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optical microscopy

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**optical microscopy**

What is optical microscopy?

Optical microscopy, also known as light microscopy, is a technique that uses visible light and a system of lenses to magnify images of small objects. It is commonly used in biology, medicine, and materials science to visualize cells, tissues, and other microscopic structures that are not visible to the naked eye.

What other technologies are related to optical microscopy?

optical microscopy Competitor Technologies

scanning electron microscopy
scanning electron microscopy
SEM is an electron microscopy technique that provides high-resolution images of a sample's surface. It is a competitor because it provides alternative surface imaging capabilities, often with higher resolution than optical microscopy.
X-ray CT
X-ray CT
X-ray CT is a non-destructive imaging technique that provides 3D images of a sample's internal structure. It is a competitor because it provides an alternative method for visualizing the internal structure of materials.
atomic force microscopy
atomic force microscopy
AFM is a technique that provides high-resolution images of a sample's surface. It is a competitor because it provides alternative surface imaging capabilities, often with higher resolution than optical microscopy.
SEM
SEM
SEM is an electron microscopy technique that provides high-resolution images of a sample's surface. It is a competitor because it provides alternative surface imaging capabilities, often with higher resolution than optical microscopy.
CSAM
CSAM
CSAM uses ultrasound to image internal features and defects in materials. In applications where optical microscopy struggles to penetrate opaque samples, CSAM acts as a competitor by offering subsurface imaging capabilities.
electron microscopy
Electron microscopy, in general, provides higher resolution images of a sample's surface. It is a competitor because it provides alternative surface imaging capabilities, often with higher resolution than optical microscopy.
AFM
AFM
AFM is a technique that provides high-resolution images of a sample's surface. It is a competitor because it provides alternative surface imaging capabilities, often with higher resolution than optical microscopy.
TEM
TEM
TEM is a technique that provides very high-resolution images of a sample's internal structure. It is a competitor because it provides alternative structural imaging capabilities, often with much higher resolution than optical microscopy for thin samples.
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