Examples of 'transmission electron micrograph' in a sentence

Meaning of "transmission electron micrograph"

transmission electron micrograph - A transmission electron micrograph (TEM) is an image captured using a transmission electron microscope, which is a high-powered microscope capable of producing detailed images of the internal structure of microscopic specimens. This technique is commonly used in scientific research, particularly in fields like biology, materials science, and nanotechnology

How to use "transmission electron micrograph" in a sentence

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transmission electron micrograph
Transmission electron micrograph of infectious bronchitis viruses.
The average diameter of the particles is typically measured from transmission electron micrograph ( TEM ) images.
Transmission electron micrograph of norovirus particles in feces.
This can be illustrated by transmission electron micrograph ( Figure 4 ).
Transmission electron micrograph of a mesenchymal stem cell that is displaying typical ultrastructural characteristics.
A digitally colorized transmission electron micrograph ( TEM ) of Zika virus.
Transmission electron micrograph of decalcified woven bone matrix displaying characteristic irregular orientation of collagen fibers.
Figure 1 represents a transmission electron micrograph of methionine-porcine growth hormone inclusion bodies.
Transmission electron micrograph of Wolachia within an insect cell.
Figure 2 shows a schematic and transmission electron micrograph of a cross-section of a tandem organic photovoltaic cell.
A transmission electron micrograph showing the thin intergranular glass phase is shown in the figure.
Figure 6 is an image of transmission Electron Micrograph of Norwalk virus VIPs purified chromatographically.
Transmission electron micrograph of Campylobacter jejuni bacteriophage whose genome sequence was recently solved.
Figure 7 is an image of transmission Electron Micrograph of Norwalk virus VLPs purified by ultracentrifugation.
Transmission electron micrograph of Norwalk virus.

See also

Figure 19 is a transmission electron micrograph of the product of Example 5.
Transmission electron micrograph of Gamma-Phage.
Colorized transmission electron micrograph of adenovirus.
The transmission electron micrograph of a negatively stained particle from fraction 8 is shown in the insert.
Epixenosomes Transmission electron micrograph of stage II epixenosomes.
Transmission electron micrograph of Middle East respiratory syndrome coronavirus particles, colorized in yellow.
Figure 2 shows a transmission electron micrograph of the powder according to the invention.
A transmission electron micrograph of Zika virus, which is a member of the family Flaviviridae, is shown.
Figure 9 is a transmission electron micrograph showing vermiform ridges on the epithelial surface.
A transmission electron micrograph showing the complete dispersal of the boehmite particles is shown at Figure 7.
However, the transmission electron micrograph illustrates that the agglomeration problem persists.
A transmission electron micrograph of the cross section of FIB2 B is shown in Figure 4.
Figure 1 is a transmission electron micrograph of green leaf tea made from unpressed leaves ;.
A transmission electron micrograph of this gel is presented in Fig . 4.
Figure 2 represents a transmission electron micrograph of the insoluble residue remaining following solubilization treatment.
A transmission electron micrograph ( TEM ) of Zika virus.
This colorized transmission electron micrograph shows H1N1 influenza virus particles.
Transmission electron micrograph of organ cultured coronavirus OC43.
Figure 5 is a transmission electron micrograph of a high impact polystyrene prepared using a conventional process.
Transmission electron micrograph of Wolbachia within an insect cell ( Image courtesy of Scott O'Neill ).
Figure 1 is a transmission electron micrograph obtained after freeze fracturing of the resulting self-assembly.
Transmission electron micrograph ( TEM ) of the West Nile virus.
Figure 8 is a transmission electron micrograph showing formation of basal lamina in tri-layered corneal equivalents.
Transmission electron micrograph of several bacteriophages attached to a bacterial cell wall ; magnification is about 200,000.
Figure 3 is a Transmission Electron Micrograph in accordance with the formulation 2.
Figure 1, Transmission electron micrograph of a 2 M suspension of magnetic iron oxide nanoparticles manufactured according to Example 1.
Figure 4 shows a transmission electron micrograph of the green body of FIB2 B aged for 3 months.
Coloured transmission electron micrograph ( TEM ) of T2 bacteriophage viruses ( red ) attacking an Escherichia coli bacterium.
A colored transmission electron micrograph of a human serous cell 's nucleus, with its nucleolus in purple.
Fig . 5 displays a transmission electron micrograph of a freeze-fractured replica of the ubidecarenone dispersion.
Fig . 11 is a transmission electron micrograph of heat-aged ultrafine precipitated calcium carbonate showing the rhombohedral morphology.
FIG . 5 shows a transmission electron micrograph of the composite spherical polymer particles of Example 6.
FIG . 3 depicts a transmission electron micrograph ( TEM ) of an asymmetrical particle according to the present invention ;.
Figure 19 is a transmission electron micrograph of the GBM of a 2 week old normal versus Alport mouse.
Figure 4 shows a transmission electron micrograph ( TEM ) image of a staged core-shell polymer of the invention.

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