMac in this post can reply
The Mac
@TheMac
01 February, 08:54
In response The Mac to his Publication
Antioxidants are molecules present in cells that prevent these reactions by donating an electron to the free radicals without becoming destabilized themselves.
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