Canton Fair is about to open

Tomorrow, the 108th China Import and Export Fair will kick off in Guangzhou. The reporter learned from the Foshan Foreign Trade and Economic Cooperation Bureau yesterday that at this Canton Fair, 426 Foshan enterprises will "appear" in 46 exhibition areas. Exhibitors throughout Foshan traditional advantageous industries such as building materials, home appliances, furniture, and sanitary ware. Despite the appreciation of the RMB and the successive anti-dumping trade barriers, Foshan exhibitors are still optimistic about the "harvest" of the Canton Fair. According to the relevant person in charge of the Trade Development Section of the Foreign Trade and Economic Cooperation Bureau of Foshan City, there were 426 exhibitors in Foshan. The 426 companies have obtained a total of 1,439 booths, distributed in 46 exhibition areas of the Canton Fair.

The person in charge said that the Foshan enterprises participating in the exhibition involve traditional advantageous industries such as building materials, home appliances, furniture, and sanitary ware. This includes 53 brand enterprises, such as Midea, Galanz and Kelon. Among them, the home appliance industry companies get the most booths, and the largest number of exhibitors is expected to be the building materials industry.


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Optical Microscopy
In optical microscopy different filters are used to improve contrast and emphasize specific features based on material properties. This can be achieved with magnifications typically ranging from 2.5 times up to 1,000 times. In materialography, reflected light is the most commonly used type of light optical microscopy. Transmitted optical microscopy is also used, but mainly for mineralogy specimens.

Stereo Optical Microscopy
The stereo microscope is an optical microscope variant, designed for low magnification observation of a specimen, using the light reflected from the specimen surface.

Scanning Electron Microscopy
A scanning electron microscope (SEM) is a type of electron microscope that produces images of a specimen by scanning the specimen surface with a focused beam of electrons. The electrons interact with the atoms in the specimen, producing various signals that can be translated into information about the surface topography and the composition of the specimen.

Transmission Electron Microscopy
Transmission electron microscopy (TEM) uses a beam of electrons transmitted through an ultra-thin specimen and that interacts with the specimen as it passes through it. Generated signals can be translated into various types of information, including information on the type and orientation of individual crystals.

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