The Mac @TheMac
19 September, 04:23
Nanoparticle scam of the century... let’s be honest here

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Alexandra Briza @Alexandra7Briza
19 September, 05:32
In response The Mac to his Publication
Nanoparticles in chemtrails too. When will they stop spraying?

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The Mac @TheMac
19 September, 07:26
In response Alexandra Briza to her Publication
The minute things heat up too much?

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The Mac @TheMac
19 September, 07:27
In response The Mac to his Publication

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The Mac @TheMac
19 September, 07:31
In response The Mac to his Publication

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The Mac @TheMac
19 September, 07:32
In response The Mac to his Publication
Reflection high-energy electron diffraction (RHEED) is a technique used to characterize the surface of crystalline materials. RHEED systems gather information only from the surface layer of the sample, which distinguishes RHEED from other materials characterization methods that also rely on diffraction of high-energy electrons. Transmission electron microscopy, another common electron diffraction method samples the bulk of the sample due to the geometry of the system. Low-energy electron diffraction (LEED) is also surface sensitive, but LEED achieves surface sensitivity through the use of low energy electrons.

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The Mac @TheMac
19 September, 07:34
In response The Mac to his Publication

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The Mac @TheMac
19 September, 07:37
In response The Mac to his Publication

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The Mac @TheMac
19 September, 07:41
In response The Mac to his Publication

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The Mac @TheMac
19 September, 07:44
In response The Mac to his Publication

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The Mac @TheMac
19 September, 07:47
In response The Mac to his Publication
MCP-RHEED is a system in which an electron beam is amplified by a micro-channel plate (MCP). This system consists of an electron gun and an MCP equipped with a fluorescent screen opposite to the electron gun. Because of the amplification, the intensity of the electron beam can be decreased by several orders of magnitude and the damage to the samples is diminished. This method is used to observe the growth of insulator crystals such as organic films and alkali halide films, which are easily damaged by electron beams.

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The Mac @TheMac
19 September, 07:51
In response The Mac to his Publication

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The Mac @TheMac
19 September, 07:54
In response The Mac to his Publication
The mass-market application of microchannel plates is in image intensifier tubes of night vision goggles, which amplify visible and invisible light in order to make dark surroundings visible to the human eye.
A 1 GHz real-time display CRT for an analog oscilloscope (the Tektronix 7104) used a microchannel plate placed behind the phosphor screen to intensify the image. Without the plate, the image would be excessively dim, because of the electron-optical design.
MCP detectors are often employed in instrumentation for physical research, and they can be found in devices such as electron and mass spectrometers.

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The Mac @TheMac
19 September, 07:57
In response The Mac to his Publication
In a typical MS procedure, a sample, which may be solid, liquid, or gaseous, is ionized, for example by bombarding it with a beam of electrons. This may cause some of the sample's molecules to break up into positively charged fragments or simply become positively charged without fragmenting. These ions (fragments) are then separated according to their mass-to-charge ratio, for example by accelerating them and subjecting them to an electric or magnetic field: ions of the same mass-to-charge ratio will undergo the same amount of deflection.[1] The ions are detected by a mechanism capable of detecting charged particles, such as an electron multiplier. Results are displayed as spectra of the signal intensity of detected ions as a function of the mass-to-charge ratio. The atoms or molecules in the sample can be identified by correlating known masses (e.g. an entire molecule) to the identified masses or through a characteristic fragmentation pattern.

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The Mac @TheMac
19 September, 08:01
In response The Mac to his Publication
There are four stages in a mass spectrometer which we need to consider, these are – ionisation, acceleration, deflection, and detection.

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The Mac @TheMac
19 September, 08:03
In response The Mac to his Publication
The photophysics of the green fluorescent protein is governed by the electronic structure of the chromophore at the heart of its β-barrel protein structure. We present the first two-color, resonance-enhanced, multiphoton ionization spectrum of the isolated neutral chromophore in vacuo with supporting electronic structure calculations. We find the absorption maximum to be 3.65 ± 0.05 eV (340 ± 5 nm), which is blue-shifted by 0.5 eV (55 nm) from the absorption maximum of the protein in its neutral form. Our results show that interactions between the chromophore and the protein have a significant influence on the electronic structure of the neutral chromophore during photoabsorption and provide a benchmark for the rational design of novel chromophores as fluorescent markers or photomanipulators.

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The Mac @TheMac
19 September, 08:06
In response The Mac to his Publication

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The Mac @TheMac
19 September, 08:09
In response The Mac to his Publication
Nanoparticles Will Give You Superhuman Night Vision
Scientists have successfully used nanoparticles to allow mice to see near infrared light.
The researchers say they've made progress on similar nanoparticles to confer this ability onto humans, letting people see in the dark in the future.

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The Mac @TheMac
19 September, 08:12
In response The Mac to his Publication

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The Mac @TheMac
20 September, 04:30
In response The Mac to his Publication

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The Mac @TheMac
20 September, 04:32
In response The Mac to his Publication
Thermoplasmonics induced cell fusion Thermoplasmonics is based on a near infrared (NIR) laser and a plasmonic nanoparticle.

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The Mac @TheMac
20 September, 04:39
In response The Mac to his Publication

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The Mac @TheMac
Gold nanoparticle-green fluorescent protein (NP-GFP) based arrays have been created for rapid identification of mammalian cells on the basis of cell surface properties. Highly reproducible characteristic patterns were obtained from different cell types enabling the identification of cell types and cancer states. Using these arrays we could differentiate between isogenic normal, cancer and metastatic cell types using only ∼5000 cells.
04:40 AM - Sep 20, 2021
In response The Mac to his Publication
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The Mac @TheMac
20 September, 04:45
In response The Mac to his Publication

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The Mac @TheMac
20 September, 04:46
In response The Mac to his Publication

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