Product Use: For various scenarios including: biological laboratories, research laboratories, clinical pathological diagnosis, bacteriology research, as well as other research and teaching scenarios in zoology, botany, histology, embryology, pathology, microbiology, molecular biology, biochemistry, biochips, and chemical chips.
Inverted Biological Microscope WYS-43XD Features and Advantages: Compact size, lightweight, excellent handling, long service life; Ultra-high cost-effectiveness: major brand quality at affordable prices; High quality: benchmarked against international major brands; Low price: close to local pricing; Superior service: extended warranty, worry-free after-sales; Easy to use: conforms to most users' operating habits; Light maintenance: daily cleaning is sufficient; Maintenance-free: no consumables, no wear parts; Lifetime software.
Inverted Biological Microscope WYS-53XD Features and Advantages: Compact size, lightweight, excellent handling, long service life; Ultra-high cost-effectiveness: major brand quality at affordable prices; High quality: benchmarked against international major brands; Low price: close to local pricing; Superior service: extended warranty, worry-free after-sales; Easy to use: conforms to most users' operating habits; Light maintenance: daily cleaning is sufficient; Maintenance-free: no consumables, no wear parts; Lifetime software.
Both microscopes and telescopes are optical instruments with imaging functions. Their imaging principles are slightly different.
A fluorescence microscope uses ultraviolet light as the light source to irradiate the specimen, causing it to emit fluorescence, and then observes the shape and position of the object under the microscope. It is mainly used for studying the absorption and transport of intracellular substances, and the distribution and localization of chemical substances.
1. High-resolution observation microscopes: The resolution limit of conventional microscopes is 0.35 microns, while the resolution of laser confocal microscopes is 0.1-0.2 microns. Thus, for sub-micron observation, they can replace electron microscopes (though they cannot perform elemental analysis). 2. High-precision surface morphology measurement: Detecting height differences on fine surfaces, line width measurement, volume, surface area, size of foreign matter and impurities.
How to correctly calibrate the polarizer of a polarizing microscope?
An important step in microscope use is accurately finding the object image when adjusting focus using the focusing knob. Be sure not to make the following errors during operation: 1. Directly focusing under high power; 2. Whether the tube is moving up or down, keeping the eye always looking into the eyepiece.
The development of optical microscopes has progressed alongside continuous technological advancement. Traditional microscopy methods could no longer meet user demands, leading to the integration of traditional microscopy with modern computer image processing technology, resulting in microscopic image analysis systems.